Pestonjamasp K N, Pope R K, Wulfkuhle J D, Luna E J
Worcester Foundation for Biomedical Research, University of Massachusetts Medical Center, Shrewsbury, Massachusetts 01545, USA.
J Cell Biol. 1997 Dec 1;139(5):1255-69. doi: 10.1083/jcb.139.5.1255.
Actin-binding membrane proteins are involved in both adhesive interactions and motile processes. We report here the purification and initial characterization of p205, a 205-kD protein from bovine neutrophil plasma membranes that binds to the sides of actin filaments in blot overlays. p205 is a tightly bound peripheral membrane protein that cosediments with endogenous actin in sucrose gradients and immunoprecipitates. Amino acid sequences were obtained from SDS-PAGE-purified p205 and used to generate antipeptide antibodies, immunolocalization data, and cDNA sequence information. The intracellular localization of p205 in MDBK cells is a function of cell density and adherence state. In subconfluent cells, p205 is found in punctate spots along the plasma membrane and in the cytoplasm and nucleus; in adherent cells, p205 concentrates with E-cadherin at sites of lateral cell-cell contact. Upon EGTA-mediated cell dissociation, p205 is internalized with E-cadherin and F-actin as a component of adherens junctions "rings." At later times, p205 is observed in cytoplasmic punctae. The high abundance of p205 in neutrophils and suspension-grown HeLa cells, which lack adherens junctions, further suggests that this protein may play multiple roles during cell growth, adhesion, and motility. Molecular cloning of p205 cDNA reveals a bipartite structure. The COOH terminus exhibits a striking similarity to villin and gelsolin, particularly in regions known to bind F-actin. The NH2 terminus is novel, but contains four potential nuclear targeting signals. Because p205 is now the largest known member of the villin/gelsolin superfamily, we propose the name, "supervillin." We suggest that supervillin may be involved in actin filament assembly at adherens junctions and that it may play additional roles in other cellular compartments.
肌动蛋白结合膜蛋白参与黏附相互作用和运动过程。我们在此报告p205的纯化及初步特性分析,p205是一种来自牛中性粒细胞质膜的205-kD蛋白,在印迹覆盖实验中可与肌动蛋白丝的侧面结合。p205是一种紧密结合的外周膜蛋白,在蔗糖梯度中与内源性肌动蛋白共沉降并可被免疫沉淀。从SDS-PAGE纯化的p205中获得了氨基酸序列,并用于生成抗肽抗体、免疫定位数据和cDNA序列信息。p205在MDBK细胞中的细胞内定位是细胞密度和黏附状态的函数。在亚汇合细胞中,p205存在于沿质膜以及细胞质和细胞核中的点状区域;在贴壁细胞中,p205与E-钙黏蛋白在细胞间侧面接触部位聚集。在EGTA介导的细胞解离后,p205作为黏附连接“环圈”的一个组分与E-钙黏蛋白和F-肌动蛋白一起内化。在随后的时间里,在细胞质点状区域观察到p205。在缺乏黏附连接的中性粒细胞和悬浮生长的HeLa细胞中p205含量很高,这进一步表明该蛋白可能在细胞生长、黏附和运动过程中发挥多种作用。p205 cDNA的分子克隆揭示了一种二分结构。COOH末端与绒毛蛋白和凝溶胶蛋白具有显著相似性,特别是在已知结合F-肌动蛋白的区域。NH2末端是新的,但含有四个潜在的核靶向信号。由于p205现在是绒毛蛋白/凝溶胶蛋白超家族中已知最大的成员,我们提出将其命名为“超级绒毛蛋白”。我们认为超级绒毛蛋白可能参与黏附连接处的肌动蛋白丝组装,并且可能在其他细胞区室中发挥额外作用。