CLYBL通过修复甲基辅酶a来避免维生素B12的消耗

IF 12.9 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Corey M. Griffith, Jean-François Conrotte, Parisa Paydar, Xinqiang Xie, Ursula Heins-Marroquin, Floriane Gavotto, Christian Jäger, Kenneth W. Ellens, Carole L. Linster
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引用次数: 0

摘要

柠檬酸裂解酶β样蛋白(CLYBL)是一种普遍表达的哺乳动物酶,以其在衣康酸(活化巨噬细胞产生的一种杀菌免疫代谢物)降解中的作用而闻名。CLYBL功能丧失与循环维生素B12水平降低的关联被认为是由于衣康酰辅酶a抑制B12依赖性酶甲基丙二酰辅酶a变化酶。衣康酸的高度诱导和局部限制生产与CLYBL在组织中的广泛表达谱之间的差异表明,该酶的作用超出了衣康酸的分解代谢。在这里,我们发现CLYBL还可以作为丙二酰辅酶a的代谢物修复酶,丙二酰辅酶a是混杂柠檬酸循环酶的副产物。我们发现,在CLYBL敲除细胞中,积累了丙二酰辅酶a而不是衣康酰辅酶a的细胞显示出腺苷钴胺素水平的降低,并且丙二酰辅酶a比衣康酰辅酶a是一种更有效的甲基丙二酰辅酶a变化酶抑制剂。因此,我们的研究表明,甲基辅酶a在患有CLYBL功能丧失的个体中观察到的B12缺乏症中起作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

CLYBL averts vitamin B12 depletion by repairing malyl-CoA

CLYBL averts vitamin B12 depletion by repairing malyl-CoA

Citrate lyase beta-like protein (CLYBL) is a ubiquitously expressed mammalian enzyme known for its role in the degradation of itaconate, a bactericidal immunometabolite produced in activated macrophages. The association of CLYBL loss of function with reduced circulating vitamin B12 levels was proposed to result from inhibition of the B12-dependent enzyme methylmalonyl-CoA mutase by itaconyl-CoA. The discrepancy between the highly inducible and locally confined production of itaconate and the broad expression profile of CLYBL across tissues suggested a role for this enzyme beyond itaconate catabolism. Here we discover that CLYBL additionally functions as a metabolite repair enzyme for malyl-CoA, a side product of promiscuous citric acid cycle enzymes. We found that CLYBL knockout cells, accumulating malyl-CoA but not itaconyl-CoA, show decreased levels of adenosylcobalamin and that malyl-CoA is a more potent inhibitor of methylmalonyl-CoA mutase than itaconyl-CoA. Our work thus suggests that malyl-CoA plays a role in the B12 deficiency observed in individuals with CLYBL loss of function.

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来源期刊
Nature chemical biology
Nature chemical biology 生物-生化与分子生物学
CiteScore
23.90
自引率
1.40%
发文量
238
审稿时长
12 months
期刊介绍: Nature Chemical Biology stands as an esteemed international monthly journal, offering a prominent platform for the chemical biology community to showcase top-tier original research and commentary. Operating at the crossroads of chemistry, biology, and related disciplines, chemical biology utilizes scientific ideas and approaches to comprehend and manipulate biological systems with molecular precision. The journal embraces contributions from the growing community of chemical biologists, encompassing insights from chemists applying principles and tools to biological inquiries and biologists striving to comprehend and control molecular-level biological processes. We prioritize studies unveiling significant conceptual or practical advancements in areas where chemistry and biology intersect, emphasizing basic research, especially those reporting novel chemical or biological tools and offering profound molecular-level insights into underlying biological mechanisms. Nature Chemical Biology also welcomes manuscripts describing applied molecular studies at the chemistry-biology interface due to the broad utility of chemical biology approaches in manipulating or engineering biological systems. Irrespective of scientific focus, we actively seek submissions that creatively blend chemistry and biology, particularly those providing substantial conceptual or methodological breakthroughs with the potential to open innovative research avenues. The journal maintains a robust and impartial review process, emphasizing thorough chemical and biological characterization.
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