Mfn1 Antibody Blocking Peptide(bs-0557P)-500ug

Mfn1 Antibody Blocking Peptide

(bs-0557P)-500ug
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  • bs-0557P
  • 2025年10月16日
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      500ug

    产品编号bs-0557P
    英文名称Mfn1 Antibody Blocking Peptide
    中文名称线粒体融合蛋白1封闭多肽
    英文别名Mitofusin 1; Fzo homolog; MFN 1; Mitochondrial transmembrane GTPase Fzo 1; Mitochondrial transmembrane GTPase FZO 2; Mitochondrial transmembrane GTPase FZO1B; Mitofusin 1; Mitofusin1; Putative transmembrane GTPase; Transmembrane GTPase MFN1; MFN1_HUMAN; Mitofusin-1.
    性状Lyophilized
    纯化方法HPLC
    研究领域

    Metabolism > Pathways and Processes > Mitochondrial Metabolism > Mitochondrial markers

    Metabolism > Pathways and Processes > Mitochondrial Metabolism > Mitophagy fission and fusion

    Neuroscience > Neurology process > Neurodegenerative disease > Parkinson's disease

    Signal Transduction > Second Messenger > Nucleotide Messenger > GTP

    Tags & Cell Markers > Subcellular Markers > Organelles > Mitochondria

    亚基Forms homomultimers and heteromultimers with MFN2. Multimerization, which is mediated by the second coiled coil region, may play an essential role in mitochondrion fusion. Participates in a high molecular weight multiprotein complex. Interacts with VAT1.
    亚细胞定位Cytoplasm and Mitochondrion outer membrane.
    组织特异性Ubiquitous. Expressed at slightly higher level in kidney and heart. Isoform 2 may be overexpressed in some tumors, such as lung cancers.
    翻译后修饰Ubiquitinated by MARCH5.
    相似性Belongs to the mitofusin family.
    功能Essential transmembrane GTPase, which mediates mitochondrial fusion. Fusion of mitochondria occurs in many cell types and constitutes an important step in mitochondria morphology, which is balanced between fusion and fission. MFN1 acts independently of the cytoskeleton. Overexpression induces the formation of mitochondrial networks.
    保存条件Shipped at 4℃. Stored at -20℃ for one year. Avoid repeated freeze/thaw cycles.
    背景资料Mitofusin 1 (Mfn1) and mitofusin 2 (Mfn2) are homologs for the Drosophila protein fuzzy onion (Fzo). They are mitochondrial membrane proteins and are mediators of mitochondrial fusion. A GTPase domain is required for Mfn protein function but the molecular mechanisms of the GTPase-dependent reaction as well as the functional division of the two Mfn proteins are unknown. They are essential for embryonic development and may play a role in the pathobiology of obesity. Although the Mfn1 and Mfn2 genes are broadly expressed, they show different levels of expression in different tissues. Two Mfn1 transcripts are elevated in heart, while Mfn2 mRNA is abundantly expressed in heart and muscle tissue but present only at low levels in many other tissues. Mfn1 localizes to mitochondria and participates in at least two different high molecular weight protein complexes in a GTP-dependent manner. Purified recombinant Mfn1 exhibited approximately eightfold higher GTPase activity than Mfn2.

     

     

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