首页> 外文期刊>The Journal of biological chemistry >Forcing Switch from Short- to Intermediate- and Long-lived States of the αA Domain Generates LFA-1/ICAM-1 Catch Bonds
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Forcing Switch from Short- to Intermediate- and Long-lived States of the αA Domain Generates LFA-1/ICAM-1 Catch Bonds

机译:强制切换从αa域的短到中间和长期状态产生LFA-1 / ICAM-1捕获键

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Binding of lymphocyte function-associated antigen-1 (LFA-1) to intercellular adhesion molecule-1 (ICAM-1) mediates leukocyte adhesion under force. Using a biomembrane force probe capable of measuring single bond interactions, we showed ICAM-1 binding to LFA-1 at different conformations, including the bent conformation with the lowest affinity. We quantify how force and conformations of LFA-1 regulate its kinetics with ICAM-1. At zero-force, on-rates were substantially changed by conditions that differentially favor a bent or extended LFA-1 with a closed or open headpiece; but off-rates were identical. With increasing force, LFA-1/ICAM-1 bond lifetimes (reciprocal off-rates) first increased (catch bonds) and then decreased (slip bonds). Three states with distinct off-rates were identified from lifetime distributions. Force shifted the associated fractions from the short- to intermediate- and long-lived states, producing catch bonds at low forces, but increased their off-rates exponentially, converting catch to slip bonds at high forces. An internal ligand antagonist that blocks pulling of the α7-helix suppressed the intermediate-/long-lived states and eliminated catch bonds, revealing an internal catch bond between the αA and βA domains. These results elucidate an allosteric mechanism for the mechanochemistry of LFA-1/ICAM-1 binding.
机译:淋巴细胞功能相关抗原-1(LFA-1)与细胞间粘附分子-1(ICAM-1)的结合介导在力下的白细胞粘附。使用能够测量单键相互作用的生物膜力探针,我们将ICAM-1以不同构象的LFA-1结合,包括具有最低亲和力的弯曲构象。我们量化了LFA-1的力和构象如何使用ICAM-1调节其动力学。在零力下,通过差异地利用弯曲或延伸的LFA-1的条件基本上改变了速率的速率;但是离房价相同。随着力量的增加,LFA-1 / ICAM-1债券寿命(互惠离子率)首先增加(捕获键),然后减少(滑动键)。从寿命分布中确定了三个不同的非速率的州。力从短到中间和长期状态转移相关的级分,在低力下产生捕获键,但是指数上增加了它们的离速,转化了在高力下滑动粘合。阻断α7-螺旋拉动的内部配体拮抗剂抑制了中间/长寿状态并消除了捕获键,揭示了αa和βa结构域之间的内部粘合键。这些结果阐明了LFA-1 / ICAM-1结合的机械化学的变构机制。

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