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斜坡形释放过程中产生力的横桥:一种新结构状态的证据

Force-generating cross-bridges during ramp-shaped releases: evidence for a new structural state.

作者信息

Radocaj A, Weiss T, Helsby W I, Brenner B, Kraft T

机构信息

Department of Molecular and Cell Physiology, Hannover Medical School, Hannover, Germany.

出版信息

Biophys J. 2009 Feb 18;96(4):1430-46. doi: 10.1016/j.bpj.2008.11.023.

Abstract

Mechanical and two-dimensional (2D) x-ray diffraction studies suggest that during isometric steady-state contraction, strongly bound cross-bridges mostly occupy early states in the power stroke, whereas rigor or rigor-like cross-bridges could not be detected. However, it remained unclear whether cross-bridges accumulate, at least transiently, in rigor or rigor-like states in response to rapid-length releases. We addressed this question using time-resolved recording of 2D x-ray diffraction patterns of permeabilized fibers from rabbit psoas muscles during isometric contraction and when small, ramp-shaped length-releases were applied to these fibers. This maneuver allows a transient accumulation of cross-bridges in states near the end of their power stroke. By lowering the temperature to 5 degrees C, force transients were slowed sufficiently to record diffraction patterns in several 2-4-ms time frames before and during such releases, using the RAPID detector (Refined ADC Per Input Detector) at beam line ID02 of the European Synchrotron Radiation Facility (Grenoble, France). The same sequence of frames was recorded in relaxation and rigor. Comparisons of 2D patterns recorded during isometric contraction, with patterns recorded at different [MgATPgammaS] and at 1 degrees C, showed that changes in intensity profiles along the first and sixth actin layer lines (ALL1 and ALL6, respectively) allowed for discernment of the formation of rigor or rigor-like cross-bridges. During ramp-shaped releases of activated fibers, intensity profiles along ALL1 and ALL6 did not reveal evidence for the accumulation of rigor-like cross-bridges. Instead, changes in the ALL6-profile suggest that during ramp-shaped releases, cross-bridges transiently accumulate in a structural state that, to our knowledge, was not previously seen, but that could well be a strongly bound state with the light-chain binding domain in a conformation between a near prepower-stroke (isometric) orientation and the orientation in rigor.

摘要

机械和二维(2D)X射线衍射研究表明,在等长稳态收缩过程中,紧密结合的横桥大多处于动力冲程的早期状态,而未检测到僵直或类僵直横桥。然而,尚不清楚横桥是否会因快速长度释放而至少短暂地积累在僵直或类僵直状态。我们通过对兔腰大肌透化纤维在等长收缩期间以及对这些纤维施加小的斜坡状长度释放时的2D X射线衍射图案进行时间分辨记录来解决这个问题。这种操作允许横桥在其动力冲程接近结束的状态下短暂积累。通过将温度降至5摄氏度,力瞬变足够缓慢,以便在欧洲同步辐射装置(法国格勒诺布尔)ID02光束线使用RAPID探测器(每个输入探测器的精制ADC)在这种释放之前和期间的几个2 - 4毫秒时间帧内记录衍射图案。在松弛和僵直状态下记录相同的帧序列。将等长收缩期间记录的2D图案与在不同[MgATPγS]和1摄氏度下记录的图案进行比较,结果表明沿第一和第六条肌动蛋白层线(分别为ALL1和ALL6)的强度分布变化有助于辨别僵直或类僵直横桥的形成。在活化纤维的斜坡状释放过程中,沿ALL1和ALL6的强度分布未显示出类僵直横桥积累的证据。相反,ALL6分布的变化表明,在斜坡状释放过程中,横桥短暂积累在一种结构状态中,据我们所知,这种状态以前未见,但很可能是一种紧密结合状态,其轻链结合域处于接近动力冲程前(等长)方向和僵直方向之间的构象。

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