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核苷酸 pGpp 在芽孢杆菌中充当第三类应急感应核苷酸,其功能与 (p) ppGpp 不同。

The nucleotide pGpp acts as a third alarmone in Bacillus, with functions distinct from those of (p) ppGpp.

机构信息

Department of Bacteriology, University of Wisconsin, Madison, WI, 53706, USA.

Department of Cell Biology and Molecular Genetics, University of Maryland, College Park, MD, USA.

出版信息

Nat Commun. 2020 Oct 23;11(1):5388. doi: 10.1038/s41467-020-19166-1.

Abstract

The alarmone nucleotides guanosine tetraphosphate and pentaphosphate, commonly referred to as (p)ppGpp, regulate bacterial responses to nutritional and other stresses. There is evidence for potential existence of a third alarmone, guanosine-5'-monophosphate-3'-diphosphate (pGpp), with less-clear functions. Here, we demonstrate the presence of pGpp in bacterial cells, and perform a comprehensive screening to identify proteins that interact respectively with pGpp, ppGpp and pppGpp in Bacillus species. Both ppGpp and pppGpp interact with proteins involved in inhibition of purine nucleotide biosynthesis and with GTPases that control ribosome assembly or activity. By contrast, pGpp interacts with purine biosynthesis proteins but not with the GTPases. In addition, we show that hydrolase NahA (also known as YvcI) efficiently produces pGpp by hydrolyzing (p)ppGpp, thus modulating alarmone composition and function. Deletion of nahA leads to reduction of pGpp levels, increased (p)ppGpp levels, slower growth recovery from nutrient downshift, and loss of competitive fitness. Our results support the existence and physiological relevance of pGpp as a third alarmone, with functions that can be distinct from those of (p)ppGpp.

摘要

警报核苷酸鸟苷四磷酸和五磷酸,通常称为(p)ppGpp,调节细菌对营养和其他压力的反应。有证据表明存在第三种警报核苷酸,鸟苷-5'-单磷酸-3'-二磷酸(pGpp),其功能不太明确。在这里,我们证明了 pGpp 存在于细菌细胞中,并进行了全面筛选,以鉴定分别与芽孢杆菌属中 pGpp、ppGpp 和 pppGpp 相互作用的蛋白质。ppGpp 和 pppGpp 都与抑制嘌呤核苷酸生物合成的蛋白质以及控制核糖体组装或活性的 GTPases相互作用。相比之下,pGpp 与嘌呤生物合成蛋白相互作用,但不与 GTPases 相互作用。此外,我们表明水解酶 NahA(也称为 YvcI)通过水解(p)ppGpp 有效地产生 pGpp,从而调节警报核苷酸的组成和功能。nahA 的缺失导致 pGpp 水平降低,(p)ppGpp 水平升高,从营养下降中恢复生长的速度减慢,以及竞争适应能力丧失。我们的结果支持 pGpp 作为第三种警报核苷酸的存在和生理相关性,其功能可能与(p)ppGpp 不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ca8/7584652/fc8f97ee03a6/41467_2020_19166_Fig1_HTML.jpg

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