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首页> 外文期刊>The Journal of Biochemistry >Identification and reverse genetic analysis of mitochondrial processing peptidase and the core protein of the cytochrome bc1 complex of Caenorhabditis elegans, a model parasitic nematode.
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Identification and reverse genetic analysis of mitochondrial processing peptidase and the core protein of the cytochrome bc1 complex of Caenorhabditis elegans, a model parasitic nematode.

机译:寄生线虫淀粉杆菌细胞色素BC1复合物的线粒体加工肽酶和核心蛋白的鉴定及反向遗传分析。

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Mitochondria could be a good target for anti-parasitic drugs. The alpha and beta subunits of mitochondrial processing peptidase (MPP) and the core subunits of the cytochrome bc1 complex, UCR-1 and UCR-2, are homologous to one another and are important for mitochondrial functions. However, our knowledge of these proteins in nematodes is very limited. Caenorhabditis elegans, a free-living nematode, has six genes coding for proteins homologous to these subunits. On primary structure comparison, and immunochemical and enzymological analyses, the gene products were assigned as follows: Y71G12B.24, alpha-MPP; ZC410.2, beta-MPP; F56D2.1, UCR-1; VW06B3R.1, T10B10.2; and T24C4.1, UCR-2. The primary structures of beta-MPP and UCR-1 from Brugia malayi, a parasitic nematode causing human filariasis, were deduced from their cDNA structures. Phylogenetic analysis showed that the UCR-1s from both C. elegans and B. malayi were less related to mammalian UCR-1s than to MPPs from various organisms. MPP and the bc1 complex are essential for the life cycle of C. elegans, because their reverse genetic inhibition is lethal. This suggests the possibility that these proteins are also essential for the viability of B. malayi and other parasitic nematodes, and are potential targets for anti-parasitic agents.
机译:线粒体可能是抗寄生虫药的良好目标。线粒体加工肽酶(MPP)的α和β亚基和细胞色素BC1复合物的核心亚基,UCR-1和UCR-2彼此同源,对线粒体功能很重要。然而,我们对线虫中这些蛋白质的了解非常有限。皮切杆菌,一个自由活的线虫,有六个基因编码对这些亚基同源的蛋白质。在初级结构比较和免疫化学和酶学分析中,基因产物分配如下:Y71G12B.24,α-MPP; ZC410.2,Beta-MPP; F56D2.1,UCR-1; VW06B3R.1,T10B10.2;和T24C4.1,UCR-2。从其cDNA结构中推导出来自Brugia Malayi的β-MPP和UCR-1的主要结构,从而引起人丝体的寄生线虫。系统发育分析表明,来自秀丽隐杆线虫和B.Malayi的UCR-1S与来自各种生物的MPPS较小。 MPP和BC1复合物对于C.秀丽隐杆线虫的生命周期至关重要,因为它们的逆向遗传抑制是致命的。这表明这些蛋白质对于B.Malayi和其他寄生线虫的活力也是必不可少的,并且是抗寄生剂的潜在靶标。

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