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双功能脯氨酸分解代谢酶的晶体筛选揭示脯氨酸脱氢酶和 L-谷氨酸-γ-半醛脱氢酶的新抑制剂模板。

Crystallographic Fragment Screening of a Bifunctional Proline Catabolic Enzyme Reveals New Inhibitor Templates for Proline Dehydrogenase and L-Glutamate-γ-semialdehyde Dehydrogenase.

机构信息

Department of Biochemistry, University of Missouri, Columbia, MO 65211, USA.

Molecular Biology Consortium, Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.

出版信息

Molecules. 2024 Nov 16;29(22):5408. doi: 10.3390/molecules29225408.

Abstract

The proline catabolic pathway consisting of proline dehydrogenase (PRODH) and L-glutamate-γ-semialdehyde (GSAL) dehydrogenase (GSALDH) catalyzes the four-electron oxidation of L-proline to L-glutamate. Chemical probes to these enzymes are of interest for their role in cancer and inherited metabolic disease. Here, we report the results of a crystallographic fragment-screening campaign targeting both enzymes. A unique aspect of our approach is the screening of both enzymes simultaneously using crystals of the bifunctional PRODH-GSALDH enzyme, proline utilization A (PutA). A 288-fragment library from Zenobia was screened in cocktails of six fragments. Validation X-ray crystallography with individual fragments identified seven crystal hits distributed in the PRODH active site, GSALDH aldehyde substrate-binding site, and GSALDH NAD adenine-binding site. The fragment bound in the PRODH active site, 4-methoxybenzyl alcohol, is structurally distinct from all known PRODH inhibitors as it lacks an anionic anchor and stabilizes open conformations of the active site, motivating the study of eighteen analogs. In total, thirteen crystal structures with resolutions ranging from 1.32 Å to 1.80 Å were determined, resolving the poses and interactions of seven fragments from the Zenobia library and five analogs of 4-methoxybenzyl alcohol. These results expand the chemical space of probes targeting proline catabolic enzymes and provide new structural information for further inhibitor development.

摘要

脯氨酸分解代谢途径由脯氨酸脱氢酶 (PRODH) 和 L-谷氨酸-γ-半醛 (GSAL) 脱氢酶 (GSALDH) 催化,可将 L-脯氨酸氧化为 L-谷氨酸,共涉及四个电子。这些酶的化学探针因其在癌症和遗传性代谢疾病中的作用而受到关注。在这里,我们报告了针对这两种酶的晶体筛选计划的结果。我们方法的一个独特方面是使用多功能 PRODH-GSALDH 酶(脯氨酸利用 A(PutA))的晶体同时筛选两种酶。从 Zenobia 筛选了 288 个片段文库,在六个片段的混合物中进行筛选。与单个片段的验证 X 射线晶体学鉴定了七个晶体位,分布在 PRODH 活性位点、GSALDH 醛底物结合位点和 GSALDH NAD 腺嘌呤结合位点。结合在 PRODH 活性位点的片段,4-甲氧基苄醇,在结构上与所有已知的 PRODH 抑制剂都不同,因为它缺乏阴离子锚定并稳定活性位点的开放构象,这激发了对十八个类似物的研究。总共确定了 13 个分辨率在 1.32 Å 至 1.80 Å 之间的晶体结构,解析了 Zenobia 文库中的七个片段和 4-甲氧基苄醇的五个类似物的构象和相互作用。这些结果扩展了针对脯氨酸分解代谢酶的探针的化学空间,并为进一步的抑制剂开发提供了新的结构信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1aa/11596857/4e00920d5ec5/molecules-29-05408-g001.jpg

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