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一种新型戊二酰胺衍生物对嗜热菌蛋白酶和中性内肽酶24.11的抑制作用:嗜热菌蛋白酶 - 抑制剂复合物的X射线晶体结构测定

Inhibition of thermolysin and neutral endopeptidase 24.11 by a novel glutaramide derivative: X-ray structure determination of the thermolysin-inhibitor complex.

作者信息

Holland D R, Barclay P L, Danilewicz J C, Matthews B W, James K

机构信息

Howard Hughes Medical Institute, University of Oregon, Eugene 97403.

出版信息

Biochemistry. 1994 Jan 11;33(1):51-6. doi: 10.1021/bi00167a007.

Abstract

Determination of the X-ray structure of thermolysin-inhibitor complexes has proven useful in aiding our understanding of the mode of binding of inhibitors of related, physiologically important, mammalian zinc peptidases including neutral endopeptidase EC 3.4.24.11 and angiotensin-converting enzyme. Here we describe the mode of binding to crystalline thermolysin of N-[1-(2(R,S)-carboxy-4-phenylbutyl)-cyclopentylcarbonyl]-(S) -tryptophan (CCT). CCT is an analogue of both candoxatrilat, a potent inhibitor of neutral endopeptidase 24.11, and of the 5-indanyl ester prodrug candoxatril, which is under clinical evaluation as a potential therapy for congestive heart failure. CCT differs from the previously studied N-carboxyalkyl dipeptide CLT [N-(S)-(1-carboxy-3-phenylpropyl)-(S)-leucyl-(S)-tryptophan] in several important respects. It has a highly constrained gem-cyclopentyl P1' substituent and lacks the characteristic imino nitrogen substituent of CLT. The structure determination shows that, notwithstanding the conformational influence of the gem-cyclopentyl substituent, CCT binds within the active site of thermolysin in a similar manner to CLT. Although the characteristic hydrogen bond between the imino nitrogen of CLT and thermolysin is absent in CCT, the affinities of the two inhibitors for the enzyme are virtually identical. These results illustrate the importance of considering not only those hydrogen bonds that are formed in an enzyme-ligand complex but also the other hydrogen bonds that may be lost due to desolvation of the enzyme and ligand on formation of the complex. In addition, the overall conformational demands placed upon a ligand in order to achieve receptor interaction may be critically important.

摘要

已证明测定嗜热菌蛋白酶 - 抑制剂复合物的X射线结构有助于我们理解相关的、具有生理重要性的哺乳动物锌肽酶抑制剂的结合模式,这些锌肽酶包括中性内肽酶EC 3.4.24.11和血管紧张素转换酶。在此,我们描述了N - [1 - (2(R,S) - 羧基 - 4 - 苯基丁基) - 环戊基羰基] - (S) - 色氨酸(CCT)与结晶嗜热菌蛋白酶的结合模式。CCT是坎多沙坦酯(一种有效的中性内肽酶24.11抑制剂)和5 - 茚满酯前药坎多沙坦的类似物,坎多沙坦正在作为充血性心力衰竭的潜在治疗药物进行临床评估。CCT在几个重要方面与先前研究的N - 羧基烷基二肽CLT [N - (S) - (1 - 羧基 - 3 - 苯基丙基) - (S) - 亮氨酰 - (S) - 色氨酸]不同。它具有高度受限的偕环戊基P1'取代基,并且缺乏CLT的特征性亚氨基氮取代基。结构测定表明,尽管偕环戊基取代基存在构象影响,但CCT以与CLT相似的方式结合在嗜热菌蛋白酶的活性位点内。虽然CCT中不存在CLT的亚氨基氮与嗜热菌蛋白酶之间的特征性氢键,但两种抑制剂对该酶的亲和力几乎相同。这些结果说明了不仅要考虑酶 - 配体复合物中形成的氢键,还要考虑由于复合物形成时酶和配体的去溶剂化而可能丢失的其他氢键的重要性。此外,为了实现受体相互作用而对配体提出的整体构象要求可能至关重要。

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