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敲响(更小的)警钟:三磷酸神奇点核苷酸 pGpp。

Sound the (Smaller) Alarm: The Triphosphate Magic Spot Nucleotide pGpp.

机构信息

Old Dominion University, Department of Chemistry and Biochemistry, Norfolk, Virginia, USA.

出版信息

Infect Immun. 2023 Apr 18;91(4):e0043222. doi: 10.1128/iai.00432-22. Epub 2023 Mar 15.

Abstract

It has recently become evident that the bacterial stringent response is regulated by a triphosphate alarmone (pGpp) as well as the canonical tetra- and pentaphosphate alarmones ppGpp and pppGpp [together, (p)ppGpp]. Often dismissed in the past as an artifact or degradation product, pGpp has been confirmed as a deliberate endpoint of multiple synthetic pathways utilizing GMP, (p)ppGpp, or GDP/GTP as precursors. Some early studies concluded that pGpp functionally mimics (p)ppGpp and that its biological role is to make alarmone metabolism less dependent on the guanine energy charge of the cell by allowing GMP-dependent synthesis to continue when GDP/GTP has been depleted. However, recent reports that pGpp binds unique potential protein receptors and is the only alarmone synthesized by the intestinal pathogen Clostridioides difficile indicate that pGpp is more than a stand-in for the longer alarmones and plays a distinct biological role beyond its functional overlap (p)ppGpp.

摘要

最近的研究表明,细菌的严谨反应受到三磷酸警报素(pGpp)以及经典的四磷酸和五磷酸警报素 ppGpp 和 pppGpp[统称为(p)ppGpp]的调节。pGpp 过去常被认为是一种人工制品或降解产物而被忽视,但现已被证实是利用 GMP、(p)ppGpp 或 GDP/GTP 作为前体的多种合成途径的有意终点。一些早期的研究得出结论,pGpp 在功能上模拟了(p)ppGpp,并且其生物学作用是通过允许 GMP 依赖性合成在 GDP/GTP 耗尽时继续进行,从而使警报素代谢对细胞的鸟嘌呤能量电荷的依赖性降低。然而,最近的研究报告表明,pGpp 结合独特的潜在蛋白受体,并且是肠道病原体艰难梭菌唯一合成的警报素,这表明 pGpp 不仅仅是更长的警报素的替代品,并且在其功能重叠(p)ppGpp 之外发挥着独特的生物学作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/69bd/10112252/fbccd3d8aa64/iai.00432-22-f001.jpg

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