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丝状晶蛋白:一种新的与波形蛋白结合、具有聚合能力且与晶状体纤维细胞膜相关的蛋白质。

Filensin: a new vimentin-binding, polymerization-competent, and membrane-associated protein of the lens fiber cell.

作者信息

Merdes A, Brunkener M, Horstmann H, Georgatos S D

机构信息

Programme of Cell Biology, European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

J Cell Biol. 1991 Oct;115(2):397-410. doi: 10.1083/jcb.115.2.397.

Abstract

We have studied the molecular properties of a 100-kD protein, termed filensin, which we have isolated from porcine lens membranes. Filensin represents a membrane-associated element, resistant to salt and nonionic detergent treatment, and extractable only by alkali or high concentrations of urea. By indirect immunofluorescence and immunoelectron microscopy, this protein can be localized at the periphery of the lens fiber cells. Immunochemical analysis suggests that filensin originates from a larger 110-kD component which is abundantly expressed in lens but not in other tissues. Purified filensin polymerizes in a salt-dependent fashion and forms irregular fibrils (integral of 10 nm in diameter) when reconstituted into buffers of physiological ionic strength and neutral pH. Radiolabeled filensin binds specifically to lens vimentin under isotonic conditions, as demonstrated by affinity chromatography and ligand-blotting assays. By the latter approach, filensin also reacts with a 47-kD peripheral membrane protein of the lens cells. Purified filensin binds to PI, a synthetic peptide modelled after a segment of the COOH-terminal domain of peripherin (a type III intermediate filament protein highly homologous to vimentin), but not to various other peptides including the NH2-terminal headpiece of vimentin and derivatives of its middle (rod) domain. The filensin-PI binding is inhibited by purified lamin B, which is known to interact in vitro with PI (Djabali, K., M.-M. Portier, F. Gros, G. Blobel, and S. D. Georgatos. 1991. Cell. 64:109-121). Finally, limited proteolysis indicates that the filensin-vimentin interaction involves a 30-kD segment of the filensin molecule. Based on these observations, we postulate that the lens fiber cells express a polymerization-competent protein which is tightly associated with the plasma membrane and has the potential to serve as an anchorage site for vimentin intermediate filaments.

摘要

我们研究了一种名为丝纤蛋白的100kD蛋白质的分子特性,该蛋白是我们从猪晶状体膜中分离出来的。丝纤蛋白是一种与膜相关的成分,耐盐和非离子去污剂处理,仅能用碱或高浓度尿素提取。通过间接免疫荧光和免疫电子显微镜观察,该蛋白可定位在晶状体纤维细胞的周边。免疫化学分析表明,丝纤蛋白起源于一种更大的110kD成分,这种成分在晶状体中大量表达,但在其他组织中不表达。纯化的丝纤蛋白以盐依赖的方式聚合,当重构到生理离子强度和中性pH的缓冲液中时,形成不规则的纤维(直径为10nm的整体)。放射性标记的丝纤蛋白在等渗条件下特异性结合晶状体波形蛋白,亲和层析和配体印迹分析证明了这一点。通过后一种方法,丝纤蛋白还与晶状体细胞的一种47kD外周膜蛋白发生反应。纯化的丝纤蛋白与PI结合,PI是一种合成肽,其模型来自外周蛋白(一种与波形蛋白高度同源的III型中间丝蛋白)COOH末端结构域的一段,但不与包括波形蛋白NH2末端头部及其中间(杆状)结构域衍生物在内的各种其他肽结合。丝纤蛋白与PI的结合被纯化的核纤层蛋白B抑制,已知核纤层蛋白B在体外与PI相互作用(贾巴利,K.,M.-M.波捷,F.格罗斯,G.布洛贝尔,和S.D.乔治亚托斯。1991年。《细胞》。64:109 - 121)。最后,有限蛋白酶解表明丝纤蛋白与波形蛋白的相互作用涉及丝纤蛋白分子的一个30kD片段。基于这些观察结果,我们推测晶状体纤维细胞表达一种具有聚合能力的蛋白质,该蛋白质与质膜紧密相关,有潜力作为波形蛋白中间丝的锚定位点。

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The plasma membranes of eye lens fibres. Biochemical and structural characterization.
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Intermediate filament associated proteins.中间丝相关蛋白
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