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抑制性肽复合物的高分辨率结构揭示肉毒杆菌神经毒素A轻链的催化特性

Catalytic features of the botulinum neurotoxin A light chain revealed by high resolution structure of an inhibitory peptide complex.

作者信息

Silvaggi Nicholas R, Wilson David, Tzipori Saul, Allen Karen N

机构信息

Department of Physiology and Biophysics, Boston University School of Medicine, Boston, Massachusetts 02118, USA.

出版信息

Biochemistry. 2008 May 27;47(21):5736-45. doi: 10.1021/bi8001067. Epub 2008 May 6.

Abstract

The Clostridium botulinum neurotoxin serotype A light chain (BoNT/A-LC) is a Zn(II)-dependent metalloprotease that blocks the release of acetylcholine at the neuromuscular junction by cleaving SNAP-25, one of the SNARE proteins required for exocytosis. Because of the potential for use of the toxin in bioterrorism and the increasingly widespread application of the toxin in the medical field, there is significant interest in the development of small-molecule inhibitors of the metalloprotease. Efforts to design such inhibitors have not benefited from knowledge of how peptides bind to the active site since the enzyme-peptide structures available previously either were not occupied in the vicinity of the catalytic Zn(II) ion or did not represent the product of SNAP-25 substrate cleavage. Herein we report the 1.4 A-resolution X-ray crystal structure of a complex between the BoNT/A-LC and the inhibitory peptide N-Ac-CRATKML, the first structure of the light chain with an inhibitory peptide bound at the catalytic Zn(II) ion. The peptide is bound with the Cys S gamma atom coordinating the metal ion. Surprisingly, the cysteine sulfur is oxidized to the sulfenic acid form. Given the unstable nature of this species in solution, is it likely that oxidation occurs on the enzyme. In addition to the peptide-bound structure, we report two structures of the unliganded light chain with and without the Zn(II) cofactor bound at 1.25 and 1.20 A resolution, respectively. The two structures are nearly identical, confirming that the Zn(II) ion plays a purely catalytic role. Additionally, the structure of the Zn(II)-bound uncomplexed enzyme allows identification of the catalytic water molecule and a second water molecule that occupies the same position as the peptidic oxygen in the tetrahedral intermediate. This observation suggests that the enzyme active site is prearranged to stabilize the tetrahedral intermediate of the protease reaction.

摘要

肉毒杆菌神经毒素A轻链(BoNT/A-LC)是一种依赖锌(II)的金属蛋白酶,它通过切割SNAP-25(胞吐作用所需的SNARE蛋白之一)来阻断神经肌肉接头处乙酰胆碱的释放。由于该毒素在生物恐怖主义中的潜在用途以及其在医学领域日益广泛的应用,人们对开发这种金属蛋白酶的小分子抑制剂有着浓厚的兴趣。设计此类抑制剂的努力尚未从肽如何结合活性位点的知识中受益,因为先前获得的酶-肽结构要么在催化锌(II)离子附近没有被占据,要么不代表SNAP-25底物切割的产物。在此,我们报告了BoNT/A-LC与抑制性肽N-Ac-CRATKML之间复合物的1.4埃分辨率X射线晶体结构,这是轻链与在催化锌(II)离子处结合的抑制性肽的首个结构。该肽以半胱氨酸Sγ原子配位金属离子的方式结合。令人惊讶的是,半胱氨酸硫被氧化为亚磺酸形式。鉴于该物种在溶液中的不稳定性质,氧化很可能发生在酶上。除了肽结合结构外,我们还分别报告了未结合配体的轻链在有和没有锌(II)辅因子结合时的两个结构,分辨率分别为1.25和1.20埃。这两个结构几乎相同,证实锌(II)离子仅起催化作用。此外,锌(II)结合的未复合酶的结构允许识别催化水分子和占据四面体中间体中肽氧相同位置的第二个水分子。这一观察结果表明,酶活性位点预先安排好以稳定蛋白酶反应的四面体中间体。

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