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镧系元素依赖型甲基营养的发现和镧系元素依赖型甲基营养菌的筛选方法。

Discovery of lanthanide-dependent methylotrophy and screening methods for lanthanide-dependent methylotrophs.

机构信息

Institute of Plant Science and Resources, Okayama University, Okayama, Japan.

Department of Biochemistry, Faculty of Science, Okayama University of Science, Okayama, Japan.

出版信息

Methods Enzymol. 2021;650:1-18. doi: 10.1016/bs.mie.2021.01.031. Epub 2021 Feb 19.

Abstract

The lanthanide elements (Lns) affect the physiology and growth of certain microorganisms known as "Ln-responsive microorganisms." Among them, in 2011, it was first reported that strains of Methylobacterium exhibited high methanol dehydrogenase (MDH) activity when grown in the presence of Lns; the purified Ln-inducible MDH was identified as XoxF-type MDH, whose catalytic function had previously been unknown. XoxF was the first enzyme to be identified as Ln-dependent, and its function in methylotrophy is more fundamental and important than that of the corresponding Ca-dependent MDH MxaFI. XoxF is encoded in the genomes of methylotrophic as well as non-methylotrophic bacteria. Thus, Lns are among the most fascinating and important growth factors for bacteria that potentially utilize methanol. Bacteria that require Lns for methanol growth are called "Ln-dependent methylotrophs." Recent findings indicate that these microorganisms comprise an "Ln-dependent ecosystem" that we have not been able to reconstruct under laboratory conditions without Lns. In this chapter, we summarize methods for (1) screening of Ln-responsive microorganisms, (2) purification of native XoxFs from Ln-dependent methylotrophs, and (3) screening of Ln-dependent methylotrophs from natural environments, while providing a history of the discovery of the Ln-dependent methylotrophs.

摘要

镧系元素 (Lns) 会影响某些被称为“Ln 响应微生物”的微生物的生理和生长。其中,2011 年首次报道了在存在 Lns 的情况下,甲基杆菌属的菌株表现出高甲醇脱氢酶 (MDH) 活性;纯化的 Ln 诱导型 MDH 被鉴定为 XoxF 型 MDH,其催化功能以前是未知的。XoxF 是第一个被鉴定为 Ln 依赖性的酶,其在甲醇营养型中的功能比相应的 Ca 依赖性 MDH MxaFI 更为基础和重要。XoxF 编码在甲基营养型和非甲基营养型细菌的基因组中。因此,Lns 是最迷人、最重要的细菌生长因子之一,这些细菌可能利用甲醇。需要 Lns 才能生长甲醇的细菌被称为“Ln 依赖性甲醇营养菌”。最近的研究结果表明,这些微生物构成了一个“Ln 依赖性生态系统”,如果没有 Lns,我们无法在实验室条件下重建该系统。在本章中,我们总结了筛选 Ln 响应微生物的方法、从 Ln 依赖性甲醇营养菌中纯化天然 XoxF 的方法以及从自然环境中筛选 Ln 依赖性甲醇营养菌的方法,同时提供了 Ln 依赖性甲醇营养菌的发现历史。

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