Labella José I, Cantos Raquel, Espinosa Javier, Forcada-Nadal Alicia, Rubio Vicente, Contreras Asunción
Departamento de Fisiología, Genética y Microbiología, Universidad de AlicanteAlicante, Spain.
Instituto de Biomedicina de Valencia - Consejo Superior de Investigaciones CientíficasValencia, Spain.
Front Microbiol. 2017 Jul 11;8:1244. doi: 10.3389/fmicb.2017.01244. eCollection 2017.
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 in . 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 . In addition, the related phenotypes of and 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 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.
集胞藻7942是蓝藻中氮调节的典型模式生物。参与氮同化的基因表达受2-酮戊二酸受体和全局转录调节因子NtcA的正向调节。最大激活需要共激活因子PipX的后续结合。PII是一种存在于生命所有三个域中的蛋白质,作为氮和碳平衡信号的整合者,在低2-酮戊二酸水平下与PipX结合以抵消NtcA的活性。PII-PipX复合物也可以与转录调节因子PlmA结合,其调控子仍然未知。在这里,我们将氮调节网络扩展到由双顺反子操纵子编码的PipY。对广泛存在的COG0325蛋白家族的蓝藻成员PipY的研究,证实了其在维生素B6和氨基酸/酮酸稳态中的保守作用,并揭示了新的与磷酸吡哆醛(PLP)相关的表型,包括对靶向必需PLP-全酶的抗生素敏感或与……的合成致死性。此外,……和……突变体的相关表型与在对PLP靶向抗生素的存活和转录调节背景下的遗传相互作用一致。我们还表明,PipY过表达增加了……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,为更好地理解这些蛋白及其与其他生物过程的联系铺平了道路。