Goto Y, Okamura N, Aimoto S
Department of Biology, Faculty of Science, Osaka University.
J Biochem. 1991 May;109(5):746-50. doi: 10.1093/oxfordjournals.jbchem.a123451.
Although the conformational change occurring in proteins upon ATP binding is important in many biological reactions, the mechanism by which ATP binding induces the conformational change is unknown. We found that ATP induces acid-unfolded (pH 2) ferricytochrome c or apomyoglobin to adopt a compact structure with a significant amount of alpha-helix and increased hydrophobicity. A very similar conformational transition was observed at neutral pH for an amphiphilic model polypeptide. The effectiveness of various adenine nucleotides in inducing the conformational transition was found to be proportional to their phosphate group contents, i.e., adenosine tetraphosphate greater than ATP greater than ADP greater than AMP. These results should be important when considering the mechanism of the ATP-induced conformational change in proteins during various biological reactions.
尽管蛋白质在结合ATP时发生的构象变化在许多生物反应中很重要,但ATP结合诱导构象变化的机制尚不清楚。我们发现ATP能诱导酸变性(pH 2)的高铁细胞色素c或脱辅基肌红蛋白形成具有大量α-螺旋且疏水性增加的紧密结构。对于一种两亲性模型多肽,在中性pH下也观察到了非常相似的构象转变。发现各种腺嘌呤核苷酸诱导构象转变的有效性与其磷酸基团含量成正比,即四磷酸腺苷大于ATP大于ADP大于AMP。在考虑各种生物反应过程中ATP诱导蛋白质构象变化的机制时,这些结果应该是很重要的。