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The HWE Histidine Kinases a New Family of Bacterial Two-Component Sensor Kinases with Potentially Diverse Roles in Environmental Signaling

机译:HWE组氨酸激酶细菌两成分传感器激酶的新家族在环境信号中可能具有多种作用

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摘要

Two-component signal transduction pathways play a major role in the response of bacteria to external cues. These pathways are initiated by large collection of histidine kinases (HKs) containing a sensor domain that perceives the environmental signal followed by an HK domain that triggers a histidine-aspartate phosphorelay. Previous phylogenetic analyses identified 11 major families of two-component HKs by comparing signature motifs within the HK domain. Here we describe a new family with homology to Agrobacterium tumefaciens BphP2, an HK first discovered by the presence of a phytochrome sensor domain involved in light perception. Members of this sensor HK family differ from most others by the absence of a recognizable F box and the presence of several uniquely conserved residues, including a histidine in the N box and a tryptophan-X-glutamic acid sequence in the G1 box, which we have used to define the family (HWE). At least 81 members were identified in a variety of α- and γ-proteobacteria, with a significant enrichment in the Rhizobiaceae family. Several representatives were shown to have HK activity in vitro, supporting their proposed participation in phosphorelays. One or more domains related to signal transduction were evident N-terminal to the HK domain, including chemotactic methyltransferase domains, suggesting that this family has multiple roles in environmental signaling. The discovery of the HWE family further extends the diversity within the HK superfamily and expands the importance of two-component signaling in bacteria.
机译:两成分信号转导途径在细菌对外部线索的反应中起主要作用。这些途径由大量收集的组氨酸激酶(HKs)引发,这些组氨酸激酶包含感知环境信号的传感器域,然后是触发组氨酸-天冬氨酸磷酸化的HK域。以前的系统进化分析通过比较HK域内的签名基序,确定了11个主要的两组分HKs家族。在这里,我们描述了一个与根癌农杆菌BphP2具有同源性的新家族,该HK最初是通过参与光感知的植物色素传感器域的存在而首次发现的。该传感器HK家族的成员与其他大多数成员有所不同,因为缺少可识别的F框,并且存在几个独特的保守残基,包括N框中的组氨酸和G1框中的色氨酸-X-谷氨酸序列,我们曾经用来定义家庭(HWE)。在各种α-和γ-变形杆菌中鉴定出至少81个成员,其中根瘤菌科家族显着富集。研究表明,有几位代表在体外具有HK活动,从而支持了他们提议的参与磷灰泥的活动。一个或多个与信号转导相关的结构域在HK结构域的N端是明显的,包括趋化甲基转移酶结构域,表明该家族在环境信号传导中具有多种作用。 HWE家族的发现进一步扩展了HK超家族中的多样性,并扩大了细菌中双组分信号传导的重要性。

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