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PMID: 37199163 Published · epublish English Journal Article

Comparative binding analysis of WGX50 and Alpha-M with APP family proteins APLP1 and APLP2 using structural-dynamics and free energy calculation approaches.

Physical chemistry chemical physics : PCCP ·Vol. 25 ·No. 21 ·2023-05-31 ·页码 14887-14897

Ali A, Masood A, Khan AA, Zhu FY, Cheema MAR, Samad A, Wadood A, Khan A, Yu Q, Heng W, Li D, Wei DQ

Abstract

A.D. is a common disease among other neurodegenerative disorders primarily developing due to amyloid-β (Aβ) neurotoxicity derived from the amyloid-β protein precursor (AβPP). The amyloid precursor-like proteins 1 and 2 (APP1 and APLP2) biochemically behave similarly in many aspects to AβPP. We, therefore, proposed to test WGX-50 and Alpha-M for their interaction mechanism with APLP1 and APLP2 because both these drug candidate compounds previously showed inhibition of Aβ aggregation. We employed a comparative atomic investigation on Alpha-M and WGX-50 in complex with novel targets, i.e., APLP1 and APLP2, using biophysical and molecular simulation methods. The docking score was -6.83 kcal mol-1 for Alpha-M-APLP1, -8.41 kcal mol-1 for WGX-50-APLP1, -7.02 kcal mol-1 for Alpha-M-APLP2 and -8.25 kcal mol-1 for the WGX-50-APLP2 complex. Our results also elaborate that in the case of their interaction with both APLP1 and APLP2, the WGX-50 complex exhibits better stability than the APLP1/2-Alpha-M complexes during simulation. Furthermore, WGX50 in both APLP1 and APLP2 stabilized the internal flexibility upon binding in contrast to the Alpha-M complexes. The data showed that the BFE for Alpha-M-APLP1 was calculated to be -27.38 ± 0.93 kcal mol-1, for WGX-50-APLP1 -39.65 ± 0.95 kcal mol-1, for Alpha-M-APLP2 -24.80 ± 0.63 kcal mol-1 while for WGX-50-APLP2 the BFE was -57.16 ± 1.03 kcal mol-1 respectively. These results highlight that APLP2-WGX50 has greater binding energies in all four systems. PCA and FEL analysis further revealed variations in the dynamic behavior of these complexes. Overall, our findings demonstrate that WGX50 potentially acts as a more potent inhibitor for APLP1 and APLP2 than Alpha-M and thus shows the diverse pharmacological potential of WGX50. Due to its stable binding interaction, WGX50 might be a suitable candidate drug compound for targeting these precursors under pathological conditions.

MeSH 主题词
Nerve Tissue Proteins/metabolism Acrylamides
化学物质
lemairamin Nerve Tissue Proteins Acrylamides
作者与单位
共 12 位作者,点击展开单位 / ORCID
Ali Arif ORCID
Department of Bioinformatics and Biological Statistics, Shanghai Jiao Tong University, Shanghai, P. R. China. dqwei@sjtu.edu.cn.
Masood Adan
University Medical and Dental College, Faisalabad, Punjab, Pakistan. adan.masood29@hotmail.com.
Khan Abdul Aziz
Bio-X Institutes, Key Laboratory for the Genetics of Development and Neuropsychiatric Disorders (Ministry of Education), Shanghai Key Laboratory of Psychotic Disorders, and Brain Science and Technology Research Center, Institute of Psychology and Behavioral Sciences, Shanghai Jiao Tong University, Shanghai, China. azizkhan@sjtu.edu.cn.
Zhu Feng-Yun
College of Biology and Food Engineering, Huanghuai University, Zhumadian, 463000, Henan, China. 675442396@qq.com.
Cheema Muhammad Arslan Rasheed
DTC, District Officer Health, Gujranwala, Pakistan. cheemaarslan027@gmail.com.
Samad Abdus
Department of Biochemistry, Abdul Wali khan University Mardan, 23200 Khyber Pakhtunkhwa, Pakistan. sabdus591@gmail.com.
Wadood Abdul
Department of Biochemistry, Abdul Wali khan University Mardan, 23200 Khyber Pakhtunkhwa, Pakistan. sabdus591@gmail.com.
Khan Abbas ORCID
Department of Bioinformatics and Biological Statistics, Shanghai Jiao Tong University, Shanghai, P. R. China. dqwei@sjtu.edu.cn. | Peng Cheng Laboratory, Vanke Cloud City Phase I Building 8, Xili Street, Nashan District, Shenzhen, Guangdong, 518055, P. R. China.
Yu Qiu
Department of Pharmacology and Chemical Biology, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China. qiuy@shsmu.edu.cn.
Heng Wang
International School of Cosmetics, School of Perfume and Aroma Technology, Shanghai Institute of Technology, China. wangheng0802@sjtu.edu.cn.
Li Daixi
Institute of Biothermal Science and Technology, University of Shanghai for Science and Technology, Shanghai, 20093, China. dxli75@126.com. | Peng Cheng Laboratory, Vanke Cloud City Phase I Building 8, Xili Street, Nashan District, Shenzhen, Guangdong, 518055, P. R. China.
Wei Dong-Qing ORCID
Department of Bioinformatics and Biological Statistics, Shanghai Jiao Tong University, Shanghai, P. R. China. dqwei@sjtu.edu.cn. | State Key Laboratory of Microbial Metabolism, Shanghai-Islamabad-Belgrade Joint Innovation Center on Antibacterial Resistances, Joint Laboratory of International Cooperation in Metabolic and Developmental Sciences, Ministry of Education and School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai 200030, P. R. China. | Peng Cheng Laboratory, Vanke Cloud City Phase I Building 8, Xili Street, Nashan District, Shenzhen, Guangdong, 518055, P. R. China. | Zhongjing Research and Industrialization Institute of Chinese Medicine, Zhongguancun Scientific Park, Meixi, Nayang, Henan, 473006, P. R. China.
Article Info
Journal
Physical chemistry chemical physics : PCCP
Abbr.
Phys Chem Chem Phys
ISSN
1463-9084
Published
2023-05-31
电子出版
2023-00-31
页码
14887-14897
Language
English
Country/Region
England
NLM ID
100888160
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