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全球蛋白质组对与汞甲基化和异化金属还原相关基因缺失的反应揭示了嗜硫地杆菌PCA呼吸代谢的变化。

Global Proteome Response to Deletion of Genes Related to Mercury Methylation and Dissimilatory Metal Reduction Reveals Changes in Respiratory Metabolism in Geobacter sulfurreducens PCA.

作者信息

Qian Chen, Johs Alexander, Chen Hongmei, Mann Benjamin F, Lu Xia, Abraham Paul E, Hettich Robert L, Gu Baohua

机构信息

Chemical Sciences Division, Oak Ridge National Laboratory , Oak Ridge, Tennessee 37831, United States.

Graduate School of Genome Science and Technology, University of Tennessee , Knoxville, Tennessee 37996, United States.

出版信息

J Proteome Res. 2016 Oct 7;15(10):3540-3549. doi: 10.1021/acs.jproteome.6b00263. Epub 2016 Sep 2.

Abstract

Geobacter sulfurreducens PCA can reduce, sorb, and methylate mercury (Hg); however, the underlying biochemical mechanisms of these processes and interdependent metabolic pathways remain unknown. In this study, shotgun proteomics was used to compare global proteome profiles between wild-type G. sulfurreducens PCA and two mutant strains: a ΔhgcAB mutant, which is deficient in two genes known to be essential for Hg methylation and a ΔomcBESTZ mutant, which is deficient in five outer membrane c-type cytochromes and thus impaired in its ability for dissimilatory metal ion reduction. We were able to delineate the global response of G. sulfurreducens PCA in both mutants and identify cellular networks and metabolic pathways that were affected by the loss of these genes. Deletion of hgcAB increased the relative abundances of proteins implicated in extracellular electron transfer, including most of the c-type cytochromes, PilA-C, and OmpB, and is consistent with a previously observed increase in Hg reduction in the ΔhgcAB mutant. Deletion of omcBESTZ was found to significantly increase relative abundances of various methyltransferases, suggesting that a loss of dissimilatory reduction capacity results in elevated activity among one-carbon (C1) metabolic pathways and thus increased methylation. We show that G. sulfurreducens PCA encodes only the folate branch of the acetyl-CoA pathway, and proteins associated with the folate branch were found at lower abundance in the ΔhgcAB mutant strain than the wild type. This observation supports the hypothesis that the function of HgcA and HgcB is linked to C1 metabolism through the folate branch of the acetyl-CoA pathway by providing methyl groups required for Hg methylation.

摘要

硫还原地杆菌PCA能够还原、吸附和甲基化汞(Hg);然而,这些过程以及相互依赖的代谢途径背后的生化机制仍然未知。在本研究中,采用鸟枪法蛋白质组学比较了野生型硫还原地杆菌PCA与两种突变菌株之间的整体蛋白质组谱:一种是ΔhgcAB突变体,其缺乏已知对汞甲基化至关重要的两个基因;另一种是ΔomcBESTZ突变体,其缺乏五种外膜c型细胞色素,因此异化金属离子还原能力受损。我们能够描绘硫还原地杆菌PCA在两种突变体中的整体反应,并识别受这些基因缺失影响的细胞网络和代谢途径。hgcAB的缺失增加了与细胞外电子传递相关蛋白质的相对丰度,包括大多数c型细胞色素、PilA - C和OmpB,这与之前在ΔhgcAB突变体中观察到的汞还原增加一致。发现omcBESTZ的缺失显著增加了各种甲基转移酶的相对丰度,这表明异化还原能力的丧失导致一碳(C1)代谢途径中的活性升高,从而增加了甲基化。我们表明硫还原地杆菌PCA仅编码乙酰辅酶A途径的叶酸分支,并且在ΔhgcAB突变体菌株中与叶酸分支相关的蛋白质丰度低于野生型。这一观察结果支持了这样的假设,即HgcA和HgcB的功能通过乙酰辅酶A途径的叶酸分支与C1代谢相关联,为汞甲基化提供所需甲基。

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