Murofushi H, Kotani S, Aizawa H, Hisanaga S, Hirokawa N, Sakai H
J Cell Biol. 1986 Nov;103(5):1911-9. doi: 10.1083/jcb.103.5.1911.
A heat-stable microtubule-associated protein (MAP) with molecular weight of 190,000, termed 190-kD MAP, was purified from bovine adrenal cortex. This MAP showed the same level of ability to promote tubulin polymerization as did MAP2 and tau from mammalian brains. Relatively high amounts of 190-kD MAP could bind to microtubules reconstituted in the presence of taxol. At maximum 1 mol of 190-kD MAP could bind to 2.3 mol of tubulin. 190-kD MAP was phosphorylated by a cAMP-dependent protein kinase prepared from sea urchin spermatozoa and by protein kinase(s) present in the microtubule protein fraction prepared from mammalian brains. The maximal numbers of incorporated phosphate were approximately 0.2 and approximately 0.4 mol per mole of 190-kD MAP, respectively. These values were lower than that of MAP2, which could be heavily phosphorylated by the endogenous protein kinase(s) up to 5 mol per mole of MAP2 under the same assay condition. 190-kD MAP had no effects on the low-shear viscosity of actin and did not induce an increase in turbidity of the actin solution. It was also revealed that 190-kD MAP does not cosediment with actin filaments. These data clearly show that, distinct from MAP2 and tau, this MAP does not interact with actin. Electron microscopic observation of the rotary-shadowed images of 190-kD MAP showed the molecular shape to be a long, thin, flexible rod with a contour length of approximately 100 nm. Quick-freeze, deep-etch replicas of the microtubules reconstituted from 190-kD MAP and brain tubulin revealed many cross-bridges connecting microtubules with each other.
从牛肾上腺皮质中纯化出一种分子量为190,000的热稳定微管相关蛋白(MAP),称为190-kD MAP。这种MAP促进微管蛋白聚合的能力水平与哺乳动物脑内的MAP2和tau相同。相对大量的190-kD MAP能与在紫杉醇存在下重构的微管结合。最多1摩尔的190-kD MAP能与2.3摩尔的微管蛋白结合。190-kD MAP可被海胆精子制备的cAMP依赖性蛋白激酶以及哺乳动物脑制备的微管蛋白组分中存在的蛋白激酶磷酸化。每摩尔190-kD MAP的最大磷酸掺入量分别约为0.2摩尔和约0.4摩尔。这些值低于MAP2的值,在相同测定条件下,MAP2可被内源性蛋白激酶大量磷酸化,每摩尔MAP2可达5摩尔。190-kD MAP对肌动蛋白的低剪切粘度没有影响,也不会导致肌动蛋白溶液的浊度增加。还发现190-kD MAP不会与肌动蛋白丝共沉降。这些数据清楚地表明,与MAP2和tau不同,这种MAP不与肌动蛋白相互作用。对190-kD MAP旋转阴影图像的电子显微镜观察显示,分子形状为长而细的柔性杆,轮廓长度约为100 nm。对由190-kD MAP和脑微管蛋白重构的微管进行快速冷冻、深度蚀刻复制品观察,发现许多相互连接微管的交叉桥。