Doege K J, Fessler J H
J Biol Chem. 1986 Jul 5;261(19):8924-35.
An early form of procollagen I was found in acetic acid extracts of radioactively labeled chick embryo skull bones. It resembled native procollagen I, but sedimented slightly faster, and its component chains were slightly underhydroxylated and were not disulfide-linked to each other, although its propeptides were internally disulfide-bonded. Pulse-chase experiments showed its conversion to disulfide-linked procollagen. As the same conversion occurred when proline hydroxylation was blocked by 2,2'-dipyridyl, we infer that the formation of this precursor from its component chains does not require collagen triple helix formation. We suggest that interaction between the folded carboxyl propeptides of individual pro-alpha (I) chains is an important step in the formation of this precursor and of procollagen I. Studies of the refolding and association of fully reduced and denatured carboxyl propeptides supported this concept. In the presence of glutathione the correct disulfide bonds could be reestablished, as judged by a mapping of some tryptic peptides. Individual carboxyl propeptides refolded first, and this occurred even in 2 M urea. Recognition between folded carboxyl propeptides occurred only when less than 0.5 M urea was present. The presence of the carboxyl telopeptides was important for trimeric reassembly. Individual propeptides also folded spontaneously during cell-free translation of pro-alpha (I) chains and were recognized by specific antibodies. We consider the role of carboxyl propeptides in the formation of procollagen I molecules and suggest a model of self-assembly, possibly facilitated by interactions with the luminal surface of the rough endoplasmic reticulum.
在放射性标记的鸡胚颅骨的醋酸提取物中发现了一种早期形式的I型前胶原。它类似于天然I型前胶原,但沉降速度稍快,其组成链的羟基化程度略低,且彼此之间没有二硫键连接,尽管其前肽内部存在二硫键。脉冲追踪实验表明它会转化为二硫键连接的前胶原。由于当脯氨酸羟基化被2,2'-联吡啶阻断时也会发生同样的转化,我们推断由其组成链形成这种前体不需要胶原蛋白三螺旋的形成。我们认为单个原α(I)链折叠的羧基前肽之间的相互作用是形成这种前体和I型前胶原的重要步骤。对完全还原和变性的羧基前肽的重折叠和缔合的研究支持了这一概念。在谷胱甘肽存在的情况下,通过一些胰蛋白酶肽段的图谱分析判断,可以重新建立正确的二硫键。单个羧基前肽首先重折叠,甚至在2M尿素中也会发生这种情况。只有当尿素浓度低于0.5M时,折叠的羧基前肽之间才会发生识别。羧基端肽的存在对三聚体重组很重要。在原α(I)链的无细胞翻译过程中,单个前肽也会自发折叠,并被特异性抗体识别。我们考虑了羧基前肽在I型前胶原分子形成中的作用,并提出了一种自我组装模型,可能通过与糙面内质网腔表面的相互作用而促进。