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XII型和XIV型胶原蛋白在体外介导带状胶原纤维之间的相互作用,并可能调节细胞外基质的可变形性。

Type XII and XIV collagens mediate interactions between banded collagen fibers in vitro and may modulate extracellular matrix deformability.

作者信息

Nishiyama T, McDonough A M, Bruns R R, Burgeson R E

机构信息

Cutaneous Biology Research Center, Massachusetts General Hospital, Boston 02115.

出版信息

J Biol Chem. 1994 Nov 11;269(45):28193-9.

PMID:7961756
Abstract

Type XII and XIV collagens are very large molecules containing three extended globular domains derived from the amino terminus of each alpha chain and an interrupted triple helix. Both collagens are genetically and immunologically unique and have distinct distributions in many tissues. These collagens localize near the surface of banded collagen fibrils. The function of the molecules is unknown. We have prepared a mixture of native type XII and XIV collagens that is free of contaminating proteins by electrophoretic criteria. In addition, we have purified the collagenase-resistant globular domains of type XII or XIV collagens (XII-NC-3 or XIV-NC-3). In this study, we have investigated the effect of intact type XII and XIV and XII-NC-3 or XIV-NC-3 on the interactions between fibroblasts and type I collagen fibrils. We find that both type XII and XIV collagens promote collagen gel contraction mediated by fibroblasts, even in the absence of serum. The activity is present in the NC-3 domains. The effect is dose-dependent and is inhibited by denaturation. The effect of type XII NC-3 is inhibited by the addition of anti-XII antiserum. To elucidate the mechanism underlying this phenomenon, we examined the effect of XII-NC-3 or XIV-NC-3 on deformability of collagen gels by centrifugal force. XII-NC-3 or XIV-NC-3 markedly promotes gel compression after centrifugation. The effect is also inhibited by denaturation, and the activity of type XII-NC3 is inhibited by the addition of anti-XII antiserum. The results indicate that the effect of XII-NC-3 or XIV-NC-3 on collagen gel contraction by fibroblasts is not due to activation of cellular events but rather results from the increase in mobility of hydrated collagen fibrils within the gel. These studies suggest that collagen types XII and XIV may modulate the biomechanical properties of tissues.

摘要

Ⅻ型和ⅩⅣ型胶原蛋白是非常大的分子,包含三个源自每条α链氨基末端的延伸球状结构域和一个间断的三股螺旋。这两种胶原蛋白在遗传和免疫方面都具有独特性,并且在许多组织中具有不同的分布。这些胶原蛋白定位于带状胶原纤维的表面附近。其分子功能尚不清楚。我们已经制备了一种通过电泳标准不含污染蛋白的天然Ⅻ型和ⅩⅣ型胶原蛋白混合物。此外,我们还纯化了Ⅻ型或ⅩⅣ型胶原蛋白的抗胶原酶球状结构域(Ⅻ-NC-3或ⅩⅣ-NC-3)。在本研究中,我们研究了完整的Ⅻ型和ⅩⅣ型以及Ⅻ-NC-3或ⅩⅣ-NC-3对成纤维细胞与Ⅰ型胶原纤维之间相互作用的影响。我们发现,即使在无血清的情况下,Ⅻ型和ⅩⅣ型胶原蛋白都能促进成纤维细胞介导的胶原凝胶收缩。该活性存在于NC-3结构域中。这种作用是剂量依赖性的,并受到变性的抑制。添加抗Ⅻ抗血清可抑制Ⅻ型NC-3的作用。为了阐明这一现象的潜在机制,我们通过离心力研究了Ⅻ-NC-3或ⅩⅣ-NC-3对胶原凝胶可变形性的影响。Ⅻ-NC-3或ⅩⅣ-NC-3在离心后显著促进凝胶压缩。这种作用也受到变性的抑制,并且添加抗Ⅻ抗血清可抑制Ⅻ-NC3的活性。结果表明,Ⅻ-NC-3或ⅩⅣ-NC-3对成纤维细胞胶原凝胶收缩的作用不是由于细胞事件的激活,而是由于凝胶中含水胶原纤维流动性的增加。这些研究表明,Ⅻ型和ⅩⅣ型胶原蛋白可能调节组织的生物力学特性。

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