VIM (vimentin)

symbol
VIM
locus group
protein-coding gene
location
10p13
gene_family
Intermediate filaments Type III
alias symbol
-
alias name
None
entrez id
7431
ensembl gene id
ENSG00000026025
ucsc gene id
uc001iou.3
refseq accession
NM_003380
hgnc_id
HGNC:12692
approved reserved
2001-06-22
10p13
ChineseEnglish

The VIM gene encodes vimentin, a type III intermediate filament protein that serves as a critical structural component of the cytoskeleton, primarily expressed in mesenchymal cells such as fibroblasts, endothelial cells, and immune cells. By forming a robust network that provides mechanical stability and resilience, vimentin maintains cellular integrity and facilitates essential processes including cell migration, adhesion, and intracellular transport, while also interacting with actin and tubulin to coordinate cytoskeletal dynamics. Beyond its structural role, vimentin is heavily implicated in cellular stress responses, where it offers protection against oxidative damage, and in immune modulation, as it can be released extracellularly to act as a damage-associated molecular pattern (DAMP) that activates inflammatory pathways. The expression of VIM is tightly regulated by key signaling cascades, including the TGF-β and Wnt pathways, and its upregulation is a hallmark of epithelial-mesenchymal transition (EMT), a process that endows cancer cells with migratory and invasive capabilities, contributing to metastasis in malignancies such as breast cancer, prostate cancer, and melanoma. Furthermore, vimentin plays a significant role in fibrotic diseases like pulmonary and hepatic fibrosis by promoting fibroblast activation, and it has been identified as a receptor or cofactor for certain viral infections, including dengue virus. Although rare mutations in VIM can lead to hereditary conditions such as cataracts and myopathies due to its expression in lens and muscle tissues, the gene’s multifaceted involvement in tissue remodeling, wound healing, and immune signaling underscores its broad importance in both physiological homeostasis and pathological disease progression.

Nucleotide sequence of VIM:[NCBI]
Loading Gene Browser...
Protein Sequence
1MSTRSVSSSS YRRMFGGPGT ASRPSSSRSY VTTSTRTYSL
41GSALRPSTSR SLYASSPGGV YATRSSAVRL RSSVPGVRLL
81 QDSVDFSLA DAINTEFKNT RTNEKVELQE LNDRFANYID
121KVRFLEQQNK ILLAELEQLK GQGKSRLGDL YEEEMRELRR
161Q VDQLTNDK ARVEVERDNL AEDIMRLREK LQEEMLQREE
201AENTLQSFRQ DVDNASLARL DLERKVESLQ EEIAFLKKLH
241EE EIQELQA QIQEQHVQID VDVSKPDLTA ALRDVRQQYE
281SVAAKNLQEA EEWYKSKFAD LSEAANRNND ALRQAKQEST
321EYR RQVQSL TCEVDALKGT NESLERQMRE MEENFAVEAA
361NYQDTIGRLQ DEIQNMKEEM ARHLREYQDL LNVKMALDIE
401IATY RKLLE GEESRISLPL PNFSSLNLRE TNLDSLPLVD
441THSKRTLLIK TVETRDGQVI NETSQHHDDL E
Structure predicted by AlphaFold DB(UniProt: P08670). Color indicates pLDDT confidence (dark blue = high, yellow/orange = low).
SNP variants of VIM:           Showing partial SNPs
rs151766       rs1042003       rs1899900       rs3758410       rs3758411       rs3758412       rs3758413       rs6602186       rs11545547       rs11545548       rs11545554       rs12358795       rs17140300       rs34171769       rs35359588       rs35464523       rs41289325      
Forward Primer
Forward Tm
Reverse Primer
Reverse Tm
Score
GAGCTACGTGACTACGTCC
59
TTGAACTCGGTGTTGATGG
58
CTAACCAACGACAAAGCCC
59
TCTCCTCCTGCAATTTCTCC
59
CACGAAGAGGAAATCCAGG
57
GTCAGGCTTGGAAACATCC
58
GCTGTAAGTTGGTAGCACTG
59
TGATTCAAGTCTCAGCGGG
59
TGTAAGTTGGTAGCACTGAG
57
ATTGATTCAAGTCTCAGCGG
58
TCCACGAAGAGGAAATCCAG
59
CAGGCTTGGAAACATCCAC
59
CTACGTGACTACGTCCACC
59
CTTGAACTCGGTGTTGATGG
59
GCTAACCAACGACAAAGCC
59
TCCTCCTGCAATTTCTCCC
59
CTAACCAACGACAAAGCCC
59
TCCTCCTGCAATTTCTCCC
59
CTGTAAGTTGGTAGCACTGAG
58
TTGATTCAAGTCTCAGCGG
57
Transcription Factors
Target Gene
Interaction Type
PubMed References
AR
VIM
Repression
CTNNB1
VIM
Activation
ERG
VIM
Activation
ETV4
VIM
Activation
HDGF
VIM
Activation
HIF1A
VIM
Activation
HIPK2
VIM
Repression
HOXA7
VIM
Activation
KLF8
VIM
Repression
PARP1
VIM
Activation

Subcellular localization of VIM (and its protein):

[UniProt]     [GenomeNet]

" d="M482.414,245.296c3.539,4.293,4.455,10.009,0.202,11 c-4.244,0.996-4.983-10.983-8.293-8.438c-5.271,4.08,9.834,12.271,5.144,17.287c-3.717,3.607-6.172-5.75-10.839-1.976 c-4.673,3.776,6.781,7.299,2.831,11.326c-4.354,4.045-6.979-1.449-9.837-5.517c-1.193-1.742-2.059-3.851-3.595-2.748 c-1.516,1.078-1.854,1.795-0.938,3.666c2.374,4.854,9.235,10.119,5.156,12.535c-5.636,3.346-5.044-8.871-9.426-7.574 c-4.388,1.291,2.557,10.66-1.245,11.141c-4.089,0.545-3.483-10.239-6.979-8.575c-2.522,1.206-0.929,3.071-0.938,4.899 c0.004,1.32-0.964,3.6-2.372,4.062c-3.593,1.171-8.544-1.065-10.251-3.59c-6.04-8.93,0.396-15.997,4.639-7.015 c3.023,4.642,5.182,0.834,2.839-2.219c-1.032-1.354-4.309-5.901-0.781-7.252c2.904-1.113,4.271,1.941,5.985,4.592 c2.61,4.016,5.485,0.117,3.031-3.414c-1.828-2.633-2.74-3.803,3.156-7.42c6.405-4.369,6.52,3.869,10.077,0.646 c2.309-1.832-4.783-5.149,0.06-8.995c2.896-2.293,5.18,6.207,7.961,3.516c3.523-2.737-7.717-7.369,0.117-11.736 C473.413,240.77,480.519,242.891,482.414,245.296z"/> Extracellular space Cytosol Plasma membrane Cytoskeleton Lysosome Endosome Peroxisome ER Golgi Apparatus Nucleus Mitochondrion 0 1 2 3 4 5 Confidence
  • plasma membrane
  • cytoplasm
  • extracellular
  • golgi
  • vesicle
  • cytoskeleton
  • endoplasmic reticulum
  • nucleus
  • endosome
  • lysosome
  • mitochondrion

Gene Ontology (GO) terms for VIM:

GO ID
Protein
Source DB
GO:0005198
B0YJC4 (UniProtKB)
IEA
GO:0005882
B0YJC4 (UniProtKB)
IEA
GO:0005198
B0YJC5 (UniProtKB)
IEA
GO:0005882
B0YJC5 (UniProtKB)
IEA
GO:0001948
P08670 (UniProtKB)
IPI
GO:0003725
P08670 (UniProtKB)
IDA
GO:0005200
P08670 (UniProtKB)
IDA
GO:0005212
P08670 (UniProtKB)
IEA
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005515
P08670 (UniProtKB)
IPI
GO:0005737
P08670 (UniProtKB)
IDA
GO:0005737
P08670 (UniProtKB)
IDA
GO:0005737
P08670 (UniProtKB)
IDA
GO:0005777
P08670 (UniProtKB)
IDA
GO:0005829
P08670 (UniProtKB)
IDA
GO:0005829
P08670 (UniProtKB)
TAS
GO:0005829
P08670 (UniProtKB)
TAS
GO:0005829
P08670 (UniProtKB)
TAS
GO:0005829
P08670 (UniProtKB)
TAS
GO:0005829
P08670 (UniProtKB)
TAS
GO:0005829
P08670 (UniProtKB)
TAS
GO:0005829
P08670 (UniProtKB)
TAS
GO:0005856
P08670 (UniProtKB)
TAS
GO:0005856
P08670 (UniProtKB)
IDA
GO:0005882
P08670 (UniProtKB)
IDA
GO:0005925
P08670 (UniProtKB)
IDA
GO:0006928
P08670 (UniProtKB)
TAS
GO:0008022
P08670 (UniProtKB)
IPI
GO:0010628
P08670 (UniProtKB)
IEA
GO:0010977
P08670 (UniProtKB)
IEA
GO:0014002
P08670 (UniProtKB)
IEA
GO:0016032
P08670 (UniProtKB)
IEA
GO:0030049
P08670 (UniProtKB)
TAS
GO:0031252
P08670 (UniProtKB)
IEA
GO:0042802
P08670 (UniProtKB)
IPI
GO:0042802
P08670 (UniProtKB)
IPI
GO:0042802
P08670 (UniProtKB)
IPI
GO:0043005
P08670 (UniProtKB)
IEA
GO:0045109
P08670 (UniProtKB)
IEA
GO:0045111
P08670 (UniProtKB)
IDA
GO:0060020
P08670 (UniProtKB)
IEA
GO:0060395
P08670 (UniProtKB)
IEA
GO:0070062
P08670 (UniProtKB)
IDA
GO:0070062
P08670 (UniProtKB)
IDA
GO:0070307
P08670 (UniProtKB)
IEA
GO:0097110
P08670 (UniProtKB)
IPI
GO:0097110
P08670 (UniProtKB)
IPI
GO:1990254
P08670 (UniProtKB)
IPI
GO:0005886
P08670 (UniProtKB)
IDA
GO:0005198
Q5JVS8 (UniProtKB)
IEA
GO:0005882
Q5JVS8 (UniProtKB)
IEA

microRNAs potentially regulating VIM:     

String
BioGrid
IntAct
mentha
MINT
Reactome
Loading…
Interacting Gene Interaction Source/Score
Disease Score NofPmids NofSnps Source
Disease Score NofPmids NofSnps Source
Nephrosis 0.2 1 0 CTD_human_RGD
Neoplasm Metastasis 0.132486326 47 0 BeFree_CTD_human
Mammary Neoplasms 0.130344586 12 0 BeFree_CTD_human_LHGDN
Prostatic Neoplasms 0.125991584 6 0 BeFree_CTD_human_LHGDN
Cataract 0.120814326 3 0 BeFree_CTD_human
synovial sarcoma 0.120542884 3 0 BeFree_CTD_human
Acute Coronary Syndrome 0.12 1 0 CTD_human
Carcinosarcoma 0.12 1 0 CTD_human
Degenerative polyarthritis 0.12 2 0 CTD_human
Motor Neuron Disease 0.12 1 0 CTD_human
ACLP promotes hypertrophic scar pathogenesis by enhancing myofibroblast activation and cholesterol synthesis-related gene expression.
Shi Y, Song Y, Wang T, Jiao Y, Dang J, Zhang Y, Xiao S, Song B, Yu Z Pathol Res Pract IF: 3.7 2026-01-00
Pathologic and Molecular Diagnosis of Ewing Sarcoma: A Multicenter Analysis From the Latin American Cooperative Group Trial.
Brunetto AT, Gregianin LJ, Sinigaglia M, Pestilho JFCS, Rose A, Villarroel M, Castillo L, de Los Angeles M, de Farias CB, Lopez Marti JM, Alcalde E, da Rosa Rivero LF, Roesler R, Collaborative Study Group of Ewing Family of Tumors EWING J Pediatr Hematol Oncol 2026-01-01
A systematic review and meta-analysis of the global epidemiology of carbapenem-resistant Escherichia coli.
Walker MM, Roberts JA, Li Y, Sime FB Int J Antimicrob Agents IF: 5.0 2026-01-00
HLA class I-naturally presented synovial tissue peptides are recognized by CD8+ T lymphocytes from rheumatoid arthritis patients.
Catalán D, Schneider D, Pesce B, Jaime M, Toro L, Varela-Villarroel C, Montano-Bruno D, Soto L, Bozán F, Cuéllar-Gutiérrez MC, Neira Ó, Arroyo C, Rivera G, Larrondo M, Hinzpeter J, Carrascal M, Aguillón JC, Maggi J Front Immunol IF: 7.0 None
OVOL2 Reinforces Epithelial Identity and Promotes SynT-I Differentiation in the Mouse Placenta.
Patterson VS, Jeyarajah MJ, Rampersaud AM, Bhattad GJ, Renaud SJ Biol Reprod IF: 3.2 2026-07-23
Identification and validation of lactylation-related diagnostic biomarkers for type 2 diabetes by WGCNA.
Zhu N, Gu S, Shen Y, Zhou L, Tu W J Clin Biochem Nutr IF: 1.9 2026-05-01

Loading comments...

Log in to post comments Log In Sign Up

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]