基膜大硫酸肝素蛋白多糖的可视化。

G W Laurie, S Inoue, J T Bing, J R Hassell
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引用次数: 46

摘要

采用Kleinschmidt扩散法、阴性染色法和旋转阴影法在电镜下观察大形态(基底膜)硫酸肝素蛋白多糖。硫酸乙酰肝素蛋白聚糖由两部分组成:核心蛋白和从核心蛋白一端伸出的糖胺聚糖侧链。核心蛋白通常呈s形棒状,沿其长度约有6个小球体。在通过肝素酶处理(“400 kda的核心”)去除侧链的核心蛋白制备中,以及从核心蛋白一端衍生的200 kda的胰蛋白酶片段(“P200”)中,也观察到类似的特征。核心蛋白对冻干敏感,对检测方法也明显敏感,在Kleinschmidt扩散(长度平均值= 52 nm)后浓缩,在阴性染色(长度平均值= 83 nm)或旋转阴影(长度平均值= 87 nm)后延伸;400-kDa芯长= 80 nm;P200长度平均值= 44 nm)。两个或三个糖胺聚糖侧链(长度平均值= 146 +/- 53 nm)连接在核心蛋白的一端。侧链经常出现缠结或合并在一起。因此,基膜上的大硫酸肝素蛋白多糖是一种不对称分子,其核心蛋白含有球状结构域和末端附着的侧链。这种结构与先前酶解预测的结构一致,也与基膜中的取向一致,即核心蛋白结合在致密层中,而透明层中的硫酸肝素侧链沿着基膜表面排列。
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Visualization of the large heparan sulfate proteoglycan from basement membrane.

Kleinschmidt spreading, negative staining, and rotary shadowing were used to examine the large form of (basement membrane) heparan sulfate proteoglycan in the electron microscope. Heparan sulfate proteoglycan was visualized as consisting of two parts: the core protein and, emerging from one end of the core protein, the glycosaminoglycan side chains. The core protein usually appeared as an S-shaped rod with about six globules along its length. Similar characteristics were observed in preparations of core protein in which the side chains had been removed by heparitinase treatment ("400-kDa core") as well as in a 200-kDa trypsin fragment ("P200") derived from one end of the core protein. The core protein was sensitive to lyophilization and apparently also to the method of examination, being condensed following Kleinschmidt spreading (length means = 52 nm) and extended following negative staining (length means = 83 nm) or rotary shadowing (length means = 87 nm; 400-kDa core length means = 80 nm; P200 length means = 44 nm). Two or three glycosaminoglycan side chains (length means = 146 +/- 53 nm) were attached to one end of the core protein. The side chains often appeared tangled or to merge together as one. Thus, the large heparan sulfate proteoglycan from basement membrane is an asymmetrical molecule with a core protein containing globular domains and terminally attached side chains. This structure is in keeping with that previously predicted by enzymatic digestions and with the proposed orientation in basement membranes, i.e., the core protein bound in the lamina densa and the heparan sulfate side chains in the lamina lucida arranged along the surface of the basement membranes.

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