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Differential Regulation of the Three Methanol Methyltransferase Isozymes in Methanosarcina acetivorans C2A

机译:乙酸甲烷单孢菌C2A中的三种甲醇甲基转移酶同工酶的差异调节。

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摘要

Genetic analysis of the three methanol-specific methyltransferase 1 operons (mtaCB1, mtaCB2, and mtaCB3) in Methanosarcina acetivorans led to the suggestion that each of them has a discrete function during growth on methanol, which might be reflected in differential gene regulation (Pritchett and Metcalf, Mol. Microbiol. >56:1183-1194, 2005). To test this suggestion, reporter gene fusions were constructed for each of the three operons, and their expression was examined under various growth conditions. Expression of the mtaCB1 and mtaCB2 fusions was 100-fold and 575-fold higher, respectively, in methanol-grown cells than in trimethylamine (TMA)-grown cells. The mtaCB3 fusion was expressed at low levels on methanol, TMA, and dimethylamine but was significantly upregulated on monomethylamine and acetate. When TMA- or acetate-grown cultures were shifted to methanol, the mtaCB1 fusion was expressed most highly during exponential phase, whereas the mtaCB2 fusion, although strongly induced prior to mtaCB1 expression, did not reach full expression levels until stationary phase. The mtaCB3 fusion was transiently expressed prior to entry into exponential phase during a TMA-to-methanol substrate shift experiment. When acetate-grown cells were shifted to medium containing both TMA and methanol, TMA utilization commenced prior to utilization of methanol; however, these two substrates were consumed simultaneously later in growth. Under these conditions expression of the mtaCB2 and mtaCB3 fusions was delayed, suggesting that methylamines may repress their expression.
机译:对乙酰甲醇甲烷单孢菌中的三个甲醇特异性甲基转移酶1操纵子(mtaCB1,mtaCB2和mtaCB3)的遗传分析表明,它们在甲醇生长过程中具有离散功能,这可能反映在差异基因调控中(Pritchett和,Metcalf,分子微生物学,> 56: 1183-1194,2005)。为了验证这一建议,为三个操纵子中的每一个构建了报告基因融合体,并在各种生长条件下检查了它们的表达。在甲醇生长的细胞中,mtaCB1和mtaCB2融合体的表达分别比在三甲胺(TMA)生长的细胞中高100倍和575倍。 mtaCB3融合蛋白在甲醇,TMA和二甲胺上的表达较低,但在单甲胺和乙酸盐上则明显上调。当将TMA或醋酸盐生长的培养物转移到甲醇时,mtaCB1融合蛋白在指数期表达最高,而mtaCB2融合蛋白虽然在mtaCB1表达之前强烈诱导,但直到稳定期才达到完整表达水平。在进入TMA到甲醇底物转化实验的指数期之前,mtaCB3融合蛋白被瞬时表达。当醋酸生长的细胞转移到同时含有TMA和甲醇的培养基时,TMA的利用开始于甲醇的利用。然而,这两种底物在生长后期被同时消耗。在这些条件下,mtaCB2和mtaCB3融合蛋白的表达被延迟,表明甲胺可能会抑制其表达。

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