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Distinct actions of cis and trans ATP within the double ring of the chaperonin GroEL

机译:伴侣蛋白GroEL双环内顺式和反式ATP的不同作用

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The chaperonin GroEL is a double-ring structure with a central cavity in each ring that provides an environment for the efficient folding of proteins when capped by the co-chaperone GroES in the presence of adenine nucleotides. Productive folding of the substrate rhodanese has been observed in cis ternary complexes, where GroES and polypeptide are bound to the same ring, formed with either ATP, ADP or non-hydrolysable ATP analogues, suggesting that the specific requirement for ATP is confined to an action in the trans ring that evicts GroES and polypeptide from the cis side. We show here, however, that for the folding of malate dehydrogenase and Rubisco there is also an absolute requirement for ATP in the cis ring, as ADP and AMP-PNP are unable to promote folding. We investigated the specific roles of binding and hydrolysis of ATP in the cis and trans rings using mutant forms of GroEL that bind ATP but are defective in its hydrolysis. Binding of ATP and GroES in cis initiated productive folding inside a highly stable GroEL-ATP-GroES complex. To discharge GroES and polypeptide, ATP hydrolysis in the cis ring was required to form a GroEL-ADP-GroES complex with decreased stability, priming the cis complex for release by ATP binding (without hydrolysis) in the trans ring. These observations offer an explanation of why GroEL functions as a double-ring complex.
机译:伴侣蛋白GroEL是一个双环结构,每个环中都有一个中心腔,当在腺嘌呤核苷酸存在下被伴侣蛋白GroES加帽时,伴侣环为蛋白质的有效折叠提供了环境。已在顺式三元复合物中观察到底物罗丹黄酮的生产性折叠,其中GroES和多肽与由ATP,ADP或不可水解的ATP类似物形成的同一环结合,这表明对ATP的特定要求仅限于一种作用在反式环中从顺侧逐出GroES和多肽。但是,我们在这里表明,苹果酸脱氢酶和Rubisco的折叠也对顺式环中的ATP有绝对的要求,因为ADP和AMP-PNP无法促进折叠。我们使用结合ATP但在其水解中有缺陷的GroEL突变形式,研究了顺式和反式环中ATP的结合和水解的特定作用。 ATP和GroES在顺式中的结合可在高度稳定的GroEL-ATP-GroES复合物中引发生产性折叠。为了释放GroES和多肽,需要顺式环中的ATP水解以形成稳定性降低的GroEL-ADP-GroES复合物,从而引发顺式复合物通过反式环中的ATP结合释放(不水解)。这些观察结果解释了GroEL为什么起双环配合物的作用。

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