School of Life Sciences, Arizona State University, Tempe, Arizona 85287-4501, USA.
J Bacteriol. 2010 Dec;192(23):6271-8. doi: 10.1128/JB.00855-10. Epub 2010 Oct 1.
MzrA was identified as a modulator of the EnvZ/OmpR two-component signal transduction system. Previous evidence indicated that MzrA interacts with EnvZ and modulates its enzymatic activities to influence OmpR phosphate (OmpR∼P) levels. Moreover, MzrA was shown to connect the bacterial envelope stress response systems CpxA/CpxR and σ(E) to EnvZ/OmpR to widen the defensive response regulatory network. In this study, experiments were carried out to establish whether the membrane or periplasmic domain of MzrA is critical for MzrA-EnvZ interactions and to reveal MzrA residues that play an important role in these interactions. Data obtained from chimeric constructs, in which the transmembrane domain of MzrA was replaced with the unrelated transmembrane domain of NarX or signal sequence of PhoA, showed that the transmembrane domain residues of MzrA do not play a critical role in MzrA-EnvZ interactions. The importance of the periplasmic domain of MzrA in MzrA-EnvZ interactions was revealed by characterizing bifunctional, fully soluble, and periplasmically localized MalE::MzrA chimeras. This was further corroborated through the isolation of loss-of-function, single-amino-acid substitutions in the conserved periplasmic domain of MzrA that interfered with MzrA-EnvZ binding in a bacterial two-hybrid system. Together, the data suggest that the binding of MzrA to EnvZ influences the ability of EnvZ to receive and/or respond to environmental signals in the periplasm and modulate its biochemical output to OmpR.
MzrA 被鉴定为 EnvZ/OmpR 双组分信号转导系统的调节剂。先前的证据表明,MzrA 与 EnvZ 相互作用,并调节其酶活性,以影响 OmpR 磷酸化(OmpR∼P)水平。此外,MzrA 被证明将细菌包膜应激反应系统 CpxA/CpxR 和 σ(E) 连接到 EnvZ/OmpR,以扩大防御反应调控网络。在这项研究中,进行了实验以确定 MzrA 的膜或周质域对于 MzrA-EnvZ 相互作用是否至关重要,并揭示了在这些相互作用中起重要作用的 MzrA 残基。从嵌合构建体中获得的数据表明,MzrA 的跨膜域被不相关的跨膜域 NarX 或 PhoA 的信号序列取代时,MzrA 的跨膜域残基对于 MzrA-EnvZ 相互作用并不起关键作用。通过表征双功能、完全可溶性和周质定位的 MalE::MzrA 嵌合体,揭示了 MzrA 的周质域在 MzrA-EnvZ 相互作用中的重要性。这进一步通过分离保守的 MzrA 周质域中的功能丧失、单氨基酸取代得到证实,这些取代在细菌双杂交系统中干扰了 MzrA-EnvZ 结合。总之,这些数据表明,MzrA 与 EnvZ 的结合影响了 EnvZ 在周质中接收和/或响应环境信号的能力,并调节其对 OmpR 的生化输出。