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嗜甲基甲基杆菌AM1中丝氨酸循环的遗传学:参与一碳同化的三个新基因orf4、mtkA和mtkB的鉴定、序列及突变分析

Genetics of the serine cycle in Methylobacterium extorquens AM1: identification, sequence, and mutation of three new genes involved in C1 assimilation, orf4, mtkA, and mtkB.

作者信息

Chistoserdova L V, Lidstrom M E

机构信息

W. M. Keck Laboratories, California Institute of Technology, Pasadena 91125.

出版信息

J Bacteriol. 1994 Dec;176(23):7398-404. doi: 10.1128/jb.176.23.7398-7404.1994.

DOI:10.1128/jb.176.23.7398-7404.1994
PMID:7961516
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC197134/
Abstract

In a recent paper we reported the sequence of the beginning of a serine cycle gene cluster on the Methylobacterium extorquens AM1 chromosome, containing the genes encoding serine glyoxylate aminotransferase (sgaA), hydroxypyruvate reductase (hprA), and 5,10-methylenetetrahydrofolate dehydrogenase (mtdA) (L. V. Chistoserdova and M. E. Lidstrom J. Bacteriol. 176:1957-1968, 1994). Here we present the sequence of the adjacent downstream region containing three full and one partial open reading frames. The first of the full open reading frames (orf4) remains unidentified, while the other two (mtkA and mtkB) code for the two subunits of malate thiokinase, and the fourth, a partial open reading frame (ppcA), apparently encodes phosphoenolpyruvate carboxylase. Mutants containing insertion mutations in orf4, mtdA, and mtdB all were unable to grow on C1 compounds, showing that these three newly identified genes are indispensable for the operation of the serine cycle. Mutants in orf4 were also unable to grow on C2 compounds, but growth was restored by glyoxylate, suggesting that orf4 might be required for the conversion of acetyl coenzyme A to glyoxylate.

摘要

在最近的一篇论文中,我们报道了甲基营养型细菌嗜甲基菌AM1染色体上丝氨酸循环基因簇起始部分的序列,该基因簇包含编码丝氨酸乙醛酸氨基转移酶(sgaA)、羟基丙酮酸还原酶(hprA)和5,10-亚甲基四氢叶酸脱氢酶(mtdA)的基因(L. V. 奇斯托瑟多娃和M. E. 利德斯特伦姆,《细菌学杂志》176:1957 - 1968, 1994年)。在此,我们展示了相邻下游区域的序列,该区域包含三个完整和一个部分开放阅读框。第一个完整的开放阅读框(orf4)仍未明确其功能,而另外两个(mtkA和mtkB)编码苹果酸硫激酶的两个亚基,第四个部分开放阅读框(ppcA)显然编码磷酸烯醇丙酮酸羧化酶。在orf4、mtdA和mtdB中含有插入突变的突变体均无法在C1化合物上生长,这表明这三个新鉴定的基因对于丝氨酸循环的运行是不可或缺的。orf4突变体也无法在C2化合物上生长,但乙醛酸可恢复其生长,这表明orf4可能是将乙酰辅酶A转化为乙醛酸所必需的。

相似文献

1
Genetics of the serine cycle in Methylobacterium extorquens AM1: identification, sequence, and mutation of three new genes involved in C1 assimilation, orf4, mtkA, and mtkB.嗜甲基甲基杆菌AM1中丝氨酸循环的遗传学:参与一碳同化的三个新基因orf4、mtkA和mtkB的鉴定、序列及突变分析
J Bacteriol. 1994 Dec;176(23):7398-404. doi: 10.1128/jb.176.23.7398-7404.1994.
2
Genetics of the serine cycle in Methylobacterium extorquens AM1: identification of sgaA and mtdA and sequences of sgaA, hprA, and mtdA.嗜甲基菌AM1中丝氨酸循环的遗传学:sgaA和mtdA的鉴定以及sgaA、hprA和mtdA的序列
J Bacteriol. 1994 Apr;176(7):1957-68. doi: 10.1128/jb.176.7.1957-1968.1994.
3
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Genetics of the serine cycle in Methylobacterium extorquens AM1: identification of sgaA and mtdA and sequences of sgaA, hprA, and mtdA.嗜甲基菌AM1中丝氨酸循环的遗传学:sgaA和mtdA的鉴定以及sgaA、hprA和mtdA的序列
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Genetics of the serine cycle in Methylobacterium extorquens AM1: cloning, sequence, mutation, and physiological effect of glyA, the gene for serine hydroxymethyltransferase.嗜甲基甲基杆菌AM1中丝氨酸循环的遗传学:丝氨酸羟甲基转移酶基因glyA的克隆、序列、突变及生理效应
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