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1.N.6.1.2
The mammalian mitochondrial membrane fusion complex, Mitofusin 1/2 (Mfn1)/Mfn2/Optical Atrophy Protein 1 (OPA1) complex (the equivalent of the yeast Ugo1 protein)/dynamin-related protein 1 Drp1 (Chandhok et al. 2018). Mfn1 and Mfn2 are two very similar (60% identity) GTPase dynamin-like proteins in the outer mitochondrial membrane (members of the CDD P-loop[ NTPase Family) while OPA1 is a sequence divergent GTPase in the inner membrane (Chen and Chan, 2010).  Mfn2 plays roles in mitochondrial fusion and mitochondrial endoplasmic reticulum interactions (Ranieri et al. 2013; Schneeberger et al. 2013). Mfn2, when defective can give rise to Charcot-Marie-Tooth disease, diabetes, neurodegenerative diseases, obesity and vascular diseases (Chandhok et al. 2018).  It may also function in  insulin-dependent myogenesis (Pawlikowska et al. 2007). Drp1 (DLP1, DNM1L) mediates membrane fusion and fission through oligomerization into membrane-associated tubular structures that wrap around the scission site to constrict and sever the mitochondrial membrane in a GTP hydrolysis-dependent mechanism (Smirnova et al. 2001; Taguchi et al. 2007). Sequences flanking the TMSs facilitate membrane fusion by mitofusin (Huang et al. 2017). Opa1 is a mitochondrial remodeling protein with a dual role in maintaining mitochondrial morphology and energetics by mediating inner membrane fusion and maintaining the cristae structure. This and the fusion/fission process by dynamins is described by Lee and Yoon 2018. MFN2 deficiency affects calcium homeostasis in lung adenocarcinoma cells via downregulation of UCP4 (Zhang et al. 2023).  Inhibition of MFN1 restores tamoxifen-induced apoptosis in resistant cells by disrupting aberrant mitochondrial fusion dynamics (Song et al. 2024). Mfn2 regulates calcium homeostasis and suppresses PASMCs proliferation via interaction with IP3R3 to mitigate pulmonary arterial hypertension (Wang et al. 2025).

Accession Number:Q8IWA4
Protein Name:Mitofusin-1
Length:741
Molecular Weight:84100.00
Species:Homo sapiens (Human) [9606]
Location1 / Topology2 / Orientation3: Cytoplasm1
Substrate

Cross database links:

RefSeq: NP_284941.2   
Entrez Gene ID: 55669   
Pfam: PF00350    PF04799   
OMIM: 608506  gene
KEGG: hsa:55669   

Gene Ontology

GO:0016021 C:integral to membrane
GO:0005741 C:mitochondrial outer membrane
GO:0005525 F:GTP binding
GO:0003924 F:GTPase activity

References (10)

[1] “Control of mitochondrial morphology by a human mitofusin.”  Santel A.et.al.   11181170
[2] “Complete sequencing and characterization of 21,243 full-length human cDNAs.”  Ota T.et.al.   14702039
[3] “The DNA sequence, annotation and analysis of human chromosome 3.”  Muzny D.M.et.al.   16641997
[4] “The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC).”  The MGC Project Teamet.al.   15489334
[5] “Developmentally regulated mitochondrial fusion mediated by a conserved, novel, predicted GTPase.”  Hales K.G.et.al.   9230308
[6] “Novel transmembrane GTPase of non-small cell lung cancer identified by mRNA differential display.”  Chung J.-G.et.al.   11751411
[7] “Membrane topology and mitochondrial targeting of mitofusins, ubiquitous mammalian homologs of the transmembrane GTPase Fzo.”  Rojo M.et.al.   11950885
[8] “Mitochondrial fusion in human cells is efficient, requires the inner membrane potential, and is mediated by mitofusins.”  Legros F.et.al.   12475957
[9] “Mitofusin-1 protein is a generally expressed mediator of mitochondrial fusion in mammalian cells.”  Santel A.et.al.   12759376
[10] “The consensus coding sequences of human breast and colorectal cancers.”  Sjoeblom T.et.al.   16959974
Structure:
5GNR   5GNS   5GNT   5GNU   5GO4   5GOE   5GOF   5GOM   5YEW      [...more]

External Searches:

Analyze:

Predict TMSs (Predict number of transmembrane segments)
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FASTA formatted sequence
1:	MAEPVSPLKH FVLAKKAITA IFDQLLEFVT EGSHFVEATY KNPELDRIAT EDDLVEMQGY 
61:	KDKLSIIGEV LSRRHMKVAF FGRTSSGKSS VINAMLWDKV LPSGIGHITN CFLSVEGTDG 
121:	DKAYLMTEGS DEKKSVKTVN QLAHALHMDK DLKAGCLVRV FWPKAKCALL RDDLVLVDSP 
181:	GTDVTTELDS WIDKFCLDAD VFVLVANSES TLMNTEKHFF HKVNERLSKP NIFILNNRWD 
241:	ASASEPEYME DVRRQHMERC LHFLVEELKV VNALEAQNRI FFVSAKEVLS ARKQKAQGMP 
301:	ESGVALAEGF HARLQEFQNF EQIFEECISQ SAVKTKFEQH TIRAKQILAT VKNIMDSVNL 
361:	AAEDKRHYSV EEREDQIDRL DFIRNQMNLL TLDVKKKIKE VTEEVANKVS CAMTDEICRL 
421:	SVLVDEFCSE FHPNPDVLKI YKSELNKHIE DGMGRNLADR CTDEVNALVL QTQQEIIENL 
481:	KPLLPAGIQD KLHTLIPCKK FDLSYNLNYH KLCSDFQEDI VFPFSLGWSS LVHRFLGPRN 
541:	AQRVLLGLSE PIFQLPRSLA STPTAPTTPA TPDNASQEEL MITLVTGLAS VTSRTSMGII 
601:	IVGGVIWKTI GWKLLSVSLT MYGALYLYER LSWTTHAKER AFKQQFVNYA TEKLRMIVSS 
661:	TSANCSHQVK QQIATTFARL CQQVDITQKQ LEEEIARLPK EIDQLEKIQN NSKLLRNKAV 
721:	QLENELENFT KQFLPSSNEE S