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使用一种新型的磷酸盐荧光探针测量相关兔骨骼肌肌动球蛋白催化三磷酸核苷裂解和磷酸盐释放步骤的动力学。

Kinetics of nucleoside triphosphate cleavage and phosphate release steps by associated rabbit skeletal actomyosin, measured using a novel fluorescent probe for phosphate.

作者信息

White H D, Belknap B, Webb M R

机构信息

Department of Biochemistry, Eastern Virginia Medical School, Norfolk, Virginia 23507, USA.

出版信息

Biochemistry. 1997 Sep 30;36(39):11828-36. doi: 10.1021/bi970540h.

Abstract

We have measured the kinetics of inorganic phosphate (Pi) release during a single turnover of actomyosin nucleoside triphosphate (NTP) hydrolysis using a double-mixing stopped-flow spectrofluorometer, at very low ionic strength to increase the affinity of myosin-ATP and myosin-ADP-Pi to actin. Myosin subfragment 1 and a series of nucleoside triphosphates were mixed and incubated for approximately 1-10 s to allow NTP to bind to myosin and generate a steady state mixture of myosin-NTP and myosin-NDP-Pi. The steady state intermediates were then mixed with actin. The kinetics of Pi release were measured using a fluorescent probe for Pi, based on a phosphate binding protein [Brune et al. (1994) Biochemistry 33, 8262-8271]. These data are correlated with quenched-flow data, where the extent of the rapid burst of hydrolysis during the first turnover of ATP hydrolysis was followed by chemical quenching of the reaction mix at various times after rapidly mixing ATP and myosin subfragment 1. From the double-mixing actomyosin measurements, the kinetics of Pi release are biphasic. The fast phase corresponds to Pi release from the associated actomyosin-ADP-Pi complex. The slow phase measures the rate of the cleavage step on associated actomyosin. At saturating actin, there is a correlation between the amplitude of the fast phase and the size of the Pi burst observed by quenched flow in the absence of actin: the size of this phase corresponds to the amount of myosin-ADP-Pi formed during the first mix. For ATP at 20 degrees C the rate of the Pi release step is 75 (+/-5) s-1, 25-fold larger than the cleavage step, which is the rate-limiting step of actomyosin ATP hydrolysis at saturating actin. The rate constant of Pi release varies only slightly with nucleoside structure. The rate constant of the slow phase of the Pi release (measuring cleavage) is highly dependent upon the structure of the NTP substrate.

摘要

我们使用双混合停流荧光分光光度计,在极低离子强度下测量了肌动球蛋白核苷三磷酸(NTP)水解单次周转过程中无机磷酸(Pi)释放的动力学,以增加肌球蛋白 - ATP和肌球蛋白 - ADP - Pi对肌动蛋白的亲和力。将肌球蛋白亚片段1与一系列核苷三磷酸混合并孵育约1 - 10秒,以使NTP与肌球蛋白结合,并产生肌球蛋白 - NTP和肌球蛋白 - NDP - Pi的稳态混合物。然后将稳态中间体与肌动蛋白混合。基于磷酸盐结合蛋白,使用Pi的荧光探针测量Pi释放的动力学[Brune等人(1994年)《生物化学》33卷,8262 - 8271页]。这些数据与猝灭流数据相关,在猝灭流实验中,在快速混合ATP和肌球蛋白亚片段1后的不同时间,通过化学猝灭反应混合物来跟踪ATP水解首次周转期间快速水解爆发的程度。从双混合肌动球蛋白测量中可知,Pi释放的动力学是双相的。快速相对应于从相关的肌动球蛋白 - ADP - Pi复合物中释放Pi。缓慢相测量相关肌动球蛋白上裂解步骤的速率。在肌动蛋白饱和时,快速相的幅度与在无肌动蛋白情况下通过猝灭流观察到的Pi爆发大小之间存在相关性:该相的大小对应于第一次混合期间形成的肌球蛋白 - ADP - Pi的量。对于20℃下的ATP,Pi释放步骤的速率为75(±5)s⁻¹,比裂解步骤快25倍(裂解步骤是肌动球蛋白ATP水解在肌动蛋白饱和时的限速步骤)。Pi释放的速率常数仅随核苷结构略有变化。Pi释放缓慢相(测量裂解)的速率常数高度依赖于NTP底物的结构。

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