Overview
| Uniprot ID | D3ZFD0 |
| Protein Name | Unconventional myosin-XVIIIa |
| Gene Name | Myo18a |
| Organism | Rattus norvegicus |
Kla Sites from experimental identification
| Position |
Flanking peptide |
| 719 |
AIFKHQLKGGTLQRS |
Function
May link Golgi membranes to the cytoskeleton and participate in the tensile force required for vesicle budding from the Golgi. Thereby, may play a role in Golgi membrane trafficking and could indirectly give its flattened shape to the Golgi apparatus. Alternatively, in concert with LURAP1 and CDC42BPA/CDC42BPB, has been involved in modulating lamellar actomyosin retrograde flow that is crucial to cell protrusion and migration (By similarity). May be involved in the maintenance of the stromal cell architectures required for cell to cell contact (By similarity). Regulates trafficking, expression, and activation of innate immune receptors on macrophages. Plays a role to suppress inflammatory responsiveness of macrophages via a mechanism that modulates CD14 trafficking. Acts as a receptor of surfactant-associated protein A (SFTPA1/SP-A) and plays an important role in internalization and clearance of SFTPA1-opsonized S.aureus by alveolar macrophages. Strongly enhances natural killer cell cytotoxicity (By similarity)
Protein Sequence
10
MFNLMKKDKD
20
KDGGRKEKKE
30
KKEKKERMSA
40
AELRSLEEMS
50
MRRGFFNLNR
60
SSKRESKTRL
70
EISNPIPIKV
80
ASGSDLHLTD
90
IDSDSNRGSI
100
ILDSGHLSTA
110
SSSDDLKGEE
120
GSFRGSVLQR
130
AAKFGSLAKQ
140
NSQMIVKRFS
150
FSQRSRDESA
160
SETSTPSEHS
170
AAPSPQVEVR
180
TLEGQLMQHS
190
GLGIPRPGPR
200
SRVPELVTKR
210
FPADLRLPAL
220
VPPPPPALRE
230
LELQRRPTGD
240
FGFSLRRTTM
250
LDRAPEGQAY
260
RRVVHFAEPG
270
AGTKDLALGL
280
VPGDRLVEIN
290
GQNVENKSRD
300
EIVEMIRQSG
310
DSVRLKVQPI
320
PELSELSRSW
330
LRTGEGHRRE
340
PTDAKTEEQI
350
AAEEAWYETE
360
KVWLVHRDGF
370
SLASQLKSEE
380
LSLPEGKVRV
390
KLDHDGAILD
400
VDEDDVEKAN
410
APSCDRLEDL
420
ASLVYLNESS
430
VLHTLRQRYG
440
ASLLHTYAGP
450
SLLVLSPRGA
460
PAVYSEKVMH
470
MFKGCRREDM
480
APHIYAVAQT
490
AYRAMLMSRQ
500
DQSIVLLGSS
510
GSGKTTSSQH
520
LVQYLATIAG
530
TSGNKVFSVE
540
KWQALATLLE
550
AFGNSPTIMN
560
GSATRFSQIL
570
SLDFDQAGQV
580
ASASVQTMLL
590
EKLRVARRPA
600
SEATFNVFYY
610
LLACGDSTLR
620
TELHLNHLAE
630
NNVFGIVPLS
640
KPEEKQRAAQ
650
QFSKLQTAMK
660
VLAISPEEQK
670
ACWLILASIY
680
HLGAAGATKA
690
VFSCGRKQFA
700
RHEWAQKAAY
710
LLGCSLEELS
720
SAIFKHQLKG
730
GTLQRSTSFR
740
QGPEESGLGE
750
GTGTKLSALE
760
CLEGMASGLY
770
SELFTLLISL
780
VNRALKSSQH
790
SLCSMMIVDT
800
PGFQNPEWGG
810
SARGASFEEL
820
CHNYAQDRLQ
830
KLFHERTFLQ
840
ELERYKEDNI
850
ELAFDDLEPV
860
TDDSVAAVDQ
870
ASHQSLVRSL
880
AHADEARGLL
890
WLLEEEALVP
900
GATEDTLLDR
910
LFSYYGPQEG
920
DKKGQSPLLR
930
SSKPRHFLLG
940
HSHGTNWVEY
950
NVTGWLNYTK
960
QNPATQNAPR
970
LLQDSQNSVV
980
ECLPSKRKAL
990
GSVLSSEKKK
1000
RKKKKKKKCP
1010
ESANSVAHTY
1020
SLSTQTLQVD
1030
ALIDTIKRSK
1040
MHFVHCFLPV
1050
AEGWPGEPRS
1060
ASSRRVSSSS
1070
ELDLPPGDPC
1080
EAGLLQLDVS
1090
LLRAQLRGSR
1100
LLDAIRMYRQ
1110
GYPDHMVFSE
1120
FRRRFDVLAP
1130
HLTKKHGRNY
1140
IMVDEKRAVE
1150
ELLESLDLEK
1160
SSCCMGLSRV
1170
FFRAGTLARL
1180
EEQRDEETSR
1190
HLTLFQAACR
1200
GYLARQHFKK
1210
RKIQDLAIRC
1220
VQKNIKKNKG
1230
VKDWPWWKLF
1240
TTVRPLIQVQ
1250
LSEEQIRNKD
1260
EEIQQLRNKL
1270
EKVEKERNEL
1280
RLNSDRLETR
1290
ISELTSELTD
1300
ERNTGESASQ
1310
LLDAETAERL
1320
RTEKEMKELQ
1330
TQYDALKKQM
1340
EAMDMEVMEA
1350
RLIRAAEING
1360
EVDDDDAGGE
1370
WRLKYERAVR
1380
EVDFTKKRLQ
1390
QELEDKMEVE
1400
QQNRRQLERR
1410
LGDLQADSDE
1420
SQRALQQLKK
1430
KCQRLTAELQ
1440
DTKLHLEGQQ
1450
VRNHELEKKQ
1460
RRFDSELSQA
1470
HEETQREKLQ
1480
REKLQREKDM
1490
LLAEAFSLKQ
1500
QMEEKDLDIA
1510
GFTQKVVSLE
1520
AELQDISSQE
1530
SKDEASLAKV
1540
KKQLRDLEAK
1550
VKDQEEELDE
1560
QAGSIQMLEQ
1570
AKLRLEMEME
1580
RMRQTHSKEM
1590
ESRDEEVEEA
1600
RQSCQKKLRQ
1610
MEVQLEEEYE
1620
DKQKALREKR
1630
ELESKLSTLS
1640
DQVNQRDFES
1650
EKRLRKDLKR
1660
TKALLADAQI
1670
MLDHLKNNAP
1680
SKREIAQLKN
1690
QLEESEFTCA
1700
AAVKARKAME
1710
VEMEDLHLQI
1720
DDIAKAKTAL
1730
EEQLSRLQRE
1740
KNEIQNRLEE
1750
DQEDMNELMK
1760
KHKAAVAQAS
1770
RDMAQMNDLQ
1780
AQLEESNKEK
1790
QELQEKLQAL
1800
QSQVEFLEQS
1810
MVDKSLVSRQ
1820
EAKIRELETR
1830
LEFEKTQVKR
1840
LESMASRLKE
1850
NMEKLTEERD
1860
QRAAAENREK
1870
EQNKRLQRQL
1880
RDTKEEMSEL
1890
ARKEAEASRK
1900
KHELEMDLES
1910
LEAANQSLQA
1920
DLKLAFKRIG
1930
DLQAAIEDEM
1940
ESDENEDLIN
1950
SLQDMVTKYQ
1960
KRKNKLEGDS
1970
DVDSELEDRV
1980
DGVKSWLSKN
1990
KGPSKAPSDD
2000
GSLKSSSPTS
2010
HWKSLAPDLS
2020
DDEHDPVDSI
2030
SRPRFSHNYL
2040
SDSDTEAKLT
ETNA
Gene Ontology
| Classification |
GO ID |
Description |
| Cellular Component |
GO:0042641 |
actomyosin |
| Cellular Component |
GO:0005903 |
brush border |
| Cellular Component |
GO:0005737 |
cytoplasm |
| Cellular Component |
GO:0005856 |
cytoskeleton |
| Cellular Component |
GO:0000139 |
Golgi membrane |
| Cellular Component |
GO:0005815 |
microtubule organizing center |
| Cellular Component |
GO:0032982 |
myosin filament |
| Cellular Component |
GO:0016460 |
myosin II complex |
| Cellular Component |
GO:0045335 |
phagocytic vesicle |
| Cellular Component |
GO:0005802 |
trans-Golgi network |
| Molecular Function |
GO:0051015 |
actin filament binding |
| Molecular Function |
GO:0043531 |
ADP binding |
| Molecular Function |
GO:0005524 |
ATP binding |
| Molecular Function |
GO:0003774 |
cytoskeletal motor activity |
| Biological Process |
GO:0031032 |
actomyosin structure organization |
| Biological Process |
GO:0090164 |
asymmetric Golgi ribbon formation |
| Biological Process |
GO:0007249 |
canonical NF-kappaB signal transduction |
| Biological Process |
GO:0016477 |
cell migration |
| Biological Process |
GO:0071346 |
cellular response to type II interferon |
| Biological Process |
GO:0007030 |
Golgi organization |
| Biological Process |
GO:0090161 |
Golgi ribbon formation |
| Biological Process |
GO:0048194 |
Golgi vesicle budding |
| Biological Process |
GO:0043066 |
negative regulation of apoptotic process |
| Biological Process |
GO:1903028 |
positive regulation of opsonization |
| Biological Process |
GO:0050714 |
positive regulation of protein secretion |
| Biological Process |
GO:0043030 |
regulation of macrophage activation |
Reference
[1] Sheng L, Xu H, Wang Y, Ni J, Xiang T et al.. Systematic analysis of lysine lactylation in nucleus pulposus cells.. iScience 27(11):111157. 2024 Nov 15. PMID: 39524337.
[2] Chen Y, Sun W, Sun Z, Zhao H, Wu T et al.. Effect of electroacupuncture on hippocampal protein lactylation in a rat model of vascular dementia.. Front Neurol 16:1629474. 2025. PMID: 40963935.