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通过对从Forssk. ex. J.F. Gmel.地上部分分离出的四种新化合物进行分子对接所描绘的细胞增殖活性

Cell proliferation activity delineated by molecular docking of four new compounds isolated from the aerial parts of Forssk. ex. J.F. Gmel.

作者信息

Siddiqui Nasir A, Mothana Ramzi A, Al-Said Mansour S, Parvez Mohammad K, Alam Perwez, Tabish Rehman M, Ali Mohd, Alajmi Mohamed F, Al-Dosari Mohammed S, Al-Rehaily Adnan J, Nasr Fahd A, Khalid Jamal M

机构信息

Department of Pharmacognosy, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia.

Department of Pharmacognosy & Phytochemistry, Faculty of Pharmacy, Jamia Hamdard, New Delhi, India.

出版信息

Saudi Pharm J. 2020 Feb;28(2):172-186. doi: 10.1016/j.jsps.2019.11.019. Epub 2019 Dec 7.

Abstract

Using different chromatographic methods, four new compounds were isolated from the aerial parts of (Chenopodiaceae) along with 2-hydroxy-1-naphthoic acid (SCM-3). The structures of the new compounds were established as 6'-hydroxy-10'-geranilanyl naphtha-1-oate (SMC-1), 4,4,8β,10β-Tetramethyl-9β-isobutanyl decalin-13-ol-13-O-β-D-xylopyranoside (SCM-2), 6'-(2-hydroxynaphthalen-3-yl) hexanoic acid (SCM-4) and 1'-(2-Methoxy-3-naphthyl)-4'-(2''-methylbenzoyl)--butane (SMC-5) by IR, EIMS and NMR (1 & 2D) analyses. All compounds (50 μg/mL) were tested for cell proliferative potential on cultured human liver cell HepG2 cells by MTT assay. The results revealed a marked cell proliferative potential of all compounds (1.42-1.48 fold) as compared to untreated control. The results of molecular docking and binding with specific proteins such as PTEN (Phosphatase and Tensin homolog) and p53 also justify the cell proliferative potential of the isolated compounds. Glide program with Schrodinger suit 2018 was used to evaluate the binding between SMC compounds and proteins (PTEN and p53). The binding affinity of all compounds was in order of 10-10 M towards both PTEN and p53. All the SMC compounds have been found to bind at the active site of PTEN, thereby may prevent the binding of phosphatidylinositiol 3,4,5-triphosphate (PI3P). In the locked position, PTEN would not be able to hydrolyze PI3P and hence the PI3P regulated signaling pathway remains active. Similarly, SMC molecules were found to interact with the amino acid residues (Ser99, Thr170, Gly199, and Asp224) which are critically involved in the formation of tetrameric p53. The blockage of p53 to attain its active conformation thus may prevent the recruitment of p53 on DNA and hence may promote cell proliferation.

摘要

采用不同的色谱方法,从藜科植物的地上部分分离出4种新化合物以及2-羟基-1-萘甲酸(SCM-3)。通过红外光谱(IR)、电子轰击质谱(EIMS)和核磁共振(NMR,包括一维和二维)分析,确定了这些新化合物的结构,分别为6'-羟基-10'-香叶基萘-1-酸酯(SMC-1)、4,4,8β,10β-四甲基-9β-异丁基十氢萘-13-醇-13-O-β-D-吡喃木糖苷(SCM-2)、6'-(2-羟基萘-3-基)己酸(SCM-4)和1'-(2-甲氧基-3-萘基)-4'-(2''-甲基苯甲酰基)-丁烷(SMC-5)。采用MTT法检测了所有化合物(50μg/mL)对培养的人肝癌HepG2细胞的细胞增殖潜力。结果显示,与未处理的对照相比,所有化合物均具有显著的细胞增殖潜力(增殖倍数为1.42 - 1.48倍)。分子对接以及与磷酸酶和张力蛋白同源物(PTEN)和p53等特定蛋白质结合的结果也证实了所分离化合物的细胞增殖潜力。使用Schrodinger suit 2018中的Glide程序评估SMC化合物与蛋白质(PTEN和p53)之间的结合。所有化合物对PTEN和p53的结合亲和力均为10 - 10 M级别。已发现所有SMC化合物均在PTEN的活性位点结合,从而可能阻止磷脂酰肌醇3,4,5-三磷酸(PI3P)的结合。在锁定位置,PTEN无法水解PI3P,因此PI3P调节的信号通路保持活跃。同样,发现SMC分子与在四聚体p53形成过程中起关键作用的氨基酸残基(Ser99、Thr170、Gly199和Asp224)相互作用。p53因此无法形成其活性构象,这可能会阻止p53在DNA上的募集,进而可能促进细胞增殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3174/7000348/f505f24db21a/gr10.jpg

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