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使用从头算力场和广泛采样评估碱基-氨基酸相互作用的自由能景观。

Evaluation of free energy landscape for base-amino acid interactions using ab initio force field and extensive sampling.

作者信息

Yoshida T, Nishimura T, Aida M, Pichierri F, Gromiha M M, Sarai A

机构信息

Department of Chemistry, Graduate School of Science, Hiroshima University, Higashi-Hiroshima 739-8526, Japan.

出版信息

Biopolymers. 2001;61(1):84-95. doi: 10.1002/1097-0282(2001)61:1<84::AID-BIP10045>3.0.CO;2-X.

Abstract

Structural data of protein-DNA complex show redundancy and flexibility in base-amino acid interactions. To understand the origin of the specificity in protein-DNA recognition, we calculated the interaction free energy, enthalpy, entropy, and minimum energy maps for AT-Asn, GC-Asn, AT-Ser, and GC-Ser by means of a set of ab initio force field with extensive conformational sampling. We found that the most preferable interactions in these pairs are stabilized by hydrogen bonding, and are mainly enthalpy driven. However, minima in the free energy maps are not necessarily the same as those in the minimum energy map or enthalpy maps, due to the entropic effect. The effect of entropy is particularly important in the case of GC-Asn. Experimentally observed structures of base-amino acid interactions are within preferable regions in the calculated free energy maps, where there are many different interaction configurations with similar energy. The full geometry optimization procedure using ab initio molecular orbital method was applied to get the optimal interaction geometries for AT-Asn, GC-Asn, AT-Ser, and GC-Ser. We found that there are various base-amino acid combinations with similar interaction energies. These results suggest that the redundancy and conformational flexibility in the base-amino acid interactions play an important role in the protein-DNA recognition.

摘要

蛋白质 - DNA 复合物的结构数据显示了碱基 - 氨基酸相互作用中的冗余性和灵活性。为了理解蛋白质 - DNA 识别特异性的起源,我们通过一组具有广泛构象采样的从头算力场,计算了 AT - Asn、GC - Asn、AT - Ser 和 GC - Ser 的相互作用自由能、焓、熵以及最小能量图。我们发现这些对中最有利的相互作用通过氢键得以稳定,并且主要由焓驱动。然而,由于熵效应,自由能图中的最小值不一定与最小能量图或焓图中的最小值相同。熵效应在 GC - Asn 的情况下尤为重要。实验观察到的碱基 - 氨基酸相互作用结构处于计算出的自由能图中的有利区域内,在该区域存在许多具有相似能量的不同相互作用构型。使用从头算分子轨道方法的完整几何优化程序被应用于获取 AT - Asn、GC - Asn、AT - Ser 和 GC - Ser 的最佳相互作用几何结构。我们发现存在各种具有相似相互作用能的碱基 - 氨基酸组合。这些结果表明,碱基 - 氨基酸相互作用中的冗余性和构象灵活性在蛋白质 - DNA 识别中起着重要作用。

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