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在变铅青链霉菌 A3(2) 中,多种 σ 因子的激活过程中,多功能抗抗 σ 因子 BldG 被几种抗 σ 因子激酶磷酸化。

Pleiotropic anti-anti-sigma factor BldG is phosphorylated by several anti-sigma factor kinases in the process of activating multiple sigma factors in Streptomyces coelicolor A3(2).

机构信息

Institute of Molecular Biology, Slovak Academy of Sciences, 845 51 Bratislava, Slovak Republic.

Institute of Molecular Biology, Slovak Academy of Sciences, 845 51 Bratislava, Slovak Republic.

出版信息

Gene. 2020 Sep 10;755:144883. doi: 10.1016/j.gene.2020.144883. Epub 2020 Jun 18.

Abstract

The anti-anti-sigma factor BldG has a pleiotropic function in Streptomyces coelicolor A3(2), regulating both morphological and physiological differentiation. Together with the anti-sigma factor UshX, it participates in a partner-switching activation of the sigma factor σ, which has a dual role in the osmotic stress response and morphological differentiation in S. coelicolor A3(2). In addition to UshX, BldG also interacts with the anti-sigma factor ApgA, although no target sigma factor has yet been identified. However, neither UshX nor ApgA phosphorylates BldG. This phosphorylation is provided by the anti-sigma factor RsfA, which is specific for the late developmental sigma factor σ. However, BldG is phosphorylated in the rsfA mutant, suggesting that some other anti-sigma factors containing HATPase_c kinase domain are capable to phosphorylate BldG in vivo. Bacterial two-hybrid system (BACTH) was therefore used to investigate the interactions of all suitable anti-sigma factors of S. coelicolor A3(2) with BldG. At least 15 anti-sigma factors were found to interact with BldG. These interactions were confirmed by native PAGE. In addition to RsfA, BldG is specifically phosphorylated on the conserved phosphorylation Ser57 residue by at least seven additional anti-sigma factors. However, only one of them, SCO7328, has been shown to interact with three sigma factors, σ, σ and σ. A mutant with deleted SCO7328 gene was prepared in S. coelicolor A3(2), however, no specific function of SCO7328 in growth, differentiation or stress response could be attributed to this anti-sigma factor. These results suggest that BldG is specifically phosphorylated by several anti-sigma factors and it plays a role in the regulation of several sigma factors in S. coelicolor A3(2). This suggests a complex regulation of the stress response and differentiation in S. coelicolor A3(2) through this pleiotropic anti-sigma factor.

摘要

抗反西格玛因子 BldG 在链霉菌中具有多效功能,调节形态和生理分化。与反西格玛因子 UshX 一起,它参与了西格玛因子σ的伴侣交换激活,该因子在链霉菌 A3(2)的渗透胁迫反应和形态分化中具有双重作用。除了 UshX,BldG 还与反西格玛因子 ApgA 相互作用,尽管尚未确定靶西格玛因子。然而,UshX 和 ApgA 都没有磷酸化 BldG。这种磷酸化是由反西格玛因子 RsfA 提供的,它是特定于晚期发育西格玛因子σ的。然而,在 rsfA 突变体中也检测到 BldG 的磷酸化,这表明一些其他含有 HATPase_c 激酶结构域的反西格玛因子能够在体内磷酸化 BldG。因此,使用细菌双杂交系统(BACTH)来研究链霉菌 A3(2)中所有合适的反西格玛因子与 BldG 的相互作用。发现至少有 15 种反西格玛因子与 BldG 相互作用。这些相互作用通过天然 PAGE 得到证实。除了 RsfA,BldG 在保守的磷酸化丝氨酸 57 残基上还被至少另外七种反西格玛因子特异性磷酸化。然而,只有其中一种,SCO7328,已被证明与三个σ因子、σ和σ相互作用。在链霉菌 A3(2)中制备了缺失 SCO7328 基因的突变体,但不能将其归因于该反西格玛因子在生长、分化或应激反应中的特定功能。这些结果表明,BldG 被几种反西格玛因子特异性磷酸化,在链霉菌 A3(2)中调节几个σ因子的活性。这表明该多效性反西格玛因子通过复杂的调节在链霉菌 A3(2)中的应激反应和分化。

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