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磷酸化对水中GSSS肽构象的影响:红外、振动圆二色性和圆二色性实验以及与分子动力学模拟的比较

Phosphorylation effect on the GSSS peptide conformation in water: infrared, vibrational circular dichroism, and circular dichroism experiments and comparisons with molecular dynamics simulations.

作者信息

Lee Kyung-Koo, Joo Cheonik, Yang Seongeun, Han Hogyu, Cho Minhaeng

机构信息

Department of Chemistry, Korea University, Seoul 136-701, Korea and Center for Multidimensional Spectroscopy, Korea University, Seoul 136-701, Korea.

出版信息

J Chem Phys. 2007 Jun 21;126(23):235102. doi: 10.1063/1.2738472.

Abstract

The phosphorylation effect on the small peptide conformation in water has not been clearly understood yet, despite the widely acknowledged notion that control of protein activity by phosphorylation works mainly by inducing conformational change. To elucidate the detailed mechanism, we performed infrared (IR) absorption and vibrational and electronic circular dichroism studies of both unphosphorylated and phosphorylated tetrapeptides, GSSS 1 and GSSpS 2. The solution structure of the tetrapeptide is found to be little dependent on the presence of the neutral or negatively charged phosphoryl group, and to be a mixture of extended structures including polyproline II (PII) and beta-sheet conformations. The additional band at 1598 cm(-1) in the amide I IR spectrum of the phosphorylated peptide GSSpS at neutral pD appears to be clear spectroscopic evidence for direct intramolecular hydrogen-bonding interaction between the side chain dianionic phosphoryl group and the backbone amide proton. On the basis of amide I IR band analyses, the authors found that the probability of finding the phosphoryl group strongly H bonded to the backbone proton in GSSpS is about 43% at pD 7.0 and 37 degrees C. Such a H-bonding interaction in GSSpS has the biological standard enthalpy and entropy of -15.1 kJ/mol and -51.2 J/K mol, respectively. Comparisons between the experimentally measured IR and VCD spectra and the numerically simulated ones suggested that the currently available force field parameters need to be properly modified. The results in this paper may shed light on an unknown mechanism of controlling the peptide conformation by phosphorylation.

摘要

尽管人们普遍认为磷酸化对蛋白质活性的调控主要是通过诱导构象变化来实现的,但磷酸化对水中小肽构象的影响尚未得到明确的理解。为了阐明详细的机制,我们对未磷酸化和磷酸化的四肽GSSS 1和GSSpS 2进行了红外(IR)吸收、振动和电子圆二色性研究。发现四肽的溶液结构几乎不依赖于中性或带负电荷的磷酰基的存在,而是包括多聚脯氨酸II(PII)和β-折叠构象在内的伸展结构的混合物。在中性pD条件下,磷酸化肽GSSpS的酰胺I红外光谱中1598 cm(-1)处的附加谱带似乎是侧链双阴离子磷酰基与主链酰胺质子之间直接分子内氢键相互作用的明确光谱证据。基于酰胺I红外谱带分析,作者发现在pD 7.0和37℃时,GSSpS中磷酰基与主链质子强烈氢键结合的概率约为43%。GSSpS中的这种氢键相互作用的生物标准焓和熵分别为-15.1 kJ/mol和-51.2 J/K mol。实验测量的红外和VCD光谱与数值模拟光谱之间的比较表明,目前可用的力场参数需要适当修改。本文的结果可能有助于揭示磷酸化控制肽构象的未知机制。

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