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卤代标签连接体的纳米力学

Nanomechanics of HaloTag tethers.

作者信息

Popa Ionel, Berkovich Ronen, Alegre-Cebollada Jorge, Badilla Carmen L, Rivas-Pardo Jaime Andrés, Taniguchi Yukinori, Kawakami Masaru, Fernandez Julio M

机构信息

Department of Biological Sciences, Columbia University, 1212 Amsterdam Avenue, New York, New York 10027, USA.

出版信息

J Am Chem Soc. 2013 Aug 28;135(34):12762-71. doi: 10.1021/ja4056382. Epub 2013 Aug 19.

Abstract

The active site of the Haloalkane Dehydrogenase (HaloTag) enzyme can be covalently attached to a chloroalkane ligand providing a mechanically strong tether, resistant to large pulling forces. Here we demonstrate the covalent tethering of protein L and I27 polyproteins between an atomic force microscopy (AFM) cantilever and a glass surface using HaloTag anchoring at one end and thiol chemistry at the other end. Covalent tethering is unambiguously confirmed by the observation of full length polyprotein unfolding, combined with high detachment forces that range up to ∼2000 pN. We use these covalently anchored polyproteins to study the remarkable mechanical properties of HaloTag proteins. We show that the force that triggers unfolding of the HaloTag protein exhibits a 4-fold increase, from 131 to 491 pN, when the direction of the applied force is changed from the C-terminus to the N-terminus. Force-clamp experiments reveal that unfolding of the HaloTag protein is twice as sensitive to pulling force compared to protein L and refolds at a slower rate. We show how these properties allow for the long-term observation of protein folding-unfolding cycles at high forces, without interference from the HaloTag tether.

摘要

卤代烷脱卤酶(HaloTag)的活性位点可与氯代烷配体共价连接,形成一个机械强度高的系链,能抵抗较大的拉力。在此,我们展示了蛋白质L和I27多蛋白在原子力显微镜(AFM)悬臂与玻璃表面之间的共价连接,一端使用HaloTag锚定,另一端使用硫醇化学方法。通过观察全长多蛋白的解折叠以及高达约2000 pN的高解离力,明确证实了共价连接。我们使用这些共价锚定的多蛋白来研究HaloTag蛋白卓越的机械性能。我们发现,当施加力的方向从C端变为N端时,触发HaloTag蛋白解折叠的力增加了4倍,从131 pN增至491 pN。力钳实验表明,与蛋白质L相比,HaloTag蛋白的解折叠对拉力的敏感度高两倍,且重新折叠的速率较慢。我们展示了这些特性如何使得在高力条件下能够长期观察蛋白质的折叠 - 解折叠循环,而不受HaloTag系链的干扰。

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