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阳离子与ATP-G-肌动蛋白上高亲和力和低亲和力位点结合的荧光测量。

Fluorescence measurements of the binding of cations to high-affinity and low-affinity sites on ATP-G-actin.

作者信息

Carlier M F, Pantaloni D, Korn E D

出版信息

J Biol Chem. 1986 Aug 15;261(23):10778-84.

PMID:3814248
Abstract

The binding of cations to ATP-G-actin has been assessed by measuring the kinetics of the increase in fluorescence of N-acetyl-N'-(5-sulfo-1-naphthyl)-ethylenediamine-labeled actin. Ca2+ and Mg2+ compete for a single high-affinity site on ATP-G-actin with KD values of 1.5-15 nM for Ca2+ and 0.1-1 microM for Mg2+, i.e. with affinities 3-4 orders of magnitude higher than previously reported (Frieden, C., Lieberman, D., and Gilbert, H. R. (1980) J. Biol. Chem. 255, 8991-8993). As proposed by Frieden (Frieden, C. (1982) J. Biol. Chem. 257, 2882-2886), the Mg-actin complex undergoes a slow isomerization (Kis = 0.03-0.1) to a higher affinity state (K'D = 4-40 nM). The replacement of Ca2+ by Mg2+ at this high-affinity site causes a slow 10% increase in fluorescence that is 90% complete in about 200 s at saturating concentrations of Mg2+. Independently, Ca2+, Mg2+, and K+ bind to low-affinity sites (KD values of 0.15 mM for Ca2+ and Mg2+ and 10 mM for K+) which causes a rapid 6-8% increase in fluorescence (complete in less than 5 s). We propose that the activation step that converts Ca-G-actin to a polymerizable species upon addition of Mg2+ is the binding of Mg2+ to the low-affinity sites and not the replacement of Ca2+ by Mg2+ at the high-affinity site.

摘要

通过测量N-乙酰-N'-(5-磺基-1-萘基)-乙二胺标记肌动蛋白荧光增加的动力学,评估了阳离子与ATP-G-肌动蛋白的结合情况。Ca2+和Mg2+在ATP-G-肌动蛋白上竞争一个单一的高亲和力位点,Ca2+的KD值为1.5 - 15 nM,Mg2+的KD值为0.1 - 1 μM,即其亲和力比之前报道的高3 - 4个数量级(弗里登,C.,利伯曼,D.,和吉尔伯特,H. R.(1980年)《生物化学杂志》255,8991 - 8993)。如弗里登所提出的(弗里登,C.(1982年)《生物化学杂志》257,2882 - 2886),Mg-肌动蛋白复合物经历缓慢的异构化(Kis = 0.03 - 0.1),转变为更高亲和力状态(K'D = 4 - 40 nM)。在这个高亲和力位点上,Mg2+取代Ca2+会导致荧光缓慢增加10%,在Mg2+饱和浓度下,约200秒内完成90%。另外,Ca2+、Mg2+和K+会结合到低亲和力位点(Ca2+和Mg2+的KD值为0.15 mM,K+的KD值为10 mM),这会导致荧光快速增加6 - 8%(在不到5秒内完成)。我们提出,在添加Mg2+时将Ca-G-肌动蛋白转化为可聚合形式的激活步骤是Mg2+与低亲和力位点的结合,而不是Mg2+在高亲和力位点取代Ca2+。

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