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化学感受器和传感器激酶中 HAMP 结构域的信号转导机制。

Signaling mechanisms of HAMP domains in chemoreceptors and sensor kinases.

机构信息

Biology Department, University of Utah, Salt Lake City, Utah 84112, USA.

出版信息

Annu Rev Microbiol. 2010;64:101-22. doi: 10.1146/annurev.micro.112408.134215.

Abstract

HAMP domains mediate input-output signaling in histidine kinases, adenylyl cyclases, methyl-accepting chemotaxis proteins, and some phosphatases. HAMP subunits have two 16-residue amphiphilic helices (AS1, AS2) joined by a 14- to 15-residue connector segment. Two alternative HAMP structures in these homodimeric signaling proteins have been described: HAMP(A), a tightly packed, parallel, four-helix bundle; and HAMP(B), a more loosely packed bundle with an altered AS2/AS2' packing arrangement. Stimulus-induced conformational changes probably modulate HAMP signaling by shifting the relative stabilities of these opposing structural states. Changes in AS2/AS2' packing, in turn, modulate output signals by altering structural interactions between output helices through heptad repeat stutters that produce packing phase clashes. Output helices that are too tightly or too loosely packed most likely produce kinase-off output states, whereas kinase-on states require an intermediate range of HAMP stabilities and dynamic behaviors. A three-state, dynamic bundle signaling model best accounts for the signaling properties of chemoreceptor mutants and may apply to other transducers as well.

摘要

HAMP 结构域在组氨酸激酶、腺苷酸环化酶、甲基受体趋化蛋白和一些磷酸酶中介导输入-输出信号转导。HAMP 亚基有两个由 14-15 个残基连接段连接的 16 个残基的两亲性螺旋(AS1、AS2)。这些同源二聚体信号蛋白中的两种替代 HAMP 结构已被描述:HAMP(A),紧密堆积的平行四螺旋束;和 HAMP(B),更松散堆积的束,具有改变的 AS2/AS2' 包装排列。刺激诱导的构象变化可能通过改变这些相反结构状态的相对稳定性来调节 HAMP 信号转导。AS2/AS2' 包装的变化又通过通过七肽重复的停顿产生包装相冲突来改变输出螺旋之间的结构相互作用来调节输出信号。包装得太紧或太松的输出螺旋很可能产生激酶关闭输出状态,而激酶开启状态需要 HAMP 稳定性和动态行为的中间范围。三态动态束信号模型最好地解释了趋化受体突变体的信号特性,并且可能也适用于其他传感器。

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