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Nucleo-mitochondrial interactions in yeast mitochondrial biogenesis

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EJB Reviews 1989

Part of the book series: EJB Reviews ((EJB REVIEWS,volume 1989))

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Abstract

For what once were probably free-living aerobic bacteria, mitochondria show a surprising degree of domestication in terms of their dependence on the genetic system of the cells in which they reside. In most organisms, only a handful of the hundred or so mitochondrial proteins are encoded by mitochondrial DNA (mtDNA). The remainder, including most of the components of the mitochondrion’s own genetic system, are encoded by nuclear genes, which also specify all other enzymes necessary for the synthesis, import, processing and modification of these proteins and associated lipid components. The assembly of a functional mitochondrion is possibly one of the most complex logistic exercises faced by the eukaryotic cell. In a facultative anaerobic organism like the yeast Saccharomyces cerevisiae, which is capable of tailoring the level of mitochondrial biosynthesis to its specific needs in response to its environment, several hundred nuclear genes are likely to be involved in one way or another with mitochondrial biogenesis.

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Grivell, L.A. (1989). Nucleo-mitochondrial interactions in yeast mitochondrial biogenesis. In: EJB Reviews 1989. EJB Reviews, vol 1989. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-75189-9_4

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