Glenney J R, Glenney P, Osborn M, Weber K
Cell. 1982 Apr;28(4):843-54. doi: 10.1016/0092-8674(82)90063-0.
A high molecular weight protein from the brush border of chicken intestinal epithelial cells has been purified. This protein (TW 260/240), a complex of two polypeptides with apparent molecular weights of 260,000 and 240,000, accounts for a significant amount of the terminal web organization. TW 260/240 is an F-actin-binding protein that also interacts with calmodulin. Rotary shadowing reveals long flexible rods of double-stranded morphology tightly connected at each end. TW 260/240 is quite distinct from smooth muscle filamin and macrophage actin-binding protein (APB), but, in spite of its higher contour length (265 nm), seems to be related to erythrocyte spectrin (194 nm for the tetramer). Immunofluorescence microscopy with antibodies against TW 260/240 indicates the existence of a submembranous organization distinctly different from that of stress fibers. We have compared TW 260/240 with fodrin, a brain protein known to occur in submembranous organization but not previously characterized in molecular terms. TW 260/240 and fodrin are clearly distinct molecules but are similar in many aspects. Ultrastructural, biochemical and immunological results indicate three distinct classes of rod-like high molecular weight actin-binding proteins, possibly reflected by the prototypes filamin (ABP), spectrin and TW 260/240 (fodrin). The latter group may be responsible for calmodulin control of submembranous microfilament structures in various nonmuscle cells.
一种来自鸡肠上皮细胞刷状缘的高分子量蛋白质已被纯化。这种蛋白质(TW 260/240)是由两条表观分子量分别为260,000和240,000的多肽组成的复合物,在终末网结构中占相当大的比例。TW 260/240是一种F-肌动蛋白结合蛋白,也与钙调蛋白相互作用。旋转阴影显示出双链形态的长而柔韧的杆状结构,两端紧密相连。TW 260/240与平滑肌细丝蛋白和巨噬细胞肌动蛋白结合蛋白(APB)有很大不同,但是,尽管其轮廓长度更长(265纳米),似乎与红细胞血影蛋白有关(四聚体为194纳米)。用抗TW 260/240抗体进行免疫荧光显微镜检查表明,存在一种与应力纤维明显不同的膜下组织结构。我们将TW 260/240与 fodrin进行了比较,fodrin是一种已知存在于膜下组织但以前未在分子层面进行表征的脑蛋白。TW 260/240和fodrin显然是不同的分子,但在许多方面相似。超微结构、生化和免疫学结果表明存在三类不同的杆状高分子量肌动蛋白结合蛋白,可能以细丝蛋白(ABP)、血影蛋白和TW 260/240(fodrin)为原型。后一组可能负责钙调蛋白对各种非肌肉细胞中膜下微丝结构的控制。