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Effects of C-terminal Truncation of Chaperonin GroEL on the Yield of In-cage Folding of the Green Fluorescent Protein.

机译:伴侣蛋白GroEL C端截短对笼罩折叠绿色荧光蛋白产量的影响。

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摘要

Chaperonin GroEL from Escherichia coli consists of two heptameric rings stacked back-to-back to form a cagelike structure. It assists in the folding of substrate proteins in concert with the co-chaperonin GroES by incorporating them into its large cavity. The mechanism underlying the incorporation of substrate proteins currently remains unclear. The flexible C-terminal residues of GroEL, which are invisible in the x-ray crystal structure, have recently been suggested to play a key role in the efficient encapsulation of substrates. These C-terminal regions have also been suggested to separate the double rings of GroEL at the bottom of the cavity. To elucidate the role of the C-terminal regions of GroEL on the efficient encapsulation of substrate proteins, we herein investigated the effects of C-terminal truncation on GroE-mediated folding using the green fluorescent protein (GFP) as a substrate. We demonstrated that the yield of in-cage folding mediated by a single ring GroEL (SR1) was markedly decreased by truncation, whereas that mediated by a double ring football-shaped complex was not affected. These results suggest that the C-terminal region of GroEL functions as a barrier between rings, preventing the leakage of GFP through the bottom space of the cage. We also found that once GFP folded into its native conformation within the cavity of SR1 it never escaped even in the absence of the C-terminal tails. This suggests that GFP molecules escaped through the pore only when they adopted a denatured conformation. Therefore, the folding and escape of GFP from C-terminally truncated SR1·GroES appeared to be competing with each other.
机译:大肠杆菌的伴侣蛋白GroEL由两个七聚体环背对背堆叠形成笼状结构组成。它通过将陪伴蛋白GroES整合到大腔中来协助其折叠底物蛋白。目前尚不清楚底物蛋白掺入的潜在机制。在X射线晶体结构中不可见的GroEL的柔性C末端残基最近被建议在有效封装基质中起关键作用。还建议这些C末端区域在型腔底部分隔GroEL的双环。为了阐明GroEL C末端区域在有效封装底物蛋白质上的作用,我们在此研究了使用绿色荧光蛋白(GFP)作为底物的C末端截短对GroE介导的折叠的影响。我们证明了由单环GroEL(SR1)介导的笼内折叠的产量由于截短而显着降低,而由双环橄榄球形复合物介导的笼内折叠的产量则不受影响。这些结果表明,GroEL的C端区域可作为环之间的屏障,从而防止GFP通过笼子底部空间泄漏。我们还发现,一旦GFP在SR1的空腔内折叠成其天然构象,即使没有C末端尾巴,它也永远不会逃脱。这表明GFP分子仅当它们采用变性构象时才通过孔逃逸。因此,GFP从C末端截短的SR1·GroES的折叠和逃逸似乎是相互竞争的。

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