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骨骼肌纤维中肌球蛋白调节轻链上罗丹明异构体的荧光偏振瞬变。

Fluorescence polarization transients from rhodamine isomers on the myosin regulatory light chain in skeletal muscle fibers.

作者信息

Hopkins S C, Sabido-David C, Corrie J E, Irving M, Goldman Y E

机构信息

Pennsylvania Muscle Institute, University of Pennsylvania, Philadelphia 19104-6083, USA.

出版信息

Biophys J. 1998 Jun;74(6):3093-110. doi: 10.1016/S0006-3495(98)78016-6.

Abstract

Fluorescence polarization was used to examine orientation changes of two rhodamine probes bound to myosin heads in skeletal muscle fibers. Chicken gizzard myosin regulatory light chain (RLC) was labeled at Cys108 with either the 5- or the 6-isomer of iodoacetamidotetramethylrhodamine (IATR). Labeled RLC (termed Cys108-5 or Cys108-6) was exchanged for the endogenous RLC in single, skinned fibers from rabbit psoas muscle. Three independent fluorescence polarization ratios were used to determine the static angular distribution of the probe dipoles with respect to the fiber axis and the extent of probe motions on the nanosecond time scale of the fluorescence lifetime. We used step changes in fiber length to partially synchronize the transitions between biochemical, structural, and mechanical states of the myosin cross-bridges. Releases during active contraction tilted the Cys108-6 dipoles away from the fiber axis. This response saturated for releases beyond 3 nm/half-sarcomere (h.s.). Stretches in active contraction caused the dipoles to tilt toward the fiber axis, with no evidence of saturation for stretches up to 7 nm/h.s. These nonlinearities of the response to length changes are consistent with a partition of approximately 90% of the probes that did not tilt when length changes were applied and 10% of the probes that tilted. The responding fraction tilted approximately 30 degrees for a 7.5 nm/h.s. release and traversed the plane perpendicular to the fiber axis for larger releases. Stretches in rigor tilted Cys108-6 dipoles away from the fiber axis, which was the opposite of the response in active contraction. The transition from the rigor-type to the active-type response to stretch preceded the main force development when fibers were activated from rigor by photolysis of caged ATP in the presence of Ca2+. Polarization ratios for Cys108-6 in low ionic strength (20 mM) relaxing solution were compatible with a combination of the relaxed (200 mM ionic strength) and rigor intensities, but the response to length changes was of the active type. The nanosecond motions of the Cys108-6 dipole were restricted to a cone of approximately 20 degrees half-angle, and those of Cys108-5 dipole to a cone of approximately 25 degrees half-angle. These values changed little between relaxation, active contraction, and rigor. Cys108-5 showed very small-amplitude tilting toward the fiber axis for both stretches and releases in active contraction, but much larger amplitude tilting in rigor. The marked differences in these responses to length steps between the two probe isomers and between active contraction and rigor suggest that the RLC undergoes a large angle change (approximately 60 degrees) between these two states. This motion is likely to be a combination of tilting of the RLC relative to the fiber axis and twisting of the RLC about its own axis.

摘要

利用荧光偏振来检测与骨骼肌纤维中肌球蛋白头部结合的两种罗丹明探针的取向变化。鸡胃肌球蛋白调节轻链(RLC)在Cys108处用碘乙酰胺四甲基罗丹明(IATR)的5-异构体或6-异构体进行标记。将标记的RLC(称为Cys108-5或Cys108-6)与来自兔腰大肌的单根去皮纤维中的内源性RLC进行交换。使用三个独立的荧光偏振比来确定探针偶极子相对于纤维轴的静态角分布以及在荧光寿命的纳秒时间尺度上探针运动的程度。我们利用纤维长度的阶跃变化来部分同步肌球蛋白横桥的生化、结构和机械状态之间的转变。主动收缩期间的释放使Cys108-6偶极子倾斜远离纤维轴。对于超过3 nm/半肌节(h.s.)的释放,这种响应达到饱和。主动收缩时的拉伸使偶极子向纤维轴倾斜,对于高达7 nm/h.s.的拉伸没有饱和迹象。对长度变化响应的这些非线性与大约90%的探针在施加长度变化时不倾斜以及10%的探针倾斜的分布情况一致。对于7.5 nm/h.s.的释放,响应部分倾斜约30度,对于更大的释放则穿过垂直于纤维轴的平面。僵直状态下的拉伸使Cys108-6偶极子倾斜远离纤维轴,这与主动收缩时的响应相反。当在Ca2+存在下通过笼状ATP的光解使纤维从僵直状态激活时,从僵直型到主动型对拉伸的响应转变先于主要力的产生。在低离子强度(20 mM)的松弛溶液中,Cys108-6的偏振比与松弛(200 mM离子强度)和僵直强度的组合相兼容,但对长度变化的响应是主动型的。Cys108-6偶极子的纳秒运动被限制在半角约为20度的圆锥内,而Cys108-5偶极子的纳秒运动被限制在半角约为25度的圆锥内。这些值在松弛、主动收缩和僵直之间变化很小。在主动收缩中,Cys108-5在拉伸和释放时都向纤维轴倾斜的幅度非常小,但在僵直状态下倾斜幅度要大得多。这两种探针异构体之间以及主动收缩和僵直之间对长度阶跃响应的显著差异表明,RLC在这两种状态之间经历了大约60度的大角度变化。这种运动可能是RLC相对于纤维轴的倾斜和RLC绕自身轴的扭转的组合。

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