Stossel T P, Hartwig J H
J Biol Chem. 1975 Jul 25;250(14):5706-12.
The interactions were analyzed between actin, myosin, and a recently discovered high molecular weight actin-binding protein (Hartwig, J. H., and Stossel, T. P. (1975) J. Biol Chem.250,5696-5705) of rabbit alveolar macrophages. Purified rabbit alveolar macrophage or rabbit skeletal muscle F-actins did not activate the Mg2+ATPase activity of purified rabbit alveolar macrophage myosin unless an additional cofactor, partially purified from macrophage extracts, was added. The Mg2+ATPase activity of cofactor-activated macrophage actomyosin was as high as 0.6 mumol of Pi/mg of myosin protein/min at 37 degrees. The macrophage cofactor increased the Mg2+ATPase activity of rabbit skeletal muscle actomyosin, and calcium regulated the Mg2+ATPase activity of cofactor-activited muscle actomyosin in the presence of muscle troponins and tropomyosin. However, the Mg2+ATPase activity of macrophage actomyosin in the presence of the cofactor was inhibited by muscle control proteins, both in the presence and absence of calcium. The Mg2+ATPase activity of the macrophage actomyosin plus cofactor, whether assembled from purified components or studied in a complex collected from crude macrophage extracts, was not influenced by the presence of absence of calcium ions. Therefore, as described for Acanthamoeba castellanii myosin (Pollard, T. D., and Korn, E. D. (1973) J. Biol. Chem. 248, 4691-4697), rabbit alveolar macrophage myosin requires a cofactor for activation of its Mg2+ATPase activity by F-actin; and no evidence was found for participation of calcium ions in the regulation of this activity. In macrophage extracts containing 0.34 M sucrose, 0.5 mM ATP, and 0.05 M KCl at pH 7.0,the actin-binding protein bound F-actin into bundles with interconnecting bridges. Purified macrophage actin-binding protein in 0.1 M KCl at pH 7.0 also bound purified macrophage F-actin into filament bundles. Macrophage myosin bound to F-actin in the absence but not the presence of Mg2+ATP, but the actin-binding protein did not bind to macrophage myosin in either the presence or absence of Mg2+ATP.
对兔肺泡巨噬细胞中的肌动蛋白、肌球蛋白和最近发现的一种高分子量肌动蛋白结合蛋白(哈特维希,J. H.,和斯托塞尔,T. P.(1975年)《生物化学杂志》250,5696 - 5705)之间的相互作用进行了分析。纯化的兔肺泡巨噬细胞或兔骨骼肌F - 肌动蛋白不会激活纯化的兔肺泡巨噬细胞肌球蛋白的Mg2 + ATP酶活性,除非添加一种从巨噬细胞提取物中部分纯化得到的额外辅助因子。在37℃时,辅助因子激活的巨噬细胞肌动球蛋白的Mg2 + ATP酶活性高达0.6微摩尔无机磷酸/毫克肌球蛋白蛋白/分钟。巨噬细胞辅助因子增加了兔骨骼肌肌动球蛋白的Mg2 + ATP酶活性,并且在存在肌肉肌钙蛋白和原肌球蛋白的情况下,钙调节辅助因子激活的肌肉肌动球蛋白的Mg2 + ATP酶活性。然而,在有或没有钙的情况下,肌肉对照蛋白均抑制存在辅助因子时巨噬细胞肌动球蛋白的Mg2 + ATP酶活性。无论由纯化成分组装而成还是在从粗制巨噬细胞提取物中收集的复合物中进行研究,巨噬细胞肌动球蛋白加辅助因子的Mg2 + ATP酶活性均不受钙离子存在与否的影响。因此,如对卡氏棘阿米巴肌球蛋白所描述的那样(波拉德,T. D.,和科恩,E. D.(1973年)《生物化学杂志》248,4691 - 4697),兔肺泡巨噬细胞肌球蛋白需要一种辅助因子来通过F - 肌动蛋白激活其Mg2 + ATP酶活性;并且未发现钙离子参与该活性调节的证据。在含有0.34 M蔗糖、0.5 mM ATP和0.05 M KCl(pH 7.0)的巨噬细胞提取物中,肌动蛋白结合蛋白将F - 肌动蛋白结合成带有互连桥的束状结构。在pH 7.0的0.1 M KCl中纯化的巨噬细胞肌动蛋白结合蛋白也将纯化的巨噬细胞F - 肌动蛋白结合成细丝束。巨噬细胞肌球蛋白在不存在Mg2 + ATP但存在Mg2 + ATP时不与F - 肌动蛋白结合,但无论存在或不存在Mg2 + ATP时,肌动蛋白结合蛋白均不与巨噬细胞肌球蛋白结合。