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首页> 外文期刊>Biochemistry and Cell Biology >Aldolase-localization in cultured cells: cell-type and substrate-specific regulation of cytoskeletal associations.
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Aldolase-localization in cultured cells: cell-type and substrate-specific regulation of cytoskeletal associations.

机译:醛缩酶在培养细胞中的定位:细胞骨架关联的细胞类型和底物特异性调节。

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摘要

The role of aldolase as a true F- and G-actin binding protein, including modulating actin polymerization, initiating bundling, and giving rise to supramolecular structures that emanate from actin fibrils, has been established using indirect immunofluorescence, permeabilization of XTH-2 cells and keratocytes, and microinjection of fluorescence-labeled aldolase. In addition, binding to intermediate filaments, vimentin, and cytokeratins has been demonstrated. In permeabilized cells in the presence of fructose-1,6-bisphosphate (20-2000 microM) aldolase shifts from association with actin fibres to intermediate filaments. Plenty of free binding sites on microtubules have been revealed by addition of fluorochromed aldolase derived from rabbit skeletal muscle. However, endogenous aldolase was never found associated with microtubules. Differences in actin polymerization in the presence of aldolase as revealed by pyrene-labeled actin fluorimetry and viscosimetry were explained by electron microscopy showing the formation of rod-like structures (10 nm wide, 20-60 nm in length) by association of aldolase with G-actin, which prevents further polymerization. Upon the addition of fructose-1,6-bisphosphate, G-actin-aldolase mixture polymerizes to a higher viscosity and forms stiffer filaments than pure actin of the same concentration.
机译:使用间接免疫荧光,XT​​H-2细胞的透化作用和抗坏血酸作用已经确立了醛缩酶作为真正的F-和G-肌动蛋白结合蛋白的作用,包括调节肌动蛋白聚合,引发束缚以及产生从肌动蛋白原纤维发出的超分子结构。角质形成细胞,以及显微注射荧光标记的醛缩酶。另外,已经证明与中间丝,波形蛋白和细胞角蛋白的结合。在存在1,6-二磷酸果糖(20-2000 microM)的透化细胞中,醛缩酶从与肌动蛋白纤维的缔合转变为中间丝。通过添加衍生自兔骨骼肌的荧光染料醛缩酶可以揭示微管上的大量自由结合位点。但是,从未发现内源性醛缩酶与微管有关。 pyr标记的肌动蛋白荧光法和粘度测定法揭示了在醛缩酶存在下肌动蛋白聚合的差异,电子显微镜显示了醛缩酶与G结合形成的棒状结构(宽10 nm,长20-60 nm)。 -肌动蛋白,防止进一步聚合。加入1,6-二磷酸果糖后,G-肌动蛋白-醛缩酶混合物聚合至更高的粘度,并形成比相同浓度的纯肌动蛋白更坚硬的长丝。

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