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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Voltage-dependant anion channels: Novel insights into isoform function through genetic models
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Voltage-dependant anion channels: Novel insights into isoform function through genetic models

机译:电压依赖的阴离子通道:通过遗传模型进行异构型功能的新颖洞察

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摘要

Voltage-dependant Anion Channels, also known as mitochondrial porins, are pore-forming proteins located in the mitochondrial outer membrane (MOM) that, in addition to forming complexes with other proteins that localize to the MOM, also function as the main conduit for transporting metabolites between the cytoplasm and mitochondria. VDACs are encoded by a multi-member gene family, and the number of isoforms and specific functions of VDACs varies between species. Translating the well-described in vitro characteristics of the VDAC isoforms into in vivo functions has been a challenge, with the generation of animal models of VDAC deficiency providing much of the available information about isoform-specific roles in biology. Here, we review the approaches used to create these insect and mammalian animal models, and the conclusions reached by studying the consequences of loss of function mutations on the genetic, physiologic, and biochemical properties of the resulting models. This article is part of a Special Issue entitled: VDAC structure, function, and regulation of mitochondrial metabolism.
机译:依赖于电压的阴离子通道,也称为线粒体孔隙,是位于线粒体外膜(MOM)中的孔形成蛋白质,除了与其他蛋白质的络合物形成络合物,还用作运输的主导管细胞质和线粒体之间的代谢物。 VDAC由多成员基因家族编码,并且vdacs的同种型和特定功能的数量在物种之间变化。将VDAC同种型的良好体外特征翻译成体内功能一直是一项挑战,具有vdac缺陷的动物模型,提供了关于生物学中同种类特异性作用的大部分可用信息。在这里,我们审查了用于创造这些昆虫和哺乳动物的方法的方法,并通过研究所得模型的遗传,生理学和生化特性的功能突变丧失的后果达到的结论。本文是标题的特殊问题的一部分:VDAC结构,功能和线粒体新陈代谢的调节。

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