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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The GroEL chaperonin: a protein machine with pistons driven by ATP binding and hydrolysis
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The GroEL chaperonin: a protein machine with pistons driven by ATP binding and hydrolysis

机译:腹股沟伴侣蛋白:由ATP结合和水解驱动的活塞的蛋白质机器

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In response to the binding of ATP, the two heptameric rings of the GroEL chaperonin protein interact with one another in a negatively cooperative manner. Owing to the helix dipole, the positively charged nitrogen of glycine 88 at the N-terminus of helix D binds to oxygen atoms on the beta and gamma phosphorus atoms of ATP. In apo-GroEL, the nucleotide-binding sites of different rings are connected to one another by the interaction of the epsilon-amino group of lysine 105 of one helix D across the twofold axis with the negatively charged carbonyl oxygen atom of alanine 109 at the C-terminus of the other helix D. Upon binding ATP, the K105-A109 salt bridge breaks and both helices move apart by approximately 3.5 angstrom en bloc toward the ATP. Upon hydrolysis of ATP, the helices return to their original position. The helices thus behave as pistons, their movement being driven by the binding and hydrolysis of ATP.
机译:响应于ATP的结合,腹股沟蛋白蛋白的两种庚烷环以阳性合作方式相互作用。 由于螺旋偶极子,螺旋D的N-末端的甘氨酸88的带正电荷的氮气与β和γ磷原子上的氧原子与ATP的氧原子结合。 在apo-groel中,不同环的核苷酸结合位点通过在双重轴上的双螺旋d的冬硅105的冬季氨基105的相互作用与丙氨酸109的带负电荷的羰基氧原子相互作用而彼此连接 其他螺旋D的C-末端。在结合ATP时,K105-A109盐桥断裂,并且两个螺旋通过大约3.5埃·ZHOC朝向ATP分开。 在ATP的水解后,螺旋返回其原始位置。 因此,螺旋表现为活塞,它们的运动被ATP的结合和水解驱动。

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