Institute of Plant Science and Resources, Okayama University, Okayama, Japan.
Department of Biochemistry, Faculty of Science, Okayama University of Science, Okayama, Japan.
Methods Enzymol. 2021;650:1-18. doi: 10.1016/bs.mie.2021.01.031. Epub 2021 Feb 19.
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.
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。