...
首页> 外文期刊>Journal of bacteriology >Structure-Function Relationships in the HAMP and Proximal Signaling Domains of the Aerotaxis Receptor Aer
【24h】

Structure-Function Relationships in the HAMP and Proximal Signaling Domains of the Aerotaxis Receptor Aer

机译:HAMP和趋近性受体Aer的近端信号域中的结构功能关系。

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Aer, the Escherichia coli aerotaxis receptor, faces the cytoplasm, where the PAS (Per-ARNT-Sim)-flavin adenine dinucleotide (FAD) domain senses redox changes in the electron transport system or cytoplasm. PAS-FAD interacts with a HAMP (histidine kinase, adenylyl cyclase, methyl-accepting protein, and phosphatase) domain to form an input-output module for Aer signaling. In this study, the structure of the Aer HAMP and proximal signaling domains was probed to elucidate structure-function relationships important for signaling. Aer residues 210 to 290 were individually replaced with cysteine and then cross-linked in vivo. The results confirmed that the Aer HAMP domain is composed of two α-helices separated by a structured loop. The proximal signaling domain consisted of two α-helices separated by a short undetermined structure. The Af1503 HAMP domain from Archaeoglobus fulgidus was recently shown to be a four-helix bundle. To test whether the Af1503 HAMP domain is a prototype for the Aer HAMP domain, the latter was modeled using coordinates from Af1503. Several findings supported the hypothesis that Aer has a four-helix HAMP structure: (i) cross-linking independently identified the same residues at the dimer interface that were predicted by the model, (ii) the rate of cross-linking for residue pairs was inversely proportional to the β-carbon distances measured on the model, and (iii) clockwise lesions that were not contiguous in the linear Aer sequence were clustered in one region in the folded HAMP model, defining a potential site of PAS-HAMP interaction during signaling. In silico modeling of mutant Aer proteins indicated that the four-helix HAMP structure was important for Aer stability or maturation. The significance of the HAMP and proximal signaling domain structure for signal transduction is discussed.
机译:大肠杆菌趋气性受体Aer面对细胞质,PAS( P er- A RNT- S im)-黄素腺嘌呤二核苷酸(FAD)域可感知电子传输系统或细胞质中的氧化还原变化。 PAS-FAD与HAMP( h 组氨酸激酶, a 腺苷酸环化酶, m 乙基接受蛋白和 p hosphatase)域,以形成用于Aer信令的输入输出模块。在这项研究中,探究了Aer HAMP和近端信号传导域的结构,以阐明对信号传导重要的结构-功能关系。将210至290的Aer残基分别替换为半胱氨酸,然后在体内进行交联。结果证实,Aer HAMP结构域由被结构环分开的两个α-螺旋组成。近端信号域由两个短的不确定结构隔开的α螺旋组成。最近显示, Archaeoglobus fulgidus 中的Af1503 HAMP域是一个四螺旋束。为了测试Af1503 HAMP域是否是Aer HAMP域的原型,使用Af1503的坐标对后者进行建模。一些发现支持Aer具有四螺旋HAMP结构的假说:(i)交联独立地确定了模型预测的二聚体界面上相同的残基,(ii)残基对的交联速率为与在模型上测得的β-碳距离成反比,并且(iii)在线性Her序列中不连续的顺时针病变聚集在折叠HAMP模型的一个区域中,从而定义了信号传导期间PAS-HAMP相互作用的潜在位点。突变Aer蛋白的计算机模拟表明,四螺旋HAMP结构对于Aer稳定性或成熟很重要。讨论了HAMP和近端信号域结构对信号转导的意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号