Descriptions

Twitchin kinase is a regulator of muscle contraction and relaxation by unfolding. Twitchin kinase is autoinhibited by a 60-residue-long regulatory tail that lies just C-terminal of the kinase catalytic core (called the C-terminal regulatory domain, CRD). The CRD wedges itself between the two subdomains of the catalytic core, blocking binding sites for ATP and protein substrates. In addition, an N-terminal linker (NL) of 45 residues lying between the Fn3 domain and the kinase catalytic core inhibits kinase activity. The CRD of twitchin is important for binding to MAK-1, which is an activator of twitchin kinase. Molecular dynamics simulation revealed that the NL is released by pulling force.

Autoinhibitory domains (AIDs)

Target domain

6261-6516 (Protein kinase domain)

Relief mechanism

Partner binding

Assay

Structural analysis, Deletion assay

Target domain

6261-6516 (Protein kinase domain)

Relief mechanism

Others

Assay

Structural analysis, Deletion assay

Accessory elements

6401-6423 (Activation loop from InterPro)

Target domain

6261-6516 (Protein kinase domain)

Relief mechanism

Assay

Autoinhibited structure

Activated structure

4 structures for Q23551

Entry ID Method Resolution Chain Position Source
1KOA X-ray 330 A A 6209-6699 PDB
1WIT NMR - A 4148-4240 PDB
1WIU NMR - A 4148-4240 PDB
3UTO X-ray 240 A A/B 6108-6675 PDB

No variants for Q23551

Variant ID(s) Position Change Description Diseaes Association Provenance
No variants for Q23551

No associated diseases with Q23551

137 regional properties for Q23551

Type Name Position InterPro Accession
domain Protein kinase domain 6261 - 6516 IPR000719
domain Immunoglobulin subtype 2 16 - 88 IPR003598-1
domain Immunoglobulin subtype 2 123 - 195 IPR003598-2
domain Immunoglobulin subtype 2 390 - 457 IPR003598-3
domain Immunoglobulin subtype 2 992 - 1061 IPR003598-4
domain Immunoglobulin subtype 2 1141 - 1208 IPR003598-5
domain Immunoglobulin subtype 2 1234 - 1302 IPR003598-6
domain Immunoglobulin subtype 2 1326 - 1393 IPR003598-7
domain Immunoglobulin subtype 2 1808 - 1875 IPR003598-8
domain Immunoglobulin subtype 2 2104 - 2172 IPR003598-9
domain Immunoglobulin subtype 2 2400 - 2466 IPR003598-10
domain Immunoglobulin subtype 2 2692 - 2758 IPR003598-11
domain Immunoglobulin subtype 2 2985 - 3053 IPR003598-12
domain Immunoglobulin subtype 2 3282 - 3349 IPR003598-13
domain Immunoglobulin subtype 2 3576 - 3644 IPR003598-14
domain Immunoglobulin subtype 2 3870 - 3937 IPR003598-15
domain Immunoglobulin subtype 2 4459 - 4522 IPR003598-16
domain Immunoglobulin subtype 2 5545 - 5612 IPR003598-17
domain Immunoglobulin subtype 2 5935 - 6002 IPR003598-18
domain Immunoglobulin subtype 2 6031 - 6098 IPR003598-19
domain Immunoglobulin subtype 2 6597 - 6664 IPR003598-20
domain Immunoglobulin subtype 2 6720 - 6786 IPR003598-21
domain Immunoglobulin subtype 2 6875 - 6943 IPR003598-22
domain Immunoglobulin subtype 2 6984 - 7050 IPR003598-23
domain Immunoglobulin subtype 2 7079 - 7146 IPR003598-24
domain Immunoglobulin subtype 10 - 99 IPR003599-1
domain Immunoglobulin subtype 117 - 206 IPR003599-2
domain Immunoglobulin subtype 384 - 468 IPR003599-3
domain Immunoglobulin subtype 986 - 1072 IPR003599-4
domain Immunoglobulin subtype 1135 - 1215 IPR003599-5
domain Immunoglobulin subtype 1228 - 1310 IPR003599-6
domain Immunoglobulin subtype 1320 - 1400 IPR003599-7
domain Immunoglobulin subtype 1409 - 1490 IPR003599-8
domain Immunoglobulin subtype 1502 - 1592 IPR003599-9
domain Immunoglobulin subtype 1802 - 1886 IPR003599-10
domain Immunoglobulin subtype 2098 - 2183 IPR003599-11
domain Immunoglobulin subtype 2394 - 2477 IPR003599-12
domain Immunoglobulin subtype 2686 - 2769 IPR003599-13
domain Immunoglobulin subtype 2979 - 3064 IPR003599-14
domain Immunoglobulin subtype 3276 - 3360 IPR003599-15
domain Immunoglobulin subtype 3570 - 3655 IPR003599-16
domain Immunoglobulin subtype 3864 - 3948 IPR003599-17
domain Immunoglobulin subtype 4156 - 4240 IPR003599-18
domain Immunoglobulin subtype 4453 - 4533 IPR003599-19
domain Immunoglobulin subtype 4845 - 4930 IPR003599-20
domain Immunoglobulin subtype 5141 - 5226 IPR003599-21
domain Immunoglobulin subtype 5538 - 5623 IPR003599-22
domain Immunoglobulin subtype 5632 - 5717 IPR003599-23
domain Immunoglobulin subtype 5929 - 6013 IPR003599-24
domain Immunoglobulin subtype 6025 - 6109 IPR003599-25
domain Immunoglobulin subtype 6591 - 6675 IPR003599-26
domain Immunoglobulin subtype 6714 - 6797 IPR003599-27
domain Immunoglobulin subtype 6869 - 6954 IPR003599-28
domain Immunoglobulin subtype 6978 - 7061 IPR003599-29
domain Immunoglobulin subtype 7073 - 7157 IPR003599-30
domain Fibronectin type III 1595 - 1690 IPR003961-1
domain Fibronectin type III 1694 - 1791 IPR003961-2
domain Fibronectin type III 1889 - 1988 IPR003961-3
domain Fibronectin type III 1992 - 2087 IPR003961-4
domain Fibronectin type III 2186 - 2282 IPR003961-5
domain Fibronectin type III 2286 - 2383 IPR003961-6
domain Fibronectin type III 2480 - 2576 IPR003961-7
domain Fibronectin type III 2579 - 2675 IPR003961-8
domain Fibronectin type III 2772 - 2868 IPR003961-9
domain Fibronectin type III 2872 - 2968 IPR003961-10
domain Fibronectin type III 2976 - 3055 IPR003961-11
domain Fibronectin type III 3067 - 3165 IPR003961-12
domain Fibronectin type III 3169 - 3265 IPR003961-13
domain Fibronectin type III 3363 - 3459 IPR003961-14
domain Fibronectin type III 3463 - 3559 IPR003961-15
domain Fibronectin type III 3658 - 3753 IPR003961-16
domain Fibronectin type III 3757 - 3853 IPR003961-17
domain Fibronectin type III 3951 - 4047 IPR003961-18
domain Fibronectin type III 4051 - 4146 IPR003961-19
domain Fibronectin type III 4243 - 4340 IPR003961-20
domain Fibronectin type III 4344 - 4440 IPR003961-21
domain Fibronectin type III 4536 - 4631 IPR003961-22
domain Fibronectin type III 4635 - 4733 IPR003961-23
domain Fibronectin type III 4737 - 4834 IPR003961-24
domain Fibronectin type III 4933 - 5028 IPR003961-25
domain Fibronectin type III 5032 - 5129 IPR003961-26
domain Fibronectin type III 5229 - 5326 IPR003961-27
domain Fibronectin type III 5331 - 5427 IPR003961-28
domain Fibronectin type III 5430 - 5528 IPR003961-29
domain Fibronectin type III 5720 - 5817 IPR003961-30
domain Fibronectin type III 5821 - 5919 IPR003961-31
domain Fibronectin type III 6112 - 6207 IPR003961-32
domain Immunoglobulin-like domain 5 - 97 IPR007110-1
domain Immunoglobulin-like domain 111 - 204 IPR007110-2
domain Immunoglobulin-like domain 377 - 466 IPR007110-3
domain Immunoglobulin-like domain 980 - 1072 IPR007110-4
domain Immunoglobulin-like domain 1122 - 1213 IPR007110-5
domain Immunoglobulin-like domain 1217 - 1306 IPR007110-6
domain Immunoglobulin-like domain 1312 - 1398 IPR007110-7
domain Immunoglobulin-like domain 2086 - 2181 IPR007110-8
domain Immunoglobulin-like domain 2679 - 2763 IPR007110-9
domain Immunoglobulin-like domain 2972 - 3062 IPR007110-10
domain Immunoglobulin-like domain 3268 - 3358 IPR007110-11
domain Immunoglobulin-like domain 3563 - 3653 IPR007110-12
domain Immunoglobulin-like domain 4445 - 4531 IPR007110-13
domain Immunoglobulin-like domain 5533 - 5621 IPR007110-14
domain Immunoglobulin-like domain 5923 - 6011 IPR007110-15
domain Immunoglobulin-like domain 6016 - 6107 IPR007110-16
domain Immunoglobulin-like domain 6585 - 6673 IPR007110-17
domain Immunoglobulin-like domain 6696 - 6795 IPR007110-18
domain Immunoglobulin-like domain 6863 - 6952 IPR007110-19
domain Immunoglobulin-like domain 6958 - 7059 IPR007110-20
domain Immunoglobulin-like domain 7067 - 7149 IPR007110-21
active_site Serine/threonine-protein kinase, active site 6378 - 6390 IPR008271
domain Immunoglobulin I-set 5 - 97 IPR013098-1
domain Immunoglobulin I-set 111 - 204 IPR013098-2
domain Immunoglobulin I-set 382 - 467 IPR013098-3
domain Immunoglobulin I-set 980 - 1071 IPR013098-4
domain Immunoglobulin I-set 1136 - 1204 IPR013098-5
domain Immunoglobulin I-set 1316 - 1389 IPR013098-6
domain Immunoglobulin I-set 1404 - 1477 IPR013098-7
domain Immunoglobulin I-set 1802 - 1885 IPR013098-8
domain Immunoglobulin I-set 2097 - 2182 IPR013098-9
domain Immunoglobulin I-set 2393 - 2476 IPR013098-10
domain Immunoglobulin I-set 2685 - 2768 IPR013098-11
domain Immunoglobulin I-set 2978 - 3063 IPR013098-12
domain Immunoglobulin I-set 3270 - 3359 IPR013098-13
domain Immunoglobulin I-set 3572 - 3654 IPR013098-14
domain Immunoglobulin I-set 3866 - 3947 IPR013098-15
domain Immunoglobulin I-set 4150 - 4239 IPR013098-16
domain Immunoglobulin I-set 4454 - 4532 IPR013098-17
domain Immunoglobulin I-set 4844 - 4929 IPR013098-18
domain Immunoglobulin I-set 5142 - 5225 IPR013098-19
domain Immunoglobulin I-set 5533 - 5622 IPR013098-20
domain Immunoglobulin I-set 5923 - 6012 IPR013098-21
domain Immunoglobulin I-set 6029 - 6108 IPR013098-22
domain Immunoglobulin I-set 6585 - 6674 IPR013098-23
domain Immunoglobulin I-set 6709 - 6796 IPR013098-24
domain Immunoglobulin I-set 6863 - 6953 IPR013098-25
domain Immunoglobulin I-set 6981 - 7058 IPR013098-26
domain Immunoglobulin I-set 7068 - 7144 IPR013098-27
binding_site Protein kinase, ATP binding site 6267 - 6290 IPR017441

Functions

Description
EC Number 2.7.11.1 Protein-serine/threonine kinases
Subcellular Localization
  • Cytoplasm, myofibril, sarcomere
  • Cytoplasm, myofibril, sarcomere, A band
  • Expressed at the outer edge of A-bands
PANTHER Family PTHR14340 MICROFIBRIL-ASSOCIATED GLYCOPROTEIN 3
PANTHER Subfamily PTHR14340:SF24 SUBFAMILY NOT NAMED
PANTHER Protein Class
PANTHER Pathway Category No pathway information available

1 GO annotations of cellular component

Name Definition
A band The dark-staining region of a sarcomere, in which myosin thick filaments are present; the center is traversed by the paler H zone, which in turn contains the M line.

7 GO annotations of molecular function

Name Definition
ATP binding Binding to ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
calmodulin binding Binding to calmodulin, a calcium-binding protein with many roles, both in the calcium-bound and calcium-free states.
metal ion binding Binding to a metal ion.
protein kinase binding Binding to a protein kinase, any enzyme that catalyzes the transfer of a phosphate group, usually from ATP, to a protein substrate.
protein serine kinase activity Catalysis of the reactions: ATP + protein serine = ADP + protein serine phosphate.
protein serine/threonine kinase activity Catalysis of the reactions: ATP + protein serine = ADP + protein serine phosphate, and ATP + protein threonine = ADP + protein threonine phosphate.
protein serine/threonine/tyrosine kinase activity Catalysis of the reactions: ATP + a protein serine = ADP + protein serine phosphate; ATP + a protein threonine = ADP + protein threonine phosphate; and ATP + a protein tyrosine = ADP + protein tyrosine phosphate.

9 GO annotations of biological process

Name Definition
adult locomotory behavior Locomotory behavior in a fully developed and mature organism.
behavioral response to nicotine Any process that results in a change in the behavior of an organism as a result of a nicotine stimulus.
modulation of age-related behavioral decline OBSOLETE. Any process that modulates the processes that arise as an organism progresses toward the end of its lifespan that results in a decline in behavioral activities such as locomotory behavior, and learning or memory.
negative regulation of cell division Any process that stops, prevents, or reduces the frequency, rate or extent of cell division.
peptidyl-serine phosphorylation The phosphorylation of peptidyl-serine to form peptidyl-O-phospho-L-serine.
peptidyl-threonine phosphorylation The phosphorylation of peptidyl-threonine to form peptidyl-O-phospho-L-threonine.
positive regulation of locomotion Any process that activates or increases the frequency, rate or extent of locomotion of a cell or organism.
positive regulation of sarcomere organization Any process that increases the rate, frequency or extent of myofibril assembly by organization of muscle actomyosin into sarcomeres. The sarcomere is the repeating unit of a myofibril in a muscle cell, composed of an array of overlapping thick and thin filaments between two adjacent Z discs.
positive regulation of striated muscle contraction Any process that activates or increases the frequency, rate or extent of striated muscle contraction.

9 homologous proteins in AiPD

UniProt AC Gene Name Protein Name Species Evidence Code
P11799 Mylk Myosin light chain kinase, smooth muscle Gallus gallus (Chicken) SS
Q15746 MYLK Myosin light chain kinase, smooth muscle Homo sapiens (Human) SS
Q8WZ42 TTN Titin Homo sapiens (Human) EV
Q6PDN3 Mylk Myosin light chain kinase, smooth muscle Mus musculus (Mouse) EV
Q62407 Speg Striated muscle-specific serine/threonine-protein kinase Mus musculus (Mouse) SS
A2ASS6 Ttn Titin Mus musculus (Mouse) SS
Q63638 Speg Striated muscle-specific serine/threonine-protein kinase Rattus norvegicus (Rat) SS
P97924 Kalrn Kalirin Rattus norvegicus (Rat) SS
G4SLH0 ttn-1 Titin homolog Caenorhabditis elegans EV
10 20 30 40 50 60
MVGAPRFTQK PSIQQTPTGD LLMECHLEAD PQPTIAWQHS GNLLEPSGRV VQTLTPLGGS
70 80 90 100 110 120
LYKATLVIKE PNAGDGGAYK CTARNQLGES NANINLNFAG AGGDEAKSRG PSFVGKPRII
130 140 150 160 170 180
PKDGGALIVM ECKVKSASTP VAKWMKDGVP LSMGGLYHAI FSDLGDQTYL CQLEIRGPSS
190 200 210 220 230 240
SDAGQYRCNI RNDQGETNAN LALNFEEPDP SERQERKRST ASPRPSSRGP GSRPSSPKKS
250 260 270 280 290 300
MKSREGTPKR TLKPREGSPS KKLRSRTSTP VNEEVSQSES RRSSRTDKME VDQVSGASKR
310 320 330 340 350 360
KPDGLPPPGG DEKKLRAGSP STRKSPSRKS ASPTPSRKGS SAGGAASGTT GASASATSAT
370 380 390 400 410 420
SGGSASSDAS RDKYTRPPIV LEASRSQTGR IGGSVVLEVQ WQCHSSTIIE WYRDGTLVRN
430 440 450 460 470 480
SSEYSQSFNG SIAKLQVNKL TEEKSGLYKC HAKCDYGEGQ SSAMVKIEQS DVEEELMKHR
490 500 510 520 530 540
KDAEDEYQKE EQKSQTLQAE TKKRVARRSK SKSKSPAPQA KKSTTSESGR QEASEVEHKR
550 560 570 580 590 600
SSSVRPDPDE ESQLDEIPSS GLTIPEERRR ELLGQVGESD DEVSESISEL PSFAGGKPRR
610 620 630 640 650 660
KTDSPPKQDD MFSRDTLLRK TTTSTKNESS TVEEKTKLRK TVKKVDGELD FKAMVKLKKV
670 680 690 700 710 720
KKEEGGTTEK SGFPLDHADS TSSVLSQESR SRRGSNAPFA KDGLPEQPAN PFAQLKKVKS
730 740 750 760 770 780
GAGGLEKSDS MASLKKLDLK KGKIDDNSDG AFKVQLKKVV KKEVKESTIS VKEKNGTESG
790 800 810 820 830 840
IKTEFKMEKR ERTTLQKYEK TDSDGSKKED KPKKVSIAPV STNKSSDDEP STPRHHKEVE
850 860 870 880 890 900
EKSTSEELKA KVAGRQVGQK RNGAQKPEEP KNLLSQIQLK KVTKKAHDDT NELEGIKLKK
910 920 930 940 950 960
VTTVPKHVAD DDSQSESESR RGSVFGELRR GSRAPRDSAD NSRRDSIRRS SIDMRRESVQ
970 980 990 1000 1010 1020
EILEKTSTPL VPSGASGSAP KIVEVPENVT VVENETAILT CKVSGSPAPT FRWFKGSREV
1030 1040 1050 1060 1070 1080
ISGGRFKHIT DGKEHTVALA LLKCRSQDEG PYTLTIENVH GTDSADVKLL VTSDNGLDFR
1090 1100 1110 1120 1130 1140
AMLKHRESQA GFQKDGEGGG AGGGGGEKKP MTEAERRQSL FPGKKVEKWD IPLPEKTVQQ
1150 1160 1170 1180 1190 1200
QVDKICEWKC TYSRPNAKIR WYKDRKEIFS GGLKYKIVIE KNVCTLIINN PEVDDTGKYT
1210 1220 1230 1240 1250 1260
CEANGVPTHA QLTVLEPPMK YSFLNPLPNT QEIYRTKQAV LTCKVNTPRA PLVWYRGSKA
1270 1280 1290 1300 1310 1320
IQEGDPRFII EKDAVGRCTL TIKEVEEDDQ AEWTARITQD VFSKVQVYVE EPRHTFVVPM
1330 1340 1350 1360 1370 1380
KSQKVNESDL ATLETDVNDK DAEVVWWHDG KRIDIDGVKF KVESSNRKRR LIINGARIED
1390 1400 1410 1420 1430 1440
HGEYKCTTKD DRTMAQLIVD AKNKFIVALK DTEVIEKDDV TLMCQTKDTK TPGIWFRNGK
1450 1460 1470 1480 1490 1500
QISSMPGGKF ETQSRNGTHT LKIGKIEMNE ADVYEIDQAG LRGSCNVTVL EAEKRPILNW
1510 1520 1530 1540 1550 1560
KPKKIEAKAG EPCVVKVPFQ IKGTRRGDPK AQILKNGKPI DEEMRKLVEV IIKDDVAEIV
1570 1580 1590 1600 1610 1620
FKNPQLADTG KWALELGNSA GTALAPFELF VKDKPKPPKG PLETKNVTAE GLDLVWGTPD
1630 1640 1650 1660 1670 1680
PDEGAPVKAY IIEMQEGRSG NWAKVGETKG TDFKVKDLKE HGEYKFRVKA LNECGLSDPL
1690 1700 1710 1720 1730 1740
TGESVLAKNP YGVPGKPKNM DAIDVDKDHC TLAWEPPEED GGAPITGYII ERREKSEKDW
1750 1760 1770 1780 1790 1800
HQVGQTKPDC CELTDKKVVE DKEYLYRVKA VNKAGPGDPC DHGKPIKMKA KKASPEFTGG
1810 1820 1830 1840 1850 1860
GIKDLRLKVG ETIKYDVPIS GEPLPECLWV VNGKPLKAVG RVKMSSERGK HIMKIENAVR
1870 1880 1890 1900 1910 1920
ADSGKFTITL KNSSGSCDST ATVTVVGRPT PPKGPLDIAD VCADGATLSW NPPDDDGGDP
1930 1940 1950 1960 1970 1980
LTGYIVEAQD MDNKGKYIEV GKVDPNTTTL KVNGLRNKGN YKFRVKAVNN EGESEPLSAD
1990 2000 2010 2020 2030 2040
QYTQIKDPWD EPGKPGRPEI TDFDADRIDI AWEPPHKDGG APIEEYIVEV RDPDTKEWKE
2050 2060 2070 2080 2090 2100
VKRVPDTNAS ISGLKEGKEY QFRVRAVNKA GPGQPSEPSE KQLAKPKFIP AWLKHDNLKS
2110 2120 2130 2140 2150 2160
ITVKAGATVR WEVKIGGEPI PEVKWFKGNQ QLENGIQLTI DTRKNEHTIL CIPSAMRSDV
2170 2180 2190 2200 2210 2220
GEYRLTVKNS HGADEEKANL TVLDRPSKPN GPLEVSDVFE DNLNLSWKPP DDDGGEPIEY
2230 2240 2250 2260 2270 2280
YEVEKLDTAT GRWVPCAKVK DTKAHIDGLK KGQTYQFRVK AVNKEGASDA LSTDKDTKAK
2290 2300 2310 2320 2330 2340
NPYDEPGKTG TPDVVDWDAD RVSLEWEPPK SDGGAPITQY VIEKKGKHGR DWQECGKVSG
2350 2360 2370 2380 2390 2400
DQTNAEILGL KEGEEYQFRV KAVNKAGPGE ASDPSRKVVA KPRNLKPWID REAMKTITIK
2410 2420 2430 2440 2450 2460
VGNDVEFDVP VRGEPPPKKE WIFNEKPVDD QKIRIESEDY KTRFVLRGAT RKHAGLYTLT
2470 2480 2490 2500 2510 2520
ATNASGSDKH SVEVIVLGKP SSPLGPLEVS NVYEDRADLE WKVPEDDGGA PIDHYEIEKM
2530 2540 2550 2560 2570 2580
DLATGRWVPC GRSETTKTTV PNLQPGHEYK FRVRAVNKEG ESDPLTTNTA ILAKNPYEVP
2590 2600 2610 2620 2630 2640
GKVDKPELVD WDKDHVDLAW NAPDDGGAPI EAFVIEKKDK NGRWEEALVV PGDQKTATVP
2650 2660 2670 2680 2690 2700
NLKEGEEYQF RISARNKAGT GDPSDPSDRV VAKPRNLAPR IHREDLSDTT VKVGATLKFI
2710 2720 2730 2740 2750 2760
VHIDGEPAPD VTWSFNGKGI GESKAQIENE PYISRFALPK ALRKQSGKYT ITATNINGTD
2770 2780 2790 2800 2810 2820
SVTINIKVKS KPTKPKGPIE VTDVFEDRAT LDWKPPEDDG GEPIEFYEIE KMNTKDGIWV
2830 2840 2850 2860 2870 2880
PCGRSGDTHF TVDSLNKGDH YKFRVKAVNS EGPSDPLETE TDILAKNPFD RPDRPGRPEP
2890 2900 2910 2920 2930 2940
TDWDSDHVDL KWDPPLSDGG APIEEYQIEK RTKYGRWEPA ITVPGGQTTA TVPDLTPNEE
2950 2960 2970 2980 2990 3000
YEFRVVAVNK GGPSDPSDAS KAVIAKPRNL KPHIDRDALK NLTIKAGQSI SFDVPVSGEP
3010 3020 3030 3040 3050 3060
APTVTWHWPD NREIRNGGRV KLDNPEYQSK LVVKQMERGD SGTFTIKAVN ANGEDEATVK
3070 3080 3090 3100 3110 3120
INVIDKPTSP NGPLDVSDVH GDHVTLNWRA PDDDGGIPIE NYVIEKYDTA SGRWVPAAKV
3130 3140 3150 3160 3170 3180
AGDKTTAVVD GLIPGHEYKF RVAAVNAEGE SDPLETFGTT LAKDPFDKPG KTNAPEITDW
3190 3200 3210 3220 3230 3240
DKDHVDLEWK PPANDGGAPI EEYVVEMKDE FSPFWNDVAH VPAGQTNATV GNLKEGSKYE
3250 3260 3270 3280 3290 3300
FRIRAKNKAG LGDPSDSASA VAKARNVPPV IDRNSIQEIK VKAGQDFSLN IPVSGEPTPT
3310 3320 3330 3340 3350 3360
ITWTFEGTPV ESDDRMKLNN EDGKTKFHVK RALRSDTGTY IIKAENENGT DTAEVKVTVL
3370 3380 3390 3400 3410 3420
DHPSSPRGPL DVTNIVKDGC DLAWKEPEDD GGAEISHYVI EKQDAATGRW TACGESKDTN
3430 3440 3450 3460 3470 3480
FHVDDLTQGH EYKFRVKAVN RHGDSDPLEA REAIIAKDPF DRADKPGTPE IVDWDKDHAD
3490 3500 3510 3520 3530 3540
LKWTPPADDG GAPIEGYLVE MRTPSGDWVP AVTVGAGELT ATVDGLKPGQ TYQFRVKALN
3550 3560 3570 3580 3590 3600
KAGESTPSDP SRTMVAKPRH LAPKINRDMF VAQRVKAGQT LNFDVNVEGE PAPKIEWFLN
3610 3620 3630 3640 3650 3660
GSPLSSGGNT HIDNNTDNNT KLTTKSTARA DSGKYKIVAT NESGKDEHEV DVNILDIPGA
3670 3680 3690 3700 3710 3720
PEGPLRHKDI TKESVVLKWD EPLDDGGSPI TNYVVEKQED GGRWVPCGET SDTSLKVNKL
3730 3740 3750 3760 3770 3780
SEGHEYKFRV KAVNRQGTSA PLTSDHAIVA KNPFDEPDAP TDVTPVDWDK DHVDLEWKPP
3790 3800 3810 3820 3830 3840
ANDGGAPIDA YIVEKKDKFG DWVECARVDG KTTKATADNL TPGETYQFRV KAVNKAGPGK
3850 3860 3870 3880 3890 3900
PSDPTGNVVA KPRRMAPKLN LAGLLDLRIK AGTPIKLDIA FEGEPAPVAK WKANDATIDT
3910 3920 3930 3940 3950 3960
GARADVTNTP TSSAIHIFSA VRGDTGVYKI IVENEHGKDT AQCNVTVLDV PGTPEGPLKI
3970 3980 3990 4000 4010 4020
DEIHKEGCTL NWKPPTDNGG TDVLHYIVEK MDTSRGTWQE VGTFPDCTAK VNKLVPGKEY
4030 4040 4050 4060 4070 4080
AFRVKAVNLQ GESKPLEAEE PIIAKNQFDV PDPVDKPEVT DWDKDRIDIK WNPTANNGGA
4090 4100 4110 4120 4130 4140
PVTGYIVEKK EKGSAIWTEA GKTPGTTFSA DNLKPGVEYE FRVIAVNAAG PSDPSDPTDP
4150 4160 4170 4180 4190 4200
QITKARYLKP KILTASRKIK IKAGFTHNLE VDFIGAPDPT ATWTVGDSGA ALAPELLVDA
4210 4220 4230 4240 4250 4260
KSSTTSIFFP SAKRADSGNY KLKVKNELGE DEAIFEVIVQ DRPSAPEGPL EVSDVTKDSC
4270 4280 4290 4300 4310 4320
VLNWKPPKDD GGAEISNYVV EKRDTKTNTW VPVSAFVTGT SITVPKLTEG HEYEFRVMAE
4330 4340 4350 4360 4370 4380
NTFGRSDSLN TDEPVLAKDP FGTPGKPGRP EIVDTDNDHI DIKWDPPRDN GGSPVDHYDI
4390 4400 4410 4420 4430 4440
ERKDAKTGRW IKVNTSPVQG TAFSDTRVQK GHTYEYRVVA VNKAGPGQPS DSSAAATAKP
4450 4460 4470 4480 4490 4500
MHEAPKFDLD LDGKEFRVKA GEPLVITIPF TASPQPDISW TKEGGKPLAG VETTDSQTKL
4510 4520 4530 4540 4550 4560
VIPSTRRSDS GPVKIKAVNP YGEAEANIKI TVIDKPGAPE NITYPAVSRH TCTLNWDAPK
4570 4580 4590 4600 4610 4620
DDGGAEIAGY KIEYQEVGSQ IWDKVPGLIS GTAYTVRGLE HGQQYRFRIR AENAVGLSDY
4630 4640 4650 4660 4670 4680
CQGVPVVIKD PFDPPGAPST PEITGYDTNQ VSLAWNPPRD DGGSPILGYV VERFEKRGGG
4690 4700 4710 4720 4730 4740
DWAPVKMPMV KGTECIVPGL HENETYQFRV RAVNAAGHGE PSNGSEPVTC RPYVEKPGAP
4750 4760 4770 4780 4790 4800
DAPRVGKITK NSAELTWNRP LRDGGAPIDG YIVEKKKLGD NDWTRCNDKP VRDTAFEVKN
4810 4820 4830 4840 4850 4860
LGEKEEYEFR VIAVNSAGEG EPSKPSDLVL IEEQPGRPIF DINNLKDITV RAGETIQIRI
4870 4880 4890 4900 4910 4920
PYAGGNPKPI IDLFNGNSPI FENERTVVDV NPGEIVITTT GSKRSDAGPY KISATNKYGK
4930 4940 4950 4960 4970 4980
DTCKLNVFVL DAPGKPTGPI RATDIQADAM TLSWRPPKDN GGDAITNYVV EKRTPGGDWV
4990 5000 5010 5020 5030 5040
TVGHPVGTTL RVRNLDANTP YEFRVRAENQ YGVGEPLETD DAIVAKNPFD TPGAPGQPEA
5050 5060 5070 5080 5090 5100
VETSEEAITL QWTRPTSDGG APIQGYVIEK REVGSTEWTK AAFGNILDTK HRVTGLTPKK
5110 5120 5130 5140 5150 5160
TYEFRVAAYN AAGQGEYSVN SVPITADNAP TRPKINMGML TRDILAYAGE RAKILVPFAA
5170 5180 5190 5200 5210 5220
SPAPKVTFSK GENKISPTDP RVKVEYSDFL ATLTIEKSEL TDGGLYFVEL ENSQGSDSAS
5230 5240 5250 5260 5270 5280
IRLKVVDKPA SPQHIRVEDI APDCCTLYWM PPSSDGGSPI TNYIVEKLDL RHSDGKWEKV
5290 5300 5310 5320 5330 5340
SSFVRNLNYT VGGLIKDNRY RFRVRAETQY GVSEPCELAD VVVAKYQFEV PNQPEAPTVR
5350 5360 5370 5380 5390 5400
DKDSTWAELE WDPPRDGGSK IIGYQVQYRD TSSGRWINAK MDLSEQCHAR VTGLRQNGEF
5410 5420 5430 5440 5450 5460
EFRIIAKNAA GFSKPSPPSE RCQLKSRFGP PGPPIHVGAK SIGRNHCTIT WMAPLEDGGS
5470 5480 5490 5500 5510 5520
KITGYNVEIR EYGSTLWTVA SDYNVREPEF TVDKLREFND YEFRVVAINA AGKGIPSLPS
5530 5540 5550 5560 5570 5580
GPIKIQESGG SRPQIVVKPE DTAQPYNRRA VFTCEAVGRP EPTARWLRNG RELPESSRYR
5590 5600 5610 5620 5630 5640
FEASDGVYKF TIKEVWDIDA GEYTVEVSNP YGSDTATANL VVQAPPVIEK DVPNTILPSG
5650 5660 5670 5680 5690 5700
DLVRLKIYFS GTAPFRHSLV LNREEIDMDH PTIRIVEFDD HILITIPALS VREAGRYEYT
5710 5720 5730 5740 5750 5760
VSNDSGEATT GFWLNVTGLP EAPQGPLHIS NIGPSTATLS WRPPVTDGGS KITSYVVEKR
5770 5780 5790 5800 5810 5820
DLSKDEWVTV TSNVKDMNYI VTGLFENHEY EFRVSAQNEN GIGAPLVSEH PIIARLPFDP
5830 5840 5850 5860 5870 5880
PTSPLNLEIV QVGGDYVTLS WQRPLSDGGG RLRGYIVEKQ EEEHDEWFRC NQNPSPPNNY
5890 5900 5910 5920 5930 5940
NVPNLIDGRK YRYRVFAVND AGLSDLAELD QTLFQASGSG EGPKIVSPLS DLNEEVGRCV
5950 5960 5970 5980 5990 6000
TFECEISGSP RPEYRWFKGC KELVDTSKYT LINKGDKQVL IINDLTSDDA DEYTCRATNS
6010 6020 6030 6040 6050 6060
SGTRSTRANL RIKTKPRVFI PPKYHGGYEA QKGETIELKI PYKAYPQGEA RWTKDGEKIE
6070 6080 6090 6100 6110 6120
NNSKFSITTD DKFATLRISN ASREDYGEYR VVVENSVGSD SGTVNVTVAD VPEPPRFPII
6130 6140 6150 6160 6170 6180
ENILDEAVIL SWKPPALDGG SLVTNYTIEK REAMGGSWSP CAKSRYTYTT IEGLRAGKQY
6190 6200 6210 6220 6230 6240
EFRIIAENKH GQSKPCEPTA PVLIPGDERK RRRGYDVDEQ GKIVRGKGTV SSNYDNYVFD
6250 6260 6270 6280 6290 6300
IWKQYYPQPV EIKHDHVLDH YDIHEELGTG AFGVVHRVTE RATGNNFAAK FVMTPHESDK
6310 6320 6330 6340 6350 6360
ETVRKEIQTM SVLRHPTLVN LHDAFEDDNE MVMIYEFMSG GELFEKVADE HNKMSEDEAV
6370 6380 6390 6400 6410 6420
EYMRQVCKGL CHMHENNYVH LDLKPENIMF TTKRSNELKL IDFGLTAHLD PKQSVKVTTG
6430 6440 6450 6460 6470 6480
TAEFAAPEVA EGKPVGYYTD MWSVGVLSYI LLSGLSPFGG ENDDETLRNV KSCDWNMDDS
6490 6500 6510 6520 6530 6540
AFSGISEDGK DFIRKLLLAD PNTRMTIHQA LEHPWLTPGN APGRDSQIPS SRYTKIRDSI
6550 6560 6570 6580 6590 6600
KTKYDAWPEP LPPLGRISNY SSLRKHRPQE YSIRDAFWDR SEAQPRFIVK PYGTEVGEGQ
6610 6620 6630 6640 6650 6660
SANFYCRVIA SSPPVVTWHK DDRELKQSVK YMKRYNGNDY GLTINRVKGD DKGEYTVRAK
6670 6680 6690 6700 6710 6720
NSYGTKEEIV FLNVTRHSEP LKFEPLEPMK KAPSPPRVEE FKERRSAPFF TFHLRNRLIQ
6730 6740 6750 6760 6770 6780
KNHQCKLTCS LQGNPNPTIE WMKDGHPVDE DRVQVSFRSG VCSLEIFNAR VDDAGTYTVT
6790 6800 6810 6820 6830 6840
ATNDLGVDVS ECVLTVQTKG GEPIPRVSSF RPRRAYDTLS TGTDVERSHS YADMRRRSLI
6850 6860 6870 6880 6890 6900
RDVSPDVRSA ADDLKTKITN ELPSFTAQLS DSETEVGGSA EFSAAVSGQP EPLIEWLHNG
6910 6920 6930 6940 6950 6960
ERISESDSRF RASYVAGKAT LRISDAKKSD EGQYLCRASN SAGQEQTRAT LTVKGDQPLL
6970 6980 6990 7000 7010 7020
NGHAGQAVES ELRVTKHLGG EIVNNGESVT FEARVQGTPE EVLWMRNGQE LTNGDKTSIS
7030 7040 7050 7060 7070 7080
QDGETLSFTI NSADASDAGH YQLEVRSKGT NLVSVASLVV VGEKADPPVT RLPSSVSAPL
7090 7100 7110 7120 7130 7140
GGSTAFTIEF ENVEGLTVQW FRGSEKIEKN ERVKSVKTGN TFKLDIKNVE QDDDGIYVAK
7150
VVKEKKAIAK YAAALLLV