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首页> 外文期刊>Frontiers in Microbiology >PipY, a Member of the Conserved COG0325 Family of PLP-Binding Proteins, Expands the Cyanobacterial Nitrogen Regulatory Network
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PipY, a Member of the Conserved COG0325 Family of PLP-Binding Proteins, Expands the Cyanobacterial Nitrogen Regulatory Network

机译:PipY是PLP结合蛋白保守COG0325家族的成员,扩大了蓝细菌氮调节网络

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Synechococcus elongatus PCC 7942 is a paradigmatic model organism for nitrogen regulation in cyanobacteria. Expression of genes involved in nitrogen assimilation is positively regulated by the 2-oxoglutarate receptor and global transcriptional regulator NtcA. Maximal activation requires the subsequent binding of the co-activator PipX. PII, a protein found in all three domains of life as an integrator of signals of the nitrogen and carbon balance, binds to PipX to counteract NtcA activity at low 2-oxoglutarate levels. PII-PipX complexes can also bind to the transcriptional regulator PlmA, whose regulon remains unknown. Here we expand the nitrogen regulatory network to PipY, encoded by the bicistronic operon pipXY in S. elongatus . Work with PipY, the cyanobacterial member of the widespread family of COG0325 proteins, confirms the conserved roles in vitamin B6 and amino/keto acid homeostasis and reveals new PLP-related phenotypes, including sensitivity to antibiotics targeting essential PLP-holoenzymes or synthetic lethality with cysK . In addition, the related phenotypes of pipY and pipX mutants are consistent with genetic interactions in the contexts of survival to PLP-targeting antibiotics and transcriptional regulation. We also showed that PipY overexpression increased the length of S. elongatus cells. Taken together, our results support a universal regulatory role for COG0325 proteins, paving the way to a better understanding of these proteins and of their connections with other biological processes.
机译:细长突触球菌PCC 7942是蓝藻中氮调节的典范模型生物。参与氮同化的基因的表达受到2-氧戊二酸受体和全局转录调节子NtcA的正调控。最大程度的激活需要随后的共激活因子PipX的结合。 PII是生活中所有三个域中的一种蛋白质,是氮和碳平衡信号的整合体,可与PipX结合,以低2-氧戊二酸水平抵消NtcA活性。 PII-PipX复合物也可以与转录调节子PlmA结合,后者的调节子仍然未知。在这里,我们将氮调控网络扩展到由S. elongatus中的双顺反子操纵子pipXY编码的PipY。与广泛的COG0325蛋白家族的蓝细菌成员PipY一起使用,证实了维生素B6和氨基/酮酸稳态中的保守作用,并揭示了新的PLP相关表型,包括对靶向必需PLP全息酶的抗生素的敏感性或cysK对合成杀伤力的敏感性。 。此外,pipY和pipX突变体的相关表型与针对PLP的抗生素生存和转录调控的遗传相互作用是一致的。我们还显示,PipY过表达增加了细长链球菌细胞的长度。综上所述,我们的结果支持了COG0325蛋白的普遍调节作用,从而为更好地理解这些蛋白及其与其他生物学过程的联系铺平了道路。

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