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Cancer metastasis database

Annotation category 5

Gene information

Gene ID 4323
Symbol

MMP14

Synonymous

MMP-14|MMP-X1|MT-MMP|MT-MMP 1|MT1-MMP|MT1MMP|MTMMP1|WNCHRS

Full name

matrix metallopeptidase 14 (membrane-inserted)

Gene description

matrix metalloproteinase-14|membrane type 1 metalloprotease|membrane-type-1 matrix metalloproteinase

Cytoband

14q11.2

Gene type

protein-coding

Synonymous

MIM:600754; HGNC:HGNC:7160; Ensembl:ENSG00000157227; HPRD:02856; Vega:OTTHUMG00000028704

Pathway and disease

Pathways and Diseases

Detail

Pathway

inhibition of matrix metalloproteinases;PID BioCarta;100045

Pathway

Alzheimer disease-presenilin pathway;PANTHER;P00004

Pathway

GnRH signaling pathway;KEGG PATHWAY;hsa04912

Pathway

Signaling events mediated by focal adhesion kinase;PID Curated;200192

Pathway

HIF-2-alpha transcription factor network;PID Curated;200030

Disease

Ischemia;FunDO

Disease

Diabetes mellitus;FunDO

Disease

Emphysema;FunDO

Disease

Hyperlipidemia;FunDO

Disease

Cancer;FunDO

Disease

Endometriosis;FunDO

Disease

Chronic obstructive airway disease;FunDO

Disease

Atherosclerosis;FunDO

Sequence Information

Nucleotide Sequence

>4323 : length: 3610
GAGAGGCTGTGGGAGAAGGGAGGGACCAGAGGAGAGAGCGAGAGAGGGAACCAGACCCCAGTTCGCCGACTAAGCAGAAGAAAGATCAAAAACCGGAAAAGAGGAGAAGAGCAAACAGGC
ACTTTGAGGAACAATCCCCTTTAACTCCAAGCCGACAGCGGTCTAGGAATTCAAGTTCAGTGCCTACCGAAGACAAAGGCGCCCCGAGGGAGTGGCGGTGCGACCCCAGGGCGTGGGCCC
GGCCGCGGAGCCCACACTGCCCGGCTGACCCGGTGGTCTCGGACCATGTCTCCCGCCCCAAGACCCCCCCGTTGTCTCCTGCTCCCCCTGCTCACGCTCGGCACCGCGCTCGCCTCCCTC
GGCTCGGCCCAAAGCAGCAGCTTCAGCCCCGAAGCCTGGCTACAGCAATATGGCTACCTGCCTCCCGGGGACCTACGTACCCACACACAGCGCTCACCCCAGTCACTCTCAGCGGCCATC
GCTGCCATGCAGAAGTTTTACGGCTTGCAAGTAACAGGCAAAGCTGATGCAGACACCATGAAGGCCATGAGGCGCCCCCGATGTGGTGTTCCAGACAAGTTTGGGGCTGAGATCAAGGCC
AATGTTCGAAGGAAGCGCTACGCCATCCAGGGTCTCAAATGGCAACATAATGAAATCACTTTCTGCATCCAGAATTACACCCCCAAGGTGGGCGAGTATGCCACATACGAGGCCATTCGC
AAGGCGTTCCGCGTGTGGGAGAGTGCCACACCACTGCGCTTCCGCGAGGTGCCCTATGCCTACATCCGTGAGGGCCATGAGAAGCAGGCCGACATCATGATCTTCTTTGCCGAGGGCTTC
CATGGCGACAGCACGCCCTTCGATGGTGAGGGCGGCTTCCTGGCCCATGCCTACTTCCCAGGCCCCAACATTGGAGGAGACACCCACTTTGACTCTGCCGAGCCTTGGACTGTCAGGAAT
GAGGATCTGAATGGAAATGACATCTTCCTGGTGGCTGTGCACGAGCTGGGCCATGCCCTGGGGCTCGAGCATTCCAGTGACCCCTCGGCCATCATGGCACCCTTTTACCAGTGGATGGAC
ACGGAGAATTTTGTGCTGCCCGATGATGACCGCCGGGGCATCCAGCAACTTTATGGGGGTGAGTCAGGGTTCCCCACCAAGATGCCCCCTCAACCCAGGACTACCTCCCGGCCTTCTGTT
CCTGATAAACCCAAAAACCCCACCTATGGGCCCAACATCTGTGACGGGAACTTTGACACCGTGGCCATGCTCCGAGGGGAGATGTTTGTCTTCAAGGAGCGCTGGTTCTGGCGGGTGAGG
AATAACCAAGTGATGGATGGATACCCAATGCCCATTGGCCAGTTCTGGCGGGGCCTGCCTGCGTCCATCAACACTGCCTACGAGAGGAAGGATGGCAAATTCGTCTTCTTCAAAGGAGAC
AAGCATTGGGTGTTTGATGAGGCGTCCCTGGAACCTGGCTACCCCAAGCACATTAAGGAGCTGGGCCGAGGGCTGCCTACCGACAAGATTGATGCTGCTCTCTTCTGGATGCCCAATGGA
AAGACCTACTTCTTCCGTGGAAACAAGTACTACCGTTTCAACGAAGAGCTCAGGGCAGTGGATAGCGAGTACCCCAAGAACATCAAAGTCTGGGAAGGGATCCCTGAGTCTCCCAGAGGG
TCATTCATGGGCAGCGATGAAGTCTTCACTTACTTCTACAAGGGGAACAAATACTGGAAATTCAACAACCAGAAGCTGAAGGTAGAACCGGGCTACCCCAAGTCAGCCCTGAGGGACTGG
ATGGGCTGCCCATCGGGAGGCCGGCCGGATGAGGGGACTGAGGAGGAGACGGAGGTGATCATCATTGAGGTGGACGAGGAGGGCGGCGGGGCGGTGAGCGCGGCTGCCGTGGTGCTGCCC
GTGCTGCTGCTGCTCCTGGTGCTGGCGGTGGGCCTTGCAGTCTTCTTCTTCAGACGCCATGGGACCCCCAGGCGACTGCTCTACTGCCAGCGTTCCCTGCTGGACAAGGTCTGACGCCCA
CCGCCGGCCCGCCCACTCCTACCACAAGGACTTTGCCTCTGAAGGCCAGTGGCAGCAGGTGGTGGTGGGTGGGCTGTTCCCATCGTCCCGAGCCCCCTCCCCGCAGCCTCCTTGCTTCTC
TCTGTCCCCTGGCTGGCCTCCTTCACCCTGACCGCCTCCCTCCCTCCTGCCCCGGCATTGCATCTTCCCTAGATAGGTCCCCTGAGGGCTGAGTGGGAGGGCGGCCCTTTCCAGCCTCTG
CCCCTCAGGGGAACCCTGTAGCTTTGTGTCTGTCCAGCCCCATCTGAATGTGTTGGGGGCTCTGCACTTGAAGGCAGGACCCTCAGACCTCGCTGGTAAAGGTCAAATGGGGTCATCTGC
TCCTTTTCCATCCCCTGACATACCTTAACCTCTGAACTCTGACCTCAGGAGGCTCTGGGCACTCCAGCCCTGAAAGCCCCAGGTGTACCCAATTGGCAGCCTCTCACTACTCTTTCTGGC
TAAAAGGAATCTAATCTTGTTGAGGGTAGAGACCCTGAGACAGTGTGAGGGGGTGGGGACTGCCAAGCCACCCTAAGACCTTGGGAGGAAAACTCAGAGAGGGTCTTCGTTGCTCAGTCA
GTCAAGTTCCTCGGAGATCTGCCTCTGCCTCACCTACCCCAGGGAACTTCCAAGGAAGGAGCCTGAGCCACTGGGGACTAAGTGGGCAGAAGAAACCCTTGGCAGCCCTGTGCCTCTCGA
ATGTTAGCCTTGGATGGGGCTTTCACAGTTAGAAGAGCTGAAACCAGGGGTGCAGCTGTCAGGTAGGGTGGGGCCGGTGGGAGAGGCCCGGGTCAGAGCCCTGGGGGTGAGCCTGAAGGC
CACAGAGAAAGAACCTTGCCCAAACTCAGGCAGCTGGGGCTGAGGCCCAAAGGCAGAACAGCCAGAGGGGGCAGGAGGGGACCAAAAAGGAAAATGAGGACGTGCAGCAGCATTGGAAGG
CTGGGGCCGGGCAGGCCAGGCCAAGCCAAGCAGGGGGCCACAGGGTGGGCTGTGGAGCTCTCAGGAAGGGCCCTGAGGAAGGCACACTTGCTCCTGTTGGTCCCTGTCCTTGCTGCCCAG
GCAGCGTGGAGGGGAAGGGTAGGGCAGCCAGAGAAAGGAGCAGAGAAGGCACACAAACGAGGAATGAGGGGCTTCACGAGAGGCCACAGGGCCTGGCTGGCCACGCTGTCCCGGCCTGCT
CACCATCTCAGTGAGGGGCAGGAGCTGGGGCTCGCTTAGGCTGGGTCCACGCTTCCCTGGTGCCAGCACCCCTCAAGCCTGTCTCACCAGTGGCCTGCCCTCTCGCTCCCCCACCCAGCC
CACCCATTGAAGTCTCCTTGGGCCACCAAAGGTGGTGGCCATGGTACCGGGGACTTGGGAGAGTGAGACCCAGTGGAGGGAGCAAGAGGAGAGGGATGTCGGGGGGGTGGGGCACGGGGT
AGGGGAAATGGGGTGAACGGTGCTGGCAGTTCGGCTAGATTTCTGTCTTGTTTGTTTTTTTGTTTTGTTTAATGTATATTTTTATTATAATTATTATATATGAATTCCATTCAAAAAAAA
AAAAAAAAAA

Protein Sequence

>4323 : length: 582
MSPAPRPPRCLLLPLLTLGTALASLGSAQSSSFSPEAWLQQYGYLPPGDLRTHTQRSPQSLSAAIAAMQKFYGLQVTGKADADTMKAMRRPRCGVPDKFGAEIKANVRRKRYAIQGLKWQ
HNEITFCIQNYTPKVGEYATYEAIRKAFRVWESATPLRFREVPYAYIREGHEKQADIMIFFAEGFHGDSTPFDGEGGFLAHAYFPGPNIGGDTHFDSAEPWTVRNEDLNGNDIFLVAVHE
LGHALGLEHSSDPSAIMAPFYQWMDTENFVLPDDDRRGIQQLYGGESGFPTKMPPQPRTTSRPSVPDKPKNPTYGPNICDGNFDTVAMLRGEMFVFKERWFWRVRNNQVMDGYPMPIGQF
WRGLPASINTAYERKDGKFVFFKGDKHWVFDEASLEPGYPKHIKELGRGLPTDKIDAALFWMPNGKTYFFRGNKYYRFNEELRAVDSEYPKNIKVWEGIPESPRGSFMGSDEVFTYFYKG
NKYWKFNNQKLKVEPGYPKSALRDWMGCPSGGRPDEGTEEETEVIIIEVDEEGGGAVSAAAVVLPVLLLLLVLAVGLAVFFFRRHGTPRRLLYCQRSLLDKV