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一种诱变筛选方法鉴定了一个Ⅰ型甲烷营养菌“伯氏甲烷杆菌”5GB1C 中用于镧系金属转换的 TonB 依赖受体。

A Mutagenic Screen Identifies a TonB-Dependent Receptor Required for the Lanthanide Metal Switch in the Type I Methanotroph "Methylotuvimicrobium buryatense" 5GB1C.

机构信息

Department of Chemical Engineering, University of Washington, Seattle, Washington, USA

Department of Chemical Engineering, University of Washington, Seattle, Washington, USA.

出版信息

J Bacteriol. 2019 Jul 10;201(15). doi: 10.1128/JB.00120-19. Print 2019 Aug 1.

Abstract

Several of the metabolic enzymes in methanotrophic bacteria rely on metals for both their expression and their catalysis. The MxaFI methanol dehydrogenase enzyme complex uses calcium as a cofactor to oxidize methanol, while the alternative methanol dehydrogenase XoxF uses lanthanide metals such as lanthanum and cerium for the same function. Lanthanide metals, abundant in the earth's crust, strongly repress the transcription of yet activate the transcription of This regulatory program, called the "lanthanide switch," is central to methylotrophic metabolism, but only some of its components are known. To uncover additional components of the lanthanide switch, we developed a chemical mutagenesis system in the type I gammaproteobacterial methanotroph "" 5GB1C and designed a selection system for mutants unable to repress the promoter in the presence of lanthanum. Whole-genome resequencing for multiple lanthanide switch mutants identified several unique point mutations in a single gene encoding a TonB-dependent receptor, which we have named LanA. The LanA TonB-dependent receptor is absolutely required for the lanthanide switch and controls the expression of a small set of genes. While mutation of the gene does not affect the amount of cell-associated lanthanum, it is essential for growth in the absence of the MxaF methanol dehydrogenase, suggesting that LanA is involved in lanthanum uptake to supply the XoxF methanol dehydrogenase with its critical metal ion cofactor. The discovery of this novel component of the lanthanide regulatory system highlights the complexity of this circuit and suggests that further components are likely involved. Lanthanide metals, or rare earth elements, are abundant in nature and used heavily in technological devices. Biological interactions with lanthanides are just beginning to be unraveled. Until very recently, microbial mechanisms of lanthanide metal interaction and uptake were unknown. The TonB-dependent receptor LanA is the first lanthanum receptor identified in a methanotroph. Sequence homology searches with known metal transporters and regulators could not be used to identify LanA or other lanthanide metal switch components, and this method for mutagenesis and selection was required to identify the receptor. This work advances the knowledge of microbe-metal interactions in environmental niches that impact atmospheric methane levels and are thus relevant to climate change.

摘要

几种甲烷营养菌的代谢酶既依赖于金属来表达,也依赖于金属来催化。MxaFI 甲醇脱氢酶复合物利用钙作为辅助因子氧化甲醇,而替代甲醇脱氢酶 XoxF 则使用镧系金属(如镧和铈)来实现相同的功能。镧系金属在地壳中含量丰富,强烈抑制 的转录,同时激活 的转录。这种调节程序称为“镧系开关”,是甲基营养代谢的核心,但人们只知道其中的一些成分。为了揭示“镧系开关”的其他成分,我们在 I 型γ变形菌甲烷营养菌 5GB1C 中开发了一种化学诱变系统,并设计了一种选择系统,用于筛选在镧存在下无法抑制 启动子的突变体。对多个“镧系开关”突变体的全基因组重测序鉴定出一个编码 TonB 依赖性受体的单一基因中的几个独特点突变,我们将其命名为 LanA。LanA TonB 依赖性受体是“镧系开关”所必需的,它控制着一小部分基因的表达。虽然 基因的突变不影响细胞结合的镧的数量,但它对于缺乏 MxaF 甲醇脱氢酶的生长是必不可少的,这表明 LanA 参与了镧的摄取,为 XoxF 甲醇脱氢酶提供其关键的金属离子辅助因子。该发现突显了该镧调节系统的复杂性,并表明可能涉及更多的成分。镧系金属(或稀土元素)在自然界中含量丰富,在技术设备中大量使用。与镧系元素的生物相互作用才刚刚开始被揭示。直到最近,微生物与镧系金属相互作用和摄取的机制还不得而知。TonB 依赖性受体 LanA 是在甲烷营养菌中鉴定出的第一个镧受体。利用已知的金属转运蛋白和调节剂进行序列同源搜索,无法识别 LanA 或其他镧系金属开关成分,因此需要这种诱变和选择方法来鉴定受体。这项工作提高了微生物-金属相互作用在影响大气甲烷水平的环境中的认识,因此与气候变化有关。

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