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通过高分辨率氢氘交换质谱法探究蛋白酪氨酸磷酸酶1B中的天然动力学和变构反应。

Native dynamics and allosteric responses in PTP1B probed by high-resolution HDX-MS.

作者信息

Woods Virgil A, Abzalimov Rinat R, Keedy Daniel A

机构信息

Structural Biology Initiative, CUNY Advanced Science Research Center, New York, NY 10031.

PhD Program in Biochemistry, CUNY Graduate Center, New York, NY 10016.

出版信息

bioRxiv. 2023 Nov 13:2023.07.12.548582. doi: 10.1101/2023.07.12.548582.

Abstract

Protein tyrosine phosphatase 1B (PTP1B) is a validated therapeutic target for obesity, diabetes, and certain types of cancer. In particular, allosteric inhibitors hold potential for therapeutic use, but an incomplete understanding of conformational dynamics and allostery in this protein has hindered their development. Here, we interrogate solution dynamics and allosteric responses in PTP1B using high-resolution hydrogen-deuterium exchange mass spectrometry (HDX-MS), an emerging and powerful biophysical technique. Using HDX-MS, we obtain a detailed map of the solution dynamics of apo PTP1B, revealing several flexible loops interspersed among more constrained and rigid regions within the protein structure, as well as local regions that exchange faster than expected from their secondary structure and buriedness. We demonstrate that our HDX rate data obtained in solution adds value to predictions of dynamics derived from a pseudo-ensemble constructed from ~200 crystal structures of PTP1B. Furthermore, we report HDX-MS maps for PTP1B with active-site vs. allosteric small-molecule inhibitors. These maps reveal distinct, dramatic, and widespread effects on protein dynamics relative to the apo form, including changes to dynamics in locations distal (>35 Å) from the respective ligand binding sites. These results help shed light on the allosteric nature of PTP1B and the surprisingly far-reaching consequences of inhibitor binding in this important protein. Overall, our work showcases the potential of HDX-MS for elucidating protein conformational dynamics and allosteric effects of small-molecule ligands, and highlights the potential of integrating HDX-MS alongside other complementary methods to guide the development of new therapeutics.

摘要

蛋白酪氨酸磷酸酶1B(PTP1B)是肥胖症、糖尿病和某些类型癌症已获验证的治疗靶点。特别是变构抑制剂具有治疗应用潜力,但对该蛋白构象动力学和变构作用的不完全理解阻碍了其开发。在此,我们使用高分辨率氢-氘交换质谱(HDX-MS)这一新兴且强大的生物物理技术,探究PTP1B中的溶液动力学和变构反应。通过HDX-MS,我们获得了无配体PTP1B溶液动力学的详细图谱,揭示了在蛋白质结构中更具约束性和刚性的区域之间散布着几个柔性环,以及一些局部区域,其交换速度比根据二级结构和埋藏度预期的要快。我们证明,在溶液中获得的HDX速率数据为从由约200个PTP1B晶体结构构建的伪集合推导的动力学预测增加了价值。此外,我们报告了PTP1B与活性位点小分子抑制剂和变构小分子抑制剂的HDX-MS图谱。这些图谱揭示了相对于无配体形式对蛋白质动力学的独特、显著且广泛的影响,包括在距各自配体结合位点远端(>35 Å)位置的动力学变化。这些结果有助于阐明PTP1B的变构性质以及该重要蛋白质中抑制剂结合产生的惊人深远后果。总体而言,我们的工作展示了HDX-MS在阐明蛋白质构象动力学和小分子配体变构效应方面的潜力,并突出了将HDX-MS与其他互补方法相结合以指导新疗法开发的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d13/10659859/e9e4677c3f45/nihpp-2023.07.12.548582v2-f0001.jpg

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