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螺旋移位在嗜热栖热菌CheA磷酸转移酶结构域的原子分辨率结构中产生两种不同的构象。

Helical shifts generate two distinct conformers in the atomic resolution structure of the CheA phosphotransferase domain from Thermotoga maritima.

作者信息

Quezada Cindy M, Gradinaru Cristian, Simon Melvin I, Bilwes Alexandrine M, Crane Brian R

机构信息

Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

J Mol Biol. 2004 Aug 27;341(5):1283-94. doi: 10.1016/j.jmb.2004.06.061.

Abstract

Helical histidine phosphotransferase (HPt) domains play a central role in many aspects of bacterial signal transduction. The 0.98 A resolution crystallographic structure of the amino-terminal HPt domain (P1) from the chemotaxis kinase CheA of Thermotoga maritima reveals a remarkable degree of structural heterogeneity within a four-helix bundle. Two of the four helices have alternate main-chain conformations that differ by a 1.3-1.7A shift along the bundle axis. These dual conformers were only resolved with atomic resolution diffraction data and their inclusion significantly improved refinement statistics. Neither conformer optimizes packing within the helical core, consistent with their nearly equal refined occupancies. Altered hydrogen bonding within an inter-helical loop may facilitate transition between conformers. Two discrete structural states rather than a continuum of closely related conformations indicates an energetic barrier to conversion between conformers in the crystal at 100K, although many more states are expected in solution at physiological temperatures. Anisotropic atomic thermal B factors within the two conformers indicate modest overall atomic displacement that is largest perpendicular to the helical bundle and not along the direction of apparent motion. Despite the conformational heterogeneity of P1 in the crystal at low temperature, the protein displays high thermal stability in solution (T(m)=100 degrees C). Addition of a variable C-terminal region that corresponds to a mobile helix in other CheA structures significantly narrows the temperature width of the unfolding transition and may affect domain dynamics. Helices that compose the kinase recognition site and contain the phospho-accepting His45 do not have alternate conformations. In this region, atomic resolution provides detailed structural parameters for a conserved hydrogen-bonding network that tunes the reactivity of His45. A neighboring glutamate (E67), essential for phosphotransferase activity hydrogen bonds directly to His45 N(delta1). E67 generates a negative electrostatic surface surrounding the reactive His that is conserved by most CheA kinases, but absent in related phosphotransferase proteins. The P1 conformations that we observe are likely relevant to other helical or coiled-coil proteins and may be important for generating switches in signaling processes.

摘要

螺旋组氨酸磷酸转移酶(HPt)结构域在细菌信号转导的许多方面发挥着核心作用。嗜热栖热菌趋化激酶CheA的氨基末端HPt结构域(P1)的0.98埃分辨率晶体结构揭示了四螺旋束内显著程度的结构异质性。四个螺旋中的两个具有交替的主链构象,它们沿束轴的位移为1.3 - 1.7埃。这两种构象异构体仅通过原子分辨率衍射数据得以分辨,并且包含它们显著改善了精修统计。两种构象异构体在螺旋核心内都未实现最佳堆积,这与它们几乎相等的精修占有率一致。螺旋间环内氢键的改变可能有助于构象异构体之间的转变。两种离散的结构状态而非一系列紧密相关的构象表明在100K的晶体中构象异构体之间的转变存在能量障碍,尽管在生理温度下的溶液中预计会有更多状态。两种构象异构体中的各向异性原子热B因子表明原子总体位移适中,最大位移方向垂直于螺旋束而非沿明显运动方向。尽管低温下晶体中的P1存在构象异质性,但该蛋白在溶液中表现出高热稳定性(熔点Tm = 100℃)。添加对应于其他CheA结构中可移动螺旋的可变C末端区域显著缩小了去折叠转变的温度宽度,并且可能影响结构域动力学。构成激酶识别位点并包含磷酸接受性His45的螺旋没有交替构象。在该区域,原子分辨率为调节His45反应性的保守氢键网络提供了详细的结构参数。一个对磷酸转移酶活性至关重要的相邻谷氨酸(E67)直接与His45的N(δ1)形成氢键。E67在反应性His周围产生一个负静电表面,大多数CheA激酶都保守存在这种表面,但相关磷酸转移酶蛋白中不存在。我们观察到的P1构象可能与其他螺旋或卷曲螺旋蛋白相关,并且可能对信号转导过程中产生开关很重要。

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