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核心蛋白聚糖及其突变体与I型和VI型胶原蛋白的差异相互作用。

Differential interactions of decorin and decorin mutants with type I and type VI collagens.

作者信息

Nareyeck Gordon, Seidler Daniela G, Troyer David, Rauterberg Jürgen, Kresse Hans, Schönherr Elke

机构信息

Departement of Physiological Chemistry and Pathobiochemistry, University Hospital of Münster, Germany.

出版信息

Eur J Biochem. 2004 Aug;271(16):3389-98. doi: 10.1111/j.1432-1033.2004.04273.x.

Abstract

The small leucine-rich proteoglycan decorin can bind via its core protein to different types of collagens such as type I and type VI. To test whether decorin can act as a bridging molecule between these collagens, the binding properties of wild-type decorin, two full-length decorin species with single amino acid substitutions (DCN E180K, DCN E180Q), which previously showed reduced binding to collagen type I fibrils, and a truncated form of decorin (DCN Q153) to the these collagens were investigated. In a solid phase assay dissociation constants for wild-type decorin bound to methylated, therefore monomeric, triple helical type I collagen were in the order of 10(-10) m, while dissociation constants for fibrillar type I collagen were approximately 10(-9) m. The dissociation constant for type VI was approximately 10(-7) m. Using real-time analysis for a more detailed investigation DCN E180Q and DCN E180K exhibited lower association and higher dissociation constants to type I collagen, compared to wild-type decorin, deviating by at least one order of magnitude. In contrast, the affinities of these mutants to type VI collagen were 10 times higher than the affinity of wild-type decorin (K(D) approximately 10(-8) m). Further investigations verified that complexes of type VI collagen and decorin bound type I collagen and that the affinity of collagen type VI to type I was increased by the presence of decorin. These data show that decorin not only can regulate collagen fibril formation but that it also can act as an intermediary between type I and type VI collagen and that these two types of collagen interact via different binding sites.

摘要

富含亮氨酸的小分子蛋白聚糖核心蛋白聚糖可通过其核心蛋白与不同类型的胶原蛋白结合,如I型和VI型胶原蛋白。为了测试核心蛋白聚糖是否可作为这些胶原蛋白之间的桥梁分子,研究了野生型核心蛋白聚糖、两种具有单个氨基酸取代的全长核心蛋白聚糖(DCN E180K、DCN E180Q,此前显示其与I型胶原纤维的结合减少)以及一种截短形式的核心蛋白聚糖(DCN Q153)与这些胶原蛋白的结合特性。在固相分析中,与甲基化的、因此是单体的三螺旋I型胶原蛋白结合的野生型核心蛋白聚糖的解离常数约为10^(-10) m,而与纤维状I型胶原蛋白结合的解离常数约为10^(-9) m。VI型胶原蛋白的解离常数约为10^(-7) m。使用实时分析进行更详细的研究发现,与野生型核心蛋白聚糖相比,DCN E180Q和DCN E180K与I型胶原蛋白的缔合常数较低,解离常数较高,偏差至少一个数量级。相比之下,这些突变体与VI型胶原蛋白的亲和力比野生型核心蛋白聚糖的亲和力高10倍(K(D)约为10^(-8) m)。进一步的研究证实,VI型胶原蛋白和核心蛋白聚糖的复合物可结合I型胶原蛋白,并且由于核心蛋白聚糖的存在,VI型胶原蛋白与I型胶原蛋白的亲和力增加。这些数据表明,核心蛋白聚糖不仅可以调节胶原纤维的形成,还可以作为I型和VI型胶原蛋白之间的中介,并且这两种类型的胶原蛋白通过不同的结合位点相互作用。

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