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Bcl-2 家族小分子抑制剂的分子动力学研究。

Molecular dynamics study of small molecule inhibitors of the Bcl-2 family.

机构信息

Department of Biochemistry, McGill University, Montreal, Quebec, Canada.

出版信息

Proteins. 2011 Sep;79(9):2624-36. doi: 10.1002/prot.23083. Epub 2011 Jun 30.

DOI:10.1002/prot.23083
PMID:21721047
Abstract

We carried out docking and molecular dynamics simulations on ABT-737 and obatoclax, which are inhibitors of the Bcl-2 family of proteins. We modeled the binding mode of ABT-737 with Bcl-x(L) , Bcl-2, and Mcl-1 and examined their dynamical behavior. We found that the binding of the chlorobiphenyl end of ABT-737 was quite stable across all three proteins. However, the phenylpiperazine linker group was dramatically more mobile in Mcl-1 compared to either Bcl-x(L) or Bcl-2. The S-phenyl group at the p4 binding site was well-anchored in Bcl-x(L) and Bcl-2 but was somewhat more mobile in Mcl-1 although the phenyl ring itself on average stayed close to the p4 binding site in Mcl-1. This greater mobility is likely due to the greater openness of the p3 and p4 binding sites on Mcl-1. The calculated binding free energies were consistent with the much weaker binding affinity of ABT-737 for Mcl-1. Obatoclax was predicted to bind at the p1 and p2 binding sites of Mcl-1 and the binding mode was quite stable during the molecular dynamics simulation with Mcl-1 wrapping around the molecule. The modeled binding mode suggests that obatoclax is able to inhibit all three proteins because it makes use of the p1 and p2 binding sites alone, which is a fairly narrow groove in all three proteins unlike the p4 binding site, which is much broader in Mcl-1.

摘要

我们对 ABT-737 和 obatoclax 进行了对接和分子动力学模拟,这两种化合物都是 Bcl-2 家族蛋白的抑制剂。我们构建了 ABT-737 与 Bcl-x(L)、Bcl-2 和 Mcl-1 的结合模式,并考察了它们的动力学行为。我们发现,ABT-737 的氯联苯端在这三种蛋白中均具有相当稳定的结合方式。然而,苯哌嗪连接基团在 Mcl-1 中比在 Bcl-x(L)或 Bcl-2 中移动性更强。p4 结合位点上的 S-苯基在 Bcl-x(L)和 Bcl-2 中得到了很好的固定,但在 Mcl-1 中稍微更具移动性,尽管苯环本身在 Mcl-1 中平均仍靠近 p4 结合位点。这种更大的移动性可能是由于 Mcl-1 的 p3 和 p4 结合位点更为开放。计算得到的结合自由能与 ABT-737 对 Mcl-1 的结合亲和力较弱相一致。Obatoclax 被预测与 Mcl-1 的 p1 和 p2 结合位点结合,并且在与 Mcl-1 的分子动力学模拟中,其结合模式非常稳定,Mcl-1 环绕分子。模拟的结合模式表明,obatoclax 能够抑制所有三种蛋白,因为它仅利用 p1 和 p2 结合位点,而在所有三种蛋白中,这是一个相当狭窄的凹槽,与 p4 结合位点不同,后者在 Mcl-1 中要宽得多。

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