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从重组原胶原II体外组装II型胶原的细纤维和粗纤维。粗纤维末端的单体与I型胶原纤维生长末端的单体方向相反。

Assembly in vitro of thin and thick fibrils of collagen II from recombinant procollagen II. The monomers in the tips of thick fibrils have the opposite orientation from monomers in the growing tips of collagen I fibrils.

作者信息

Fertala A, Holmes D F, Kadler K E, Sieron A L, Prockop D J

机构信息

Department of Biochemistry, Jefferson Medical College, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.

出版信息

J Biol Chem. 1996 Jun 21;271(25):14864-9. doi: 10.1074/jbc.271.25.14864.

Abstract

Human type II procollagen was prepared in a recombinant system and cleaved to pC-collagen II by procollagen N-proteinase. The pC-collagen II was then used as a substrate to generate collagen II fibrils by cleavage with procollagen C-proteinase at 37 degrees C. Electron microscopy of the fibrils demonstrated that, at the early stages of fibril assembly, very thin fibrils were formed. As the system approached equilibrium over 7-12 h, however, the thin fibrils were largely but not completely replaced by thick fibrils that had diameters of about 240 nm and a distinct D-period banding pattern. One typical fibril was photographed and analyzed in its entirety. The fibril was 776 D-periods (52 microM) long. It had a central shaft with a uniform diameter that was about 516 D-periods long and two tips of about 100 D-periods each. Most of the central shaft had a symmetrical banding pattern flanked by two transition regions of about 30 D-periods each. Measurements by scanning transmission electron microscopy demonstrated that the mass per unit length from the tips to the shafts increased linearly over approximately 100 D-periods from the fibril end. The linear increase in mass per unit length was consistent with previous observations for collagen I fibrils and established that the tips of collagen II also had a near paraboloidal shape. However, the orientation of monomers in the tips differed from the tips of collagen I fibrils in that the C termini instead of the N termini were directed toward the tips. The thin fibrils that were present at early stages of assembly and at equilibrium were comparable to the collagen II fibrils seen in embryonic tissues and probably represented intermediates on the pathway of thick fibrils formation. The results indicated that the molecular events in the self-assembly of collagen II fibrils are apparently similar to those in self-assembly of collagen I fibrils, but that there are also important differences in the structural information contained in collagen I and collagen II monomers.

摘要

人II型原胶原在重组系统中制备,并被原胶原N蛋白酶切割成pC-胶原II。然后将pC-胶原II用作底物,在37℃下用原胶原C蛋白酶切割以生成胶原II纤维。对这些纤维进行电子显微镜观察表明,在纤维组装的早期阶段,形成了非常细的纤维。然而,随着系统在7 - 12小时内接近平衡,细纤维在很大程度上但并未完全被直径约为240 nm且具有明显D周期条纹模式的粗纤维所取代。拍摄并完整分析了一根典型的纤维。该纤维长776个D周期(52微米)。它有一个直径均匀的中心轴,长约516个D周期,两端各有约100个D周期的尖端。中心轴的大部分具有对称的条纹模式,两侧各有一个约30个D周期的过渡区域。通过扫描透射电子显微镜测量表明,从纤维末端起约100个D周期内,从尖端到轴的单位长度质量呈线性增加。单位长度质量的线性增加与先前对I型胶原纤维的观察结果一致,并确定II型胶原的尖端也具有近似抛物面的形状。然而,尖端中单体的取向与I型胶原纤维的尖端不同,在于C末端而不是N末端指向尖端。在组装早期和平衡时存在的细纤维与胚胎组织中所见的II型胶原纤维相当,可能代表粗纤维形成途径中的中间体。结果表明,II型胶原纤维自组装中的分子事件显然与I型胶原纤维自组装中的分子事件相似,但I型和II型胶原单体所含的结构信息也存在重要差异。

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