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甲烷菌假肽聚糖细胞壁肽连接酶的结构特征与细菌 MurE/F 肽聚糖肽连接酶同源。

Structural characterisation of methanogen pseudomurein cell wall peptide ligases homologous to bacterial MurE/F murein peptide ligases.

机构信息

AgResearch Ltd, Grasslands, Tennent Drive, Palmerston North, 4442, New Zealand.

School of Natural Sciences, Massey University, Palmerston North 4442, New Zealand.

出版信息

Microbiology (Reading). 2022 Sep;168(9). doi: 10.1099/mic.0.001235.

Abstract

Archaea have diverse cell wall types, yet none are identical to bacterial peptidoglycan (murein). Methanogens and possess cell walls of pseudomurein, a structural analogue of murein. Pseudomurein differs from murein in containing the unique archaeal sugar -acetyltalosaminuronic acid instead of -acetylmuramic acid, β-1,3 glycosidic bonds in place of β-1,4 bonds and only l-amino acids in the peptide cross-links. We have determined crystal structures of methanogen pseudomurein peptide ligases (termed pMurE) from (Mfer762) and (Mth734) that are structurally most closely related to bacterial MurE peptide ligases. The homology of the archaeal pMurE and bacterial MurE enzymes is clear both in the overall structure and at the level of each of the three domains. In addition, we identified two UDP-binding sites in Mfer762 pMurE, one at the exterior surface of the interface of the N-terminal and middle domains, and a second site at an inner surface continuous with the highly conserved interface of the three domains. Residues involved in ATP binding in MurE are conserved in pMurE, suggesting that a similar ATP-binding pocket is present at the interface of the middle and the C-terminal domains of pMurE. The presence of pMurE ligases in members of the Methanobacteriales and Methanopyrales, that are structurally related to bacterial MurE ligases, supports the idea that the biosynthetic origins of archaeal pseudomurein and bacterial peptidoglycan cell walls are evolutionarily related.

摘要

古菌具有多种细胞壁类型,但没有一种与细菌肽聚糖(黏肽)相同。产甲烷菌和 possess 具有假黏肽细胞壁,这是黏肽的结构类似物。假黏肽与黏肽的区别在于含有独特的古菌糖 -乙酰塔罗糖胺酸而不是 -乙酰胞壁酸,β-1,3 糖苷键代替β-1,4 键,并且肽交联中仅含有 l-氨基酸。我们已经确定了来自 (Mfer762)和 (Mth734)的产甲烷菌假黏肽肽连接酶(称为 pMurE)的晶体结构,这些结构与细菌 MurE 肽连接酶在结构上最为密切相关。古菌 pMurE 和细菌 MurE 酶在整体结构和三个结构域的每个结构域水平上的同源性都很明显。此外,我们在 Mfer762 pMurE 中鉴定了两个 UDP 结合位点,一个位于 N 端和中间结构域界面的外表面,另一个位于与三个结构域高度保守界面连续的内表面。MurE 中参与 ATP 结合的残基在 pMurE 中保守,这表明在 pMurE 的中间和 C 端结构域界面存在类似的 ATP 结合口袋。在与细菌 MurE 连接酶结构相关的 Methanobacteriales 和 Methanopyrales 成员中存在 pMurE 连接酶,支持了古菌假黏肽和细菌肽聚糖细胞壁的生物合成起源在进化上是相关的观点。

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