Bulinski J C, Borisy G G
J Biol Chem. 1980 Dec 10;255(23):11570-6.
We have attempted a biochemical characterization of the microtubule-associated proteins (MAPs) of cultured HeLa cells. The HeLa MAPs consist of a group of three polypeptides of 200,000 to 220,000 molecular weight (the 210K MAP) and a protein of 125,000 molecular weight (the 125K MAP). The solution properties of the HeLa MAPs were examined using molecular sieve chromatography and sucrose gradient sedimentation. With both analytical procedures, the 125K and 210K MAPs behaved independently of one another. The effects of each of the MAPs on microtubule polymerization were also studied. Both the 125K and 210K MAPs stimulated the polymerization of pure tubulin. The effect of high levels of MAPs on microtubule polymerization was also examined. Increasing the concentration of MAPs at a constant tubulin concentration increased both the rate and extent of microtubule polymerization. The 125K and 210K MAPs showed independent behavior with respect to binding to microtubules. The 210K MAP saturated its binding sites at a level of 14.0% (210K MAP:tubulin in polymer, w/w), while the 125K MAP showed no saturation even at a level of 18.3%. These results demonstrate that the 125K and 210K MAPs are distinct molecular species, differing in their solution properties and their binding to microtubules. The 210K MAP showed some similarities and some differences when compared to the porcine brain high molecular weight MAP. The HeLa MAPs, although showing some properties similar to brain MAPs, are nevertheless distinctive in several respects and may best be considered as separate though possibly related species.
我们已尝试对培养的HeLa细胞的微管相关蛋白(MAPs)进行生化特性分析。HeLa MAPs由一组分子量为200,000至220,000的三种多肽(210K MAP)和一种分子量为125,000的蛋白质(125K MAP)组成。使用分子筛色谱法和蔗糖梯度沉降法研究了HeLa MAPs的溶液性质。在这两种分析方法中,125K和210K MAPs的行为相互独立。还研究了每种MAPs对微管聚合的影响。125K和210K MAPs均刺激了纯微管蛋白的聚合。还研究了高水平MAPs对微管聚合的影响。在微管蛋白浓度恒定的情况下增加MAPs的浓度,会增加微管聚合的速率和程度。125K和210K MAPs在与微管结合方面表现出独立行为。210K MAP在14.0%的水平(聚合物中210K MAP:微管蛋白,w/w)时饱和其结合位点,而125K MAP即使在18.3%的水平也未显示饱和。这些结果表明,125K和210K MAPs是不同的分子种类,在溶液性质和与微管的结合方面存在差异。与猪脑高分子量MAP相比,210K MAP表现出一些相似之处和一些差异。HeLa MAPs虽然表现出一些与脑MAPs相似的特性,但在几个方面仍有独特之处,最好被视为虽可能相关但却是独立的种类。