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克服研究镍钳形核苷酸辅因子相关酶的障碍。

Overcoming barriers for investigating nickel-pincer nucleotide cofactor-related enzymes.

作者信息

Nevarez Jorge L, Turmo Aiko, Gatreddi Santhosh, Gupta Swati, Hu Jian, Hausinger Robert P

机构信息

Department of Chemistry, Michigan State University, East Lansing, Michigan, USA.

Department of Microbiology, Genetics, and Immunology, Michigan State University, East Lansing, Michigan, USA.

出版信息

mBio. 2025 Feb 5;16(2):e0340424. doi: 10.1128/mbio.03404-24. Epub 2024 Dec 16.

Abstract

UNLABELLED

The nickel-pincer nucleotide (NPN) cofactor is a modified pyridinium mononucleotide that tri-coordinates nickel and is crucial for the activity of certain racemases and epimerases. LarB, LarC, and LarE are responsible for NPN synthesis, with the cofactor subsequently installed into LarA homologs. Hurdles for investigating the functional properties of such proteins arise from the difficulty of obtaining the active, NPN cofactor-loaded enzymes and in assaying their diverse reactivities. Here, we show that when the genes are cloned into the Duet expression system and cultured in , they confer lactate racemase activity to the cells. By replacing with related genes from other microorganisms, this system allows for the generation of active LarA homologs. Furthermore, the Duet system enables the functional testing of LarB, LarC, and LarE homologs from other microorganisms. In addition to applying the Duet expression system for synthesis of active, NPN cofactor-containing enzymes in , we demonstrate that circular dichroism spectroscopy provides a broadly applicable means of assaying these enzymes. By selecting a wavelength of high molar ellipticity and low absorbance for a given 2-hydroxy acid substrate enantiomer, the conversion of one enantiomer/epimer into the other can be monitored for LarA homologs without the need for any coupling enzymes or reagents. The methods discussed here further our abilities to investigate the unique activities of Lar proteins.

IMPORTANCE

Enzymes containing the nickel-pincer nucleotide (NPN) cofactor are prevalent in a wide range of microorganisms and catalyze various critical biochemical reactions, yet they remain underexplored due, in part, to limitations in current research methodologies. The two significant advancements described here, the heterologous production of active NPN-cofactor containing enzymes in and the use of a circular dichroism-based assay to monitor enzyme activities, expand our capacity to analyze these enzymes. Such additional detailed characterization will deepen our understanding of the diverse chemistry catalyzed by the NPN cofactor and potentially uncover novel roles for this organometallic species in microbial metabolism.

摘要

未标记

镍钳核苷酸(NPN)辅因子是一种修饰的吡啶鎓单核苷酸,它与镍形成三配位,对某些消旋酶和差向异构酶的活性至关重要。LarB、LarC和LarE负责NPN的合成,随后该辅因子被安装到LarA同源物中。研究此类蛋白质功能特性的障碍源于难以获得活性的、负载NPN辅因子的酶以及测定它们多样的反应活性。在这里,我们表明,当将这些基因克隆到双表达系统中并在[具体条件]中培养时,它们赋予细胞乳酸消旋酶活性。通过用来自其他微生物的相关基因替换[相关基因],该系统能够产生活性的LarA同源物。此外,双表达系统能够对来自其他微生物的LarB、LarC和LarE同源物进行功能测试。除了应用双表达系统在[具体条件]中合成活性的、含NPN辅因子的酶之外,我们还证明圆二色光谱法提供了一种广泛适用的测定这些酶的方法。通过为给定的2-羟基酸底物对映体选择高摩尔椭圆率和低吸光度的波长,可以监测LarA同源物中一种对映体/差向异构体向另一种的转化,而无需任何偶联酶或试剂。这里讨论的方法进一步提升了我们研究Lar蛋白独特活性的能力。

重要性

含有镍钳核苷酸(NPN)辅因子的酶在多种微生物中普遍存在,并催化各种关键的生化反应,但由于当前研究方法的局限性,它们仍未得到充分探索。这里描述的两个重要进展,即在[具体条件]中异源生产活性的含NPN辅因子的酶以及使用基于圆二色性的测定法监测酶活性,扩展了我们分析这些酶的能力。这种额外的详细表征将加深我们对NPN辅因子催化的多样化学反应的理解,并可能揭示这种有机金属物种在微生物代谢中的新作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18a7/11796402/a3300fe99ad6/mbio.03404-24.f001.jpg

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