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异形胞特异性小 RNA NsiR1 调控鱼腥藻分化的启动

The Heterocyst-Specific Small RNA NsiR1 Regulates the Commitment to Differentiation in Nostoc.

机构信息

Instituto de Bioquímica Vegetal y Fotosíntesis, Consejo Superior de Investigaciones Científicas and Universidad de Sevilla, Seville, Spain.

出版信息

Microbiol Spectr. 2022 Apr 27;10(2):e0227421. doi: 10.1128/spectrum.02274-21. Epub 2022 Mar 1.

Abstract

Heterocysts are specialized cells that filamentous cyanobacteria differentiate for the fixation of atmospheric nitrogen when other nitrogen sources are not available. Heterocyst differentiation at semiregular intervals along the filaments requires complex structural and metabolic changes that are under the control of the master transcriptional regulator HetR. NsiR1 (itrogen tress-nduced NA ) is a HetR-dependent noncoding RNA that is expressed from multiple chromosomal copies, some identical, some slightly divergent in sequence, specifically in heterocysts from very early stages of differentiation. We have previously shown that NsiR1 inhibits translation of the overlapping mRNA by an antisense mechanism. Here, we identify a like gene involved in the regulation of commitment (point of no return) to heterocyst differentiation, as a target of NsiR1. A strain overexpressing one of the identical copies of NsiR1 commits to heterocyst development earlier than the wild type. The posttranscriptional regulation exerted by NsiR1 on the expression of two genes involved in heterocyst differentiation and commitment, and , adds a new level of complexity to the network of transcriptional regulation and protein-protein interactions that participate in heterocyst differentiation. Heterocysts are nitrogen-fixing specialized cells that appear at semiregular intervals along cyanobacterial filaments upon nitrogen starvation. The differentiation and patterning of heterocysts is a model for the study of cell differentiation in multicellular prokaryotes. The regulation of differentiation, which is only partially understood, includes transcriptional changes, factor diffusion between cells, and protein-protein interactions. This work describes the identification of a novel target for NsiR1, a small RNA (sRNA) encoded in multiple slightly divergent copies, and shows how different copies of "sibling" sRNAs regulate the expression of different targets involved in one of the few examples of a differentiation process in prokaryotes.

摘要

异形胞是丝状蓝藻在无法获得其他氮源时分化为固定大气氮的特化细胞。异形胞沿着丝状体以半规则的间隔进行分化,需要复杂的结构和代谢变化,这些变化受主要转录调节因子 HetR 的控制。NsiR1(氮胁迫诱导的 NA)是一种依赖于 HetR 的非编码 RNA,它由多个染色体拷贝表达,其中一些是相同的,一些在序列上略有不同,特别是在分化的早期异形胞中特异性表达。我们之前已经表明,NsiR1 通过反义机制抑制重叠 mRNA 的翻译。在这里,我们鉴定出一个与异形胞分化的承诺(不归点)调节相关的类似基因,作为 NsiR1 的靶标。一个过表达 NsiR1 之一的相同拷贝的菌株比野生型更早地承诺进行异形胞发育。NsiR1 对两个参与异形胞分化和承诺的基因的表达进行的转录后调控,和,为参与异形胞分化的转录调控和蛋白质-蛋白质相互作用网络增加了一个新的复杂性水平。异形胞是在氮饥饿时沿着蓝藻丝状体以半规则间隔出现的固氮特化细胞。异形胞的分化和模式是研究多细胞原核生物细胞分化的模型。分化的调节,虽然部分理解,包括转录变化、因子在细胞之间的扩散和蛋白质-蛋白质相互作用。这项工作描述了一种新的 NsiR1 靶标的鉴定,NsiR1 是一种在多个略有不同的拷贝中编码的小 RNA(sRNA),并显示了“兄弟姐妹”sRNA 的不同拷贝如何调节不同靶标的表达,这些靶标参与了原核生物中为数不多的分化过程之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18f9/9045159/5806e921feab/spectrum.02274-21-f001.jpg

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