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Procollagen Triple Helix Assembly: An Unconventional Chaperone-Assisted Folding Paradigm

机译:Procollagen三重螺旋组件:非常规的伴侣辅助折叠范例

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摘要

Fibers composed of type I collagen triple helices form the organic scaffold of bone and many other tissues, yet the energetically preferred conformation of type I collagen at body temperature is a random coil. In fibers, the triple helix is stabilized by neighbors, but how does it fold? The observations reported here reveal surprising features that may represent a new paradigm for folding of marginally stable proteins. We find that human procollagen triple helix spontaneously folds into its native conformation at 30–34°C but not at higher temperatures, even in an environment emulating Endoplasmic Reticulum (ER). ER-like molecular crowding by nonspecific proteins does not affect triple helix folding or aggregation of unfolded chains. Common ER chaperones may prevent aggregation and misfolding of procollagen C-propeptide in their traditional role of binding unfolded polypeptide chains. However, such binding only further destabilizes the triple helix. We argue that folding of the triple helix requires stabilization by preferential binding of chaperones to its folded, native conformation. Based on the triple helix folding temperature measured here and published binding constants, we deduce that HSP47 is likely to do just that. It takes over 20 HSP47 molecules to stabilize a single triple helix at body temperature. The required 50–200 µM concentration of free HSP47 is not unusual for heat-shock chaperones in ER, but it is 100 times higher than used in reported in vitro experiments, which did not reveal such stabilization.
机译:由I型胶原三重螺旋构成的纤维形成了骨骼和许多其他组织的有机支架,但在体温上I型胶原在能量上优选的构象是无规卷曲。在纤维中,三重螺旋由邻居稳定,但是如何折叠?此处报道的观察结果揭示了令人惊讶的特征,这些特征可能代表了折叠边缘稳定蛋白的新范例。我们发现,即使在模拟内质网(ER)的环境中,人类原胶原三重螺旋在30–34°C时自然折叠成其天然构象,但在较高温度下不会折叠。非特异性蛋白引起的ER样分子拥挤不会影响三螺旋折叠或未折叠链的聚集。常见的ER伴侣可能以其传统的结合未折叠多肽链的作用阻止前胶原C肽的聚集和错误折叠。但是,这种结合只会进一步破坏三重螺旋的稳定性。我们认为三重螺旋的折叠需要通过分子伴侣与其折叠的天然构象的优先结合来稳定。基于此处测得的三螺旋折叠温度和公布的结合常数,我们推断HSP47可能会做到这一点。它需要20多个HSP47分子才能在体温下稳定单个三螺旋。 ER中热休克分子伴侣所需的50-200 µM游离HSP47浓度并不罕见,但比报道的体外实验高100倍,后者没有显示出这种稳定性。

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