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通过密度梯度超速离心法分离人滑液透明质酸并评估其蛋白质含量。

Isolation of human synovial-fluid hyaluronate by density-gradient ultracentrifugation and evaluation of its protein content.

作者信息

Scher I, Hamerman D

出版信息

Biochem J. 1972 Mar;126(5):1073-80. doi: 10.1042/bj1261073.

Abstract
  1. A compound of hyaluronate and protein, called hyaluronate-protein was isolated from pooled human synovial fluids by caesium chloride density-gradient ultracentrifugation. 2. The isolated hyaluronate-protein was labelled with [(125)I]iodide and the following studies were done. (a) Ultracentrifugation in caesium chloride showed that the protein moiety ((125)I counts) and hyaluronate (hexuronate) sedimented together in the middle of the gradient. (b) The labelled hyaluronate-protein was treated with trypsin, and ultracentrifugation showed that peptide fragments ((125)I counts) were dispersed throughout the gradient, indicating proteolytic digestion. Hyaluronate sedimented in the middle of the gradient. (c) The labelled hyaluronate-protein was digested with streptococcal hyaluronidase, and ultracentrifugation showed that hyaluronate fragments were dispersed throughout the gradient, indicating digestion of the polysaccharide. The protein moiety, without attached hyaluronate, now sedimented at the top of the gradient. (d) Ultracentrifugation of labelled hyaluronate-protein in 4m-guanidinium chloride showed that protein and hyaluronate sedimented together. 3. These studies confirm that hyaluronate is combined with a small quantity of protein in normal human synovial fluid. A mild method for the rapid isolation of hyaluronate-protein in good yield is described.
摘要
  1. 从汇集的人滑液中通过氯化铯密度梯度超速离心法分离出一种透明质酸盐与蛋白质的复合物,称为透明质酸盐 - 蛋白质。2. 将分离出的透明质酸盐 - 蛋白质用[(125)I]碘化物标记,并进行了以下研究。(a)在氯化铯中进行超速离心表明,蛋白质部分((125)I计数)和透明质酸盐(己糖醛酸)在梯度的中部一起沉降。(b)用胰蛋白酶处理标记的透明质酸盐 - 蛋白质,超速离心表明肽片段((125)I计数)分散在整个梯度中,表明发生了蛋白水解消化。透明质酸盐在梯度的中部沉降。(c)用链球菌透明质酸酶消化标记的透明质酸盐 - 蛋白质,超速离心表明透明质酸盐片段分散在整个梯度中,表明多糖被消化。没有连接透明质酸盐的蛋白质部分现在沉降在梯度的顶部。(d)在4m - 氯化胍中对标记的透明质酸盐 - 蛋白质进行超速离心表明蛋白质和透明质酸盐一起沉降。3. 这些研究证实,在正常人滑液中透明质酸盐与少量蛋白质结合。描述了一种温和的方法,可快速且高产率地分离透明质酸盐 - 蛋白质。

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