透明胡椒植物化学物质对特定金属蛋白酶靶点的皮肤抗衰老潜力:一种计算机方法

IF 3.4 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Babatunji Emmanuel Oyinloye, Emmanuel Ayodeji Agbebi, Oluwaseun Emmanuel Agboola, Chukwudi Sunday Ubah, Olutunmise Victoria Owolabi, Raphael Taiwo Aruleba, Sunday Amos Onikanni, Jerius Nkwuda Ejeje, Basiru Olaitan Ajiboye, Olaposi Idowu Omotuyi
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引用次数: 0

摘要

皮肤老化和皱纹的形成在很大程度上是由酪氨酸酶、弹性酶和胶原酶等酶的过度表达影响的。本研究旨在验证透明胡椒(Peperomia pellucida, PP)植物化学物质的皮肤抗衰老特性及其作用机制。先前从PP中鉴定的化合物从PubChem数据库中检索,并使用Schrödinger的Maestro 11.5和AutoDock工具与酪氨酸酶、弹性酶和胶原酶的活性位点对接,以预测具有最佳抑制潜力的化合物,以阻断这些酶以防止皮肤老化。结果表明,我们的化合物具有良好的亲和力,并且在这些酶的活性位点上显示出与标准酶相似的关键相互作用。对于弹性蛋白酶,我们观察到与S1亚袋中的氨基酸(特别是ALA-181),锌螯合和组氨酸残基的关键相互作用,这是抑制活性和配体稳定性的关键。被击中的化合物与胶原酶的关键氨基酸(LEU-185和ALA-186)形成氢键;与合成的对照化合物(- 12.00 Kcal/mol, 1.67 nM)相比,邻苯二酚和帕图洛苷B具有更好的对接分数和抑制常数(Ki)(分别为- 12.36 Kcal/mol, 0.87 nM和- 12.06 Kcal/mol, 1.45 nM)。对于酪氨酸酶,我们的对接分数和Ki值都优于曲酸,其中patuloside B和原花青素的最佳值分别为- 9.43 Kcal/mol, 121.40 nM和- 9.32 Kcal/mol, 193.48 nM(曲酸= - 8.19 Kcal/mol, 898.03 nM)。基于这项研究,我们提出acacetin,原花青素,phenlophene, patulosides A和B, palmitic acid和hexahydroxydiphenic acid是PP对皮肤抗衰老作用的原因,并且它们通过对这些酶的多靶点抑制协同作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Skin Anti-Aging Potentials of Phytochemicals from Peperomia pellucida against Selected Metalloproteinase Targets: An In Silico Approach
Skin aging and wrinkle formation are processes that are largely influenced by the overexpression of enzymes like tyrosinase, elastase, and collagenase. This study aimed to validate the skin anti-aging properties of phytochemicals from Peperomia pellucida (PP) as well as its attendant mechanism of action. Compounds previously characterized from PP were retrieved from the PubChem database and docked to the active sites of tyrosinase, elastase, and collagenase using Schrödinger’s Maestro 11.5 and AutoDock tools to predict compounds with the best inhibitory potential to block these enzymes in preventing skin aging. It was observed that our hit compounds had favorable affinity and displayed key interactions at the active sites of these enzymes similar to those of the standards. With elastase, we observed key interactions with the amino acids in the S1 sub-pocket (especially ALA-181), Zn chelation, and histidine residues, which are key for inhibitory activity and ligand stability. The hit compounds showed H-bonds with the key amino acids of collagenase, including LEU-185 and ALA-186; phlobaphene and patuloside B were found to have better docking scores and inhibition constants (Ki) (−12.36 Kcal/mol, 0.87 nM and −12.06 Kcal/mol, 1.45 nM, respectively) when compared with those of the synthetic reference compound (−12.00 Kcal/mol, 1.67 nM). For tyrosinase, our hit compounds had both better docking scores and Ki values than kojic acid, with patuloside B and procyanidin having the best values of −9.43 Kcal/mol, 121.40 nM and −9.32 Kcal/mol, 193.48 nM, respectively (kojic acid = −8.19 Kcal/mol, 898.03 nM). Based on this study, we propose that acacetin, procyanidin, phlobaphene, patulosides A and B, palmitic acid, and hexahydroxydiphenic acid are responsible for the anti-aging effects of PP on the skin, and that they work synergistically through a multi-target inhibition of these enzymes.
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来源期刊
Cosmetics
Cosmetics Medicine-Surgery
CiteScore
5.20
自引率
12.10%
发文量
108
审稿时长
8 weeks
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