Catalysis and Peptide Research Unit, School of Health Sciences , University of KwaZulu-Natal , Durban 4041 , South Africa.
Ansynth PTY LTD , 498 Grove End Drive , South Africa.
J Phys Chem B. 2019 Aug 1;123(30):6389-6400. doi: 10.1021/acs.jpcb.9b02207. Epub 2019 Jul 22.
The Human Immunodeficiency Virus type 1 (HIV-1) protease is a crucial target for HIV/AIDS treatment, and understanding its catalytic mechanism is the basis on which HIV-1 enzyme inhibitors are developed. Several experimental studies have indicated that HIV-1 protease facilitates the cleavage of the Gag and Gag-Pol polyproteins and it is highly selective with regard to the cleaved amino acid precursors and physical parameters. However, the main theoretical principles of substrate specificity and recognition remain poorly understood theoretically. By means of a one-step concerted transition state modeling, the recognition of natural substrates by HIV-1 PR subtypes (B and C-SA) was studied. This was carried out to compare the activation free energies at varying peptide bond regions (scissile and nonscissile) within the polypeptide sequence using ONIOM calculations. We studied both P3-P3' and P5-P5' natural substrate systems. For P3-P3' substrates, excellent recognition was observed for the MA-CA family but not for the RH-IN substrates. Satisfactory recognition for the latter was only observed for the longer sequence (P5-P5') after the substrate was subjected to an MD run to maximize the interaction between the enzyme and the substrate. These results indicate that both sequence and structure are important for correct scissile bond recognition of these natural substrates.
人类免疫缺陷病毒 1 型(HIV-1)蛋白酶是 HIV/AIDS 治疗的关键靶点,了解其催化机制是开发 HIV-1 酶抑制剂的基础。多项实验研究表明,HIV-1 蛋白酶有助于切割 Gag 和 Gag-Pol 多蛋白,并且对切割的氨基酸前体和物理参数具有高度选择性。然而,底物特异性和识别的主要理论原理在理论上仍理解得不够透彻。通过一步协同过渡态建模,研究了 HIV-1 PR 亚型(B 和 C-SA)对天然底物的识别。这是通过使用 ONIOM 计算在多肽序列的不同肽键区域(切割和非切割)来比较活化自由能来进行的。我们研究了 P3-P3'和 P5-P5'天然底物系统。对于 P3-P3'底物,MA-CA 家族得到了很好的识别,但 RH-IN 底物则不然。只有在对底物进行 MD 运行以最大化酶与底物之间的相互作用之后,对于较长的序列(P5-P5'),才能观察到对后者的令人满意的识别。这些结果表明,对于这些天然底物,正确的切割键识别既需要序列也需要结构。