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恶性疟原虫二聚体FabZ的晶体结构揭示了通过肽段翻转转变为活性六聚体的构象变化。

Crystal structure of dimeric FabZ of Plasmodium falciparum reveals conformational switching to active hexamers by peptide flips.

作者信息

Swarnamukhi P Lakshmi, Sharma Shailendra Kumar, Bajaj Preeti, Surolia Namita, Surolia Avadhesha, Suguna Kaza

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560 012, India.

出版信息

FEBS Lett. 2006 May 15;580(11):2653-60. doi: 10.1016/j.febslet.2006.04.014. Epub 2006 Apr 21.

Abstract

The crystal structure of beta-hydroxyacyl acyl carrier protein dehydratase of Plasmodium falciparum (PfFabZ) has been determined at a resolution of 2.4 A. PfFabZ has been found to exist as a homodimer (d-PfFabZ) in the crystals of the present study in contrast to the reported hexameric form (h-PfFabZ) which is a trimer of dimers crystallized in a different condition. The catalytic sites of this enzyme are located in deep narrow tunnel-shaped pockets formed at the dimer interface. A histidine residue from one subunit of the dimer and a glutamate residue from the other subunit lining the tunnel form the catalytic dyad in the reported crystal structures. While the position of glutamate remains unaltered in the crystal structure of d-PfFabZ compared to that in h-PfFabZ, the histidine residue takes up an entirely different conformation and moves away from the tunnel leading to a His-Phe cis-trans peptide flip at the histidine residue. In addition, a loop in the vicinity has been observed to undergo a similar flip at a Tyr-Pro peptide bond. These alterations not only prevent the formation of a hexamer but also distort the active site geometry resulting in a dimeric form of FabZ that is incapable of substrate binding. The dimeric state and an altered catalytic site architecture make d-PfFabZ distinctly different from the FabZ structures described so far. Dynamic light scattering and size exclusion chromatographic studies clearly indicate a pH-related switching of the dimers to active hexamers.

摘要

恶性疟原虫β-羟基酰基载体蛋白脱水酶(PfFabZ)的晶体结构已在2.4埃的分辨率下测定。在本研究的晶体中,PfFabZ被发现以同型二聚体(d-PfFabZ)形式存在,这与报道的六聚体形式(h-PfFabZ)形成对比,h-PfFabZ是在不同条件下结晶的二聚体三聚体。该酶的催化位点位于二聚体界面处形成的深而窄的隧道状口袋中。在报道的晶体结构中,二聚体一个亚基的组氨酸残基和另一个亚基内衬隧道的谷氨酸残基形成催化二元组。与h-PfFabZ相比,d-PfFabZ的晶体结构中谷氨酸的位置保持不变,但组氨酸残基呈现出完全不同的构象并远离隧道,导致组氨酸残基处的His-Phe顺反肽翻转。此外,已观察到附近的一个环在Tyr-Pro肽键处发生类似的翻转。这些改变不仅阻止了六聚体的形成,还扭曲了活性位点的几何形状,导致形成无法结合底物的二聚体形式的FabZ。二聚体状态和改变的催化位点结构使d-PfFabZ与迄今为止描述的FabZ结构明显不同。动态光散射和尺寸排阻色谱研究清楚地表明二聚体与活性六聚体之间存在与pH相关的转换。

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