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The putative monocarboxylate permeases of the yeast Saccharomyces cerevisiae do not transport monocarboxylic acids across the plasma membrane

机译:酵母酿酒酵母的推定的单羧酸通透酶不能跨质膜转运单羧酸

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摘要

We have characterized the monocarboxylate permease family of Saccharomyces cerevisiae comprising five proteins. We could not find any evidence that the monocarboxylate transporter-homologous (Mch) proteins of S. cerevisiae are involved in the uptake or secretion of monocarboxylates such as lactate, pyruvate or acetate across the plasma membrane. Ayeast mutant strain deleted for all five MCH genes exhibited no growth defects on monocarboxylic acids as the sole carbon and energy sources. Moreover, the uptake and secretion rates of monocarboxylic acids were indistinguishable from the wildtype strain. Additional deletion of the JEN1 lactate transporter gene completely blocked uptake of lactate and pyruvate. However, uptake of acetate was not even affected after the additional deletion of the gene YHL008c, which had been proposed to code for an acetate transporter. The mch1–5 mutant strain showed strongly reduced biomass yields in aerobic glucose-limited chemostat cultures, pointing to the involvement of Mch transporters in mitochondrial metabolism. Indeed, intracellular localization studies indicated that at least some of the Mch proteins reside in intracellular membranes. However, pyruvate uptake into isolated mitochondria was not affected in the mch1–5 mutant strain. It is concluded that the yeast monocarboxylate transporter-homologous proteins perform other functions than do their mammalian counterparts.
机译:我们已经表征了包括五个蛋白质的酿酒酵母的单羧酸通透酶家族。我们找不到任何证据证明酿酒酵母的单羧酸盐转运蛋白(Mch)蛋白参与跨质膜的单羧酸盐(如乳酸,丙酮酸或乙酸盐)的摄取或分泌。缺失的所有五个MCH基因的Ayeast突变菌株在单羧酸作为唯一碳源和能源方面均未表现出生长缺陷。此外,单羧酸的吸收和分泌速率与野生型菌株没有区别。 JEN1乳酸转运蛋白基因的其他删除完全阻止了乳酸和丙酮酸的吸收。然而,在另外缺失基因YHL008c之后,乙酸盐的吸收甚至没有受到影响,该基因已被提出编码乙酸盐转运蛋白。 mch1-5突变株显示出在有氧葡萄糖限制的恒化器培养物中生物量产量大大降低,表明Mch转运蛋白参与线粒体代谢。实际上,细胞内定位研究表明至少一些Mch蛋白存在于细胞内膜中。但是,在mch1-5突变株中,丙酮酸盐对分离的线粒体的吸收不受影响。结论是,酵母单羧酸盐转运蛋白同源蛋白比哺乳动物对应蛋白具有其他功能。

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