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力调控的血小板糖蛋白 Ib-IX 复合物中机械感受器结构域的重折叠。

Force-Regulated Refolding of the Mechanosensory Domain in the Platelet Glycoprotein Ib-IX Complex.

机构信息

Department of Bioengineering, Department of Mechanical Engineering & Mechanics, Lehigh University, Bethlehem, Pennsylvania.

Department of Bioengineering, Department of Mechanical Engineering & Mechanics, Lehigh University, Bethlehem, Pennsylvania.

出版信息

Biophys J. 2019 May 21;116(10):1960-1969. doi: 10.1016/j.bpj.2019.03.037. Epub 2019 Apr 8.

Abstract

In platelets, the glycoprotein (GP) Ib-IX receptor complex senses blood shear flow and transmits the mechanical signals into platelets. Recently, we have discovered a juxtamembrane mechanosensory domain (MSD) within the GPIbα subunit of GPIb-IX. Mechanical unfolding of the MSD activates GPIb-IX signaling into platelets, leading to their activation and clearance. Using optical tweezer-based single-molecule force measurement, we herein report a systematic biomechanical characterization of the MSD in its native, full-length receptor complex and a recombinant, unglycosylated MSD in isolation. The native MSD unfolds at a resting rate of 9 × 10 s. Upon exposure to pulling forces, MSD unfolding accelerates exponentially over a force scale of 2.0 pN. Importantly, the unfolded MSD can refold with or without applied forces. The unstressed refolding rate of MSD is ∼17 s and slows exponentially over a force scale of 3.7 pN. Our measurements confirm that the MSD is relatively unstable, with a folding free energy of 7.5 kT. Because MSD refolding may turn off GPIb-IX's mechanosensory signals, our results provide a mechanism for the requirement of a continuous pulling force of >15 pN to fully activate GPIb-IX.

摘要

在血小板中,糖蛋白 (GP) Ib-IX 受体复合物感知血流切变,并将机械信号传递到血小板中。最近,我们在 GPIb-IX 的 GPIbα亚基中发现了一个跨膜机械感受器结构域 (MSD)。MSD 的机械展开激活了 GPIb-IX 向血小板的信号转导,导致其激活和清除。我们使用基于光镊的单分子力测量技术,对其天然全长受体复合物中的 MSD 以及分离的重组、非糖基化 MSD 进行了系统的生物力学表征。天然 MSD 在静止状态下的展开速率为 9×10 s。在受到拉力作用时,MSD 的展开速度在 2.0 pN 的力范围内呈指数加速。重要的是,展开的 MSD 可以在有或没有施加力的情况下重新折叠。MSD 的无应力折叠速率约为 17 s,并在 3.7 pN 的力范围内呈指数减速。我们的测量结果证实,MSD 相对不稳定,折叠自由能为 7.5 kT。由于 MSD 的折叠可能会关闭 GPIb-IX 的机械感受器信号,因此我们的结果为需要持续超过 15 pN 的拉力才能完全激活 GPIb-IX 提供了一种机制。

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