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首页> 外文期刊>MBio >A Single-Domain Response Regulator Functions as an Integrating Hub To Coordinate General Stress Response and Development in Alphaproteobacteria
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A Single-Domain Response Regulator Functions as an Integrating Hub To Coordinate General Stress Response and Development in Alphaproteobacteria

机译:单域响应调节器充当整合枢纽,以协调一般应激反应和丙型杆菌的发展。

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ABSTRACT The alphaproteobacterial general stress response is governed by a conserved partner-switching mechanism that is triggered by phosphorylation of the response regulator PhyR. In the model organism Caulobacter crescentus , PhyR was proposed to be phosphorylated by the histidine kinase PhyK, but biochemical evidence in support of such a role of PhyK is missing. Here, we identify a single-domain response regulator, MrrA, that is essential for general stress response activation in C.?crescentus . We demonstrate that PhyK does not function as a kinase but accepts phosphoryl groups from MrrA and passes them on to PhyR, adopting the role of a histidine phosphotransferase. MrrA is phosphorylated by at least six histidine kinases that likely serve as stress sensors. MrrA also transfers phosphate to LovK, a histidine kinase involved in C.?crescentus holdfast production and attachment, which also negatively regulates the general stress response. We show that LovK together with the response regulator LovR acts as a phosphate sink to redirect phosphate flux away from the PhyKR branch. In agreement with the biochemical data, an mrrA mutant is unable to activate the general stress response and shows a hyperattachment phenotype, which is linked to decreased expression of the major holdfast inhibitory protein HfiA. We propose that MrrA serves as a central phosphorylation hub that coordinates the general stress response with C.?crescentus development and other adaptive behaviors. The characteristic bow-tie architecture of this phosphorylation network with MrrA as the central knot may expedite the evolvability and species-specific niche adaptation of this group of bacteria. IMPORTANCE Two-component systems (TCSs) consisting of a histidine kinase and a cognate response regulator are predominant signal transduction systems in bacteria. To avoid cross talk, TCSs are generally thought to be highly insulated from each other. However, this notion is based largely on studies of the HisKA subfamily of histidine kinases, while little information is available for the HWE and HisKA2 subfamilies. The latter have been implicated in the alphaproteobacterial general stress response. Here, we show that in the model organism Caulobacter crescentus an atypical FATGUY-type single-domain response regulator, MrrA, is highly promiscuous in accepting and transferring phosphoryl groups from and to multiple up- and downstream kinases, challenging the current view of strictly insulated TCSs. Instead, we propose that FATGUY response regulators have evolved in alphaproteobacteria as central phosphorylation hubs to broadly sample information and distribute phosphoryl groups between the general stress response pathway and other TCSs, thereby coordinating multiple cellular behaviors.
机译:摘要α变形细菌的一般应激反应由保守的伴侣转换机制控制,该机制由反应调节因子PhyR的磷酸化触发。在模型生物Caulobacter crescentus中,有人提出PhyR被组氨酸激酶PhyK磷酸化,但是缺少支持这种PhyK作用的生化证据。在这里,我们确定了一个单域响应调节器MrrA,它对于C.?escent的一般应激反应激活至关重要。我们证明,PhyK不能作为激酶起作用,但可以从MrrA接受磷酸基团,然后将它们传递给PhyR,采用组氨酸磷酸转移酶的作用。 MrrA被至少六个可能用作应激传感器的组氨酸激酶磷酸化。 MrrA还将磷酸盐转移到LovK,LovK是一种参与新月形梭菌快速产生和附着的组氨酸激酶,它也对一般的应激反应产生负面影响。我们显示,LovK与响应调节剂LovR一起充当磷酸盐吸收剂,将磷酸盐通量重定向到PhyKR分支之外。与生化数据相一致,mrrA突变体无法激活一般应激反应,并显示出超附着表型,这与主要保持抑制蛋白HfiA的表达降低有关。我们建议MrrA充当中央磷酸化枢纽,协调与C.?crescentus发展和其他适应行为的一般应激反应。这种以MrrA为中心的磷酸化网络的领结结构可能会加快这组细菌的进化能力和特定物种的生态位适应性。重要信息由组氨酸激酶和关联反应调节剂组成的两组分系统(TCS)是细菌中的主要信号转导系统。为了避免串扰,通常认为TCS彼此高度绝缘。然而,该概念主要基于对组氨酸激酶的HisKA亚家族的研究,而关于HWE和HisKA2亚家族的信息很少。后者与α-蛋白细菌一般应激反应有关。在这里,我们显示出在模型生物新月形杆菌中,非典型的FATGUY型单域响应调节剂MrrA在接受磷酸酯基和从多种上下游激酶转移磷酸酯的过程中非常混杂,挑战了目前严格绝缘的观点TCS。取而代之的是,我们建议FATGUY反应调节剂已在α变形杆菌中进化为中央磷酸化中心,以广泛地采样信息并在一般应激反应途径和其他TCS之间分布磷酰基,从而协调多种细胞行为。

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