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Mrp7(bL27)的线粒体特异性结构域支持发酵过程中的线粒体翻译,并且是有效适应呼吸作用所必需的。

The mitospecific domain of Mrp7 (bL27) supports mitochondrial translation during fermentation and is required for effective adaptation to respiration.

机构信息

Department of Biological Sciences, Marquette University, Milwaukee, WI 53233.

出版信息

Mol Biol Cell. 2022 Jan 1;33(1):ar7. doi: 10.1091/mbc.E21-07-0370. Epub 2021 Nov 3.

Abstract

We demonstrate here that mitoribosomal protein synthesis, responsible for the synthesis of oxidative phosphorylation (OXPHOS) subunits encoded by the mitochondrial genome, occurs at high levels during glycolysis fermentation and in a manner uncoupled from OXPHOS complex assembly regulation. Furthermore, we provide evidence that the mitospecific domain of Mrp7 (bL27), a mitoribosomal component, is required to maintain mitochondrial protein synthesis during fermentation but is not required under respiration growth conditions. Maintaining mitotranslation under high-glucose-fermentation conditions also involves Mam33 (p32/gC1qR homologue), a binding partner of Mrp7's mitospecific domain, and together they confer a competitive advantage for a cell's ability to adapt to respiration-based metabolism when glucose becomes limiting. Furthermore, our findings support that the mitoribosome, and specifically the central protuberance region, may be differentially regulated and/or assembled, under the different metabolic conditions of fermentation and respiration. On the basis of our findings, we propose that the purpose of mitotranslation is not limited to the assembly of OXPHOS complexes, but also plays a role in mitochondrial signaling critical for switching cellular metabolism from a glycolysis- to a respiration-based state.

摘要

我们在这里证明,负责合成线粒体基因组编码的氧化磷酸化(OXPHOS)亚基的线粒体核糖体蛋白合成在糖酵解发酵过程中以高水平发生,并且与 OXPHOS 复合物组装调节解耦。此外,我们提供的证据表明,Mrp7(bL27)的线粒体特异性结构域(mitospecific domain)是维持发酵过程中线粒体蛋白合成所必需的,但在呼吸生长条件下则不需要。在高葡萄糖发酵条件下维持线粒体翻译还需要 Mam33(p32/gC1qR 同源物),它是 Mrp7 的线粒体特异性结构域的结合伴侣,它们共同赋予了细胞在葡萄糖变得有限时适应基于呼吸的代谢的能力的竞争优势。此外,我们的发现支持线粒体核糖体,特别是中央突起区域,可能在糖酵解和呼吸等不同代谢条件下受到不同的调节和/或组装。基于我们的发现,我们提出线粒体翻译的目的不仅限于 OXPHOS 复合物的组装,而且还在对于将细胞代谢从糖酵解切换到基于呼吸的状态至关重要的线粒体信号转导中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7526/8886811/627cd97528e7/mbc-33-ar7-g001.jpg

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