首页> 美国卫生研究院文献>The EMBO Journal >The C-propeptide domain of procollagen can be replaced with a transmembrane domain without affecting trimer formation or collagen triple helix folding during biosynthesis.
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The C-propeptide domain of procollagen can be replaced with a transmembrane domain without affecting trimer formation or collagen triple helix folding during biosynthesis.

机译:胶原蛋白的C-肽结构域可以被跨膜结构域取代而不会影响生物合成过程中的三聚体形成或胶原三螺旋折叠。

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摘要

The folding and assembly of procollagen occurs within the cell through a series of discrete steps leading to the formation of a stable trimer consisting of three distinct domains: the N-propeptide, the C-propeptide and the collagen triple helix flanked at either end by short telopeptides. We have established a semi-permeabilized cell system which allows us to study the initial stages in the folding and assembly of procollagen as they would occur in the intact cell. By studying the folding and assembly of the C-propeptide domain in isolation, and a procollagen molecule which lacks the C-propeptide, we have shown that this domain directs the initial association event and is required to allow triple helix formation. However, the essential function of this domain does not include triple helix nucleation or alignment, since this can occur when the C-propeptide is substituted with a single transmembrane domain. Also the telopeptide region is not involved in triple helix nucleation; however, a minimum of two hydroxyproline-containing Gly-X-Y triplets at the C-terminal end of the triple helix are required for nucleation to occur. Thus, the C-propeptide is required solely to ensure association of the monomeric chains; once these are brought together, the triple helix is able to nucleate and fold to form a correctly aligned triple helix.
机译:前胶原蛋白的折叠和组装通过一系列不连续的步骤在细胞内发生,导致形成稳定的三聚体,该三聚体由三个不同的域组成:N-前肽,C-前肽和胶原蛋白三螺旋,两端均短接端肽。我们已经建立了一个半透化细胞系统,该系统使我们能够研究原胶原折叠和组装的初始阶段,因为它们会在完整细胞中发生。通过单独研究C-前肽域的折叠和组装以及缺乏C-前肽的胶原蛋白分子,我们表明该域指导了初始缔合事件,并且需要允许三螺旋的形成。但是,该结构域的基本功能不包括三螺旋成核或排列,因为当C-肽被单个跨膜结构域取代时,可能会发生这种情况。另外,端肽区域不参与三螺旋成核。然而,在三螺旋的C末端至少需要两个含羟基脯氨酸的Gly-X-Y三胞胎才能发生成核作用。因此,仅需要C-前肽以确保单体链的缔合。一旦这些结合在一起,三重螺旋就可以成核并折叠以形成正确排列的三重螺旋。

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