低温电镜法研究天然血小板膜上整合素α ib β3的动态。

IF 7.1 1区 医学 Q1 HEMATOLOGY
Xu Han, Zhemin Zhang, Chih-Chia Su, Meinan Lyu, Masaru Miyagi, Edward Yu, Marvin T Nieman
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引用次数: 0

摘要

血小板通过其膜蛋白实现其感知细胞外环境的基本生理功能。天然膜环境提供了影响蛋白质结构和作用机制的重要调控线索。单粒子低温电子显微镜(cryo-EM)通过允许从均匀样品中求解膜蛋白的高分辨率结构,改变了结构生物学。我们最近在数据处理方面的突破现在使得通过将冷冻电镜与“构建和检索”(BaR)数据处理方法相结合,从原始环境中的粗制剂中获得原子级分辨率的蛋白质结构成为可能。我们将这种迭代的自下而上的方法应用于静息的人血小板膜,以深入的系统生物学方法来揭示天然环境中的脂质、金属结合、翻译后修饰和辅助因子关联如何在分子水平上调节血小板功能。在这里,我们报告使用冷冻电镜和BaR方法直接从静止的人血小板膜中分别在2.75Å和2.67Å处失活和中间状态下解决未修饰的整合素αIIbβ3结构。此外,我们还解决了αIIbβ3在2.85Å由αIIbβ3的两个中间态形成的新的二聚体构象。这可能表明αIIbβ3在其天然环境中存在一种未知的自我调节机制。总之,我们的数据显示了使用低温电镜和BaR方法确定三种不同结构的能力,包括直接来自天然来源的新型二聚体。这种方法使我们能够识别未被识别的蛋白质调节机制,而不会由于纯化过程而产生伪像。这些数据有可能丰富我们对血小板信号通路的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elucidating the dynamics of integrin αIIbβ3 from native platelet membranes by cryo-EM with build-and-retrieve method.

Abstract: Platelets fulfill their essential physiological roles sensing the extracellular environment through their membrane proteins. The native membrane environment provides essential regulatory cues that affect the protein structure and mechanism of action. Single-particle cryogenic electron microscopy (cryo-EM) has transformed structural biology by allowing high-resolution structures of membrane proteins to be solved from homogeneous samples. Our recent breakthroughs in data processing now make it feasible to obtain atomic-level-resolution protein structures from crude preparations in their native environments by integrating cryo-EM with the "build-and-retrieve" (BaR) data processing methodology. We applied this iterative bottom-up methodology on resting human platelet membranes for an in-depth systems biology approach to uncover how lipids, metal binding, post-translational modifications, and cofactor associations in the native environment regulate platelet function at the molecular level. Here, we report using cryo-EM followed by the BaR method to solve the unmodified integrin αIIbβ3 structure directly from resting human platelet membranes in its inactivated and intermediate states at 2.75 and 2.67 Å, respectively. Furthermore, we also solved a novel dimer conformation of αIIbβ3 at 2.85 Å formed by 2 intermediate states of αIIbβ3. This may indicate a previously unknown self-regulatory mechanism of αIIbβ3 in its native environment. In conclusion, our data show the power of using cryo-EM with the BaR method to determine 3 distinct structures including a novel dimer directly from natural sources. This approach allows us to identify unrecognized regulation mechanisms for proteins without artifacts owing to purification processes. These data have the potential to enrich our understanding of platelet signaling circuitry.

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来源期刊
Blood advances
Blood advances Medicine-Hematology
CiteScore
12.70
自引率
2.70%
发文量
840
期刊介绍: Blood Advances, a semimonthly medical journal published by the American Society of Hematology, marks the first addition to the Blood family in 70 years. This peer-reviewed, online-only, open-access journal was launched under the leadership of founding editor-in-chief Robert Negrin, MD, from Stanford University Medical Center in Stanford, CA, with its inaugural issue released on November 29, 2016. Blood Advances serves as an international platform for original articles detailing basic laboratory, translational, and clinical investigations in hematology. The journal comprehensively covers all aspects of hematology, including disorders of leukocytes (both benign and malignant), erythrocytes, platelets, hemostatic mechanisms, vascular biology, immunology, and hematologic oncology. Each article undergoes a rigorous peer-review process, with selection based on the originality of the findings, the high quality of the work presented, and the clarity of the presentation.
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