Identification of potential drug molecules against fibroblast growth factor receptor 3 (FGFR3) by multi-stage computational-biophysics correlate

被引:4
作者
Ahmad, Sajjad [1 ,2 ,3 ]
Almanaa, Taghreed N. [4 ]
Khan, Saifullah [5 ]
Aljahdali, Salma Mohammed [6 ]
Waheed, Yasir [7 ,8 ]
Aljasir, Mohammad Abdullah [9 ]
Al-Megrin, Wafa Abdullah I. [10 ]
Aziz, Aamir [11 ]
Ateeq, Muhammad [11 ]
Amin, Fazli [12 ]
Khattak, Saeed Ullah [13 ]
Sanami, Samira [14 ]
机构
[1] Abasyn Univ, Dept Hlth & Biol Sci, Peshawar, Pakistan
[2] Lebanese Amer Univ, Dept Nat Sci, Beirut, Lebanon
[3] Virginia Tech, Dept Comp Sci, Blacksburg, VA 24061 USA
[4] King Saud Univ, Coll Sci, Dept Bot & Microbiol, Riyadh, Saudi Arabia
[5] Bacha Khan Univ, Inst Biotechnol & Microbiol, Charsadda, Pakistan
[6] King Abdulaziz Univ, Coll Sci, Dept Biochem, Jeddah, Saudi Arabia
[7] Shaheed Zulfiqar Ali Bhutto Med Univ SZABMU, Off Res Innovat & Commercializat, Islamabad, Pakistan
[8] Lebanese Amer Univ, Gilbert & Rose Marie Chagoury Sch Med, Byblos, Lebanon
[9] Qassim Univ, Coll Appl Med Sci, Dept Med Labs, Buraydah, Saudi Arabia
[10] Princess Nourah bint Abdulrahman Univ, Coll Sci, Dept Biol, Riyadh, Saudi Arabia
[11] Sarhad Univ Sci & Informat Technol, Sarhad Inst Allied Hlth Sci, Peshawar, Pakistan
[12] Sarhad Univ Sci & Informat Technol, Dept Pharm, Peshawar, Pakistan
[13] Univ Peshawar, Ctr Biotechnol & Microbiol, Peshawar, Pakistan
[14] Semnan Univ Med Sci, Nervous Syst Stem Cells Res Ctr, Semnan, Iran
关键词
Fibroblast growth factor receptor 3; BDC_24037121; bdc_21200852; bdc_21206757; molecular dynamic simulation; THERAPEUTIC TARGET; BLADDER-CANCER; DYNAMICS; INHIBITOR; DISCOVERY; SYSTEM;
D O I
10.1080/07391102.2023.2291541
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The fibroblast growth factor receptor 3 (FGFR3) is warranted as a promising therapeutic target in bladder cancer as it is described in 75% of papillary bladder tumors. Considering this, the present study was conducted to use different approaches of computer-aided drug discovery (CADD) to identify the best binding compounds against the active pocket of FGFR3. Compared to control pyrimidine derivative, the study identified three promising lead structures; BDC_24037121, BDC_21200852, and BDC_21206757 with binding energy value of -14.80 kcal/mol, -12.22 kcal/mol, and -11.67 kcal/mol, respectively. The control molecule binding energy score was -9.85 kcal/mol. The compounds achieved deep pocket binding and produced balanced interactions of hydrogen bonds and van der Waals. The FGFR3 enzyme residues such as Leu478, Lys508, Glu556, Asn562, Asn622, and Asp635. The molecular dynamic (MD) simulation studies additionally validated the docked conformation stability with respect to FGFR3 with a mean root mean square deviation (RMSD) value of < 3 angstrom. The root mean square fluctuation (RMSF) complements the complexes structural stability and the residues showed less fluctuation in the presence of compounds. The Poisson-Boltzmann or generalized Born and surface area continuum solvation (MM/PBSA and MM/GBSA) methods revalidated compounds better binding and highlighted van der Waals energy to dominate the overall net energy. The docked stability was additionally confirmed by WaterSwap and AMBER normal mode entropy energy analyses. In a nutshell, the compounds shortlisted in this study are promising in term of theoretical binding affinity for FGFR3 but experimental validation is needed.
引用
收藏
页码:1240 / 1248
页数:9
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