Piperno G
Rockefeller University, New York 10021.
J Cell Biol. 1988 Jan;106(1):133-40. doi: 10.1083/jcb.106.1.133.
This study of the axoneme led to the identification of a previously unknown adenosine triphosphatase (ATPase), which is likely a major component of inner dynein arms. The ATPase was isolated from a soluble fraction of axonemes obtained from pf 28, a Chlamydomonas mutant lacking the outer dynein arms. The activity hydrolyzed up to 2.3 mumol of ATP.min-1.mg-1 of protein (at pH 7.2, in the presence of both Ca++ and Mg++), had a sedimentation coefficient of 11S in sucrose gradient, and cosedimented with four polypeptides of apparent molecular weight 325,000, 315,000 140,000, and 42,000. Several arguments indicate that the new ATPase is a component of the inner dynein arms. Three or four polypeptides cosedimenting with the activity belong to a group of axonemal components that are deficient in the axonemes of pf 23 and pf 30, two mutants that display different levels of inner dynein arm deficiency. The 42,000 component is axonemal actin, a subunit of two other inner dynein ATPases. The two polypeptides of molecular weight greater than 300,000 have electrophoretic mobility similar to that of high molecular weight components of outer and inner dynein arms. In spite of some similarities each ATPase isolated from inner or outer arms is composed of a different set of polypeptides. Different ATPases may be required for the modulation of localized sliding of adjacent outer double microtubules in the axoneme.
对轴丝的这项研究导致鉴定出一种此前未知的三磷酸腺苷酶(ATP酶),它可能是内动力蛋白臂的主要成分。该ATP酶是从pf 28(一种缺乏外动力蛋白臂的衣藻突变体)的轴丝可溶部分中分离出来的。该酶活性在pH 7.2、同时存在Ca++和Mg++的情况下,每毫克蛋白质每分钟可水解多达2.3微摩尔ATP,在蔗糖梯度中的沉降系数为11S,并与表观分子量为325,000、315,000、140,000和42,000的四种多肽共同沉降。有几个论据表明这种新的ATP酶是内动力蛋白臂的一个组成部分。与该活性共同沉降的三到四种多肽属于一组轴丝成分,在pf 23和pf 30的轴丝中缺乏,这两个突变体表现出不同程度的内动力蛋白臂缺陷。分子量为42,000的成分是轴丝肌动蛋白,是另外两种内动力蛋白ATP酶的一个亚基。分子量大于300,000的两种多肽的电泳迁移率与外动力蛋白臂和内动力蛋白臂的高分子量成分相似。尽管存在一些相似之处,但从内臂或外臂分离出的每种ATP酶都是由不同的多肽组组成。轴丝中相邻外双微管的局部滑动调节可能需要不同的ATP酶。