Insight into microtubule destabilization mechanism of 3,4,5-trimethoxyphenyl indanone derivatives using molecular dynamics simulation and conformational modes analysis

被引:13
|
作者
Tripathi, Shubhandra [1 ]
Srivastava, Gaurava [1 ]
Singh, Aastha [2 ]
Prakasham, A. P. [2 ,3 ]
Negi, Arvind S. [2 ]
Sharma, Ashok [1 ]
机构
[1] CSIR CIMAP, Div Biotechnol, Kukrail Picn Spot Rd,PO CIMAP, Lucknow 226015, Uttar Pradesh, India
[2] CSIR CIMAP, Div Chem Sci, Kukrail Picn Spot Rd,PO CIMAP, Lucknow 226015, Uttar Pradesh, India
[3] IIT, Dept Chem, Mumbai 400076, Maharashtra, India
关键词
Microtubule; alpha ss-Tubulin dimer; Molecular dynamics simulation; Principle component analysis; Free energy landscape analysis; ANTICANCER ACTIVITY; BINDING-SITE; COLCHICINE; THERMOSTABILITY; RESISTANCE; INHIBITORS; MUTATIONS; ALGORITHM; PROVIDE; GROMACS;
D O I
10.1007/s10822-018-0109-y
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
Colchicine site inhibitors are microtubule destabilizers having promising role in cancer therapeutics. In the current study, four such indanone derivatives (t1, t9, t14 and t17) with 3,4,5-trimethoxyphenyl fragment (ring A) and showing significant microtubule destabilization property have been explored. The interaction mechanism and conformational modes triggered by binding of these indanone derivatives and combretastatin at colchicine binding site (CBS) of alpha beta-tubulin dimer were studied using molecular dynamics (MD) simulation, principle component analysis and free energy landscape analysis. In the MD results, t1 showed binding similar to colchicine interacting in the deep hydrophobic core at the CBS. While t9, t14 and t17 showed binding conformation similar to combretastatin, with ring A superficially binding at the CBS. Results demonstrated that ring A played a vital role in binding via hydrophobic interactions and got anchored between the S8 and S9 sheets, H8 helix and T7 loop at the CBS. Conformational modes study revealed that twisting and bending conformational motions (as found in the apo system) were nearly absent in the ligand bound systems. Absence of twisting motion might causes loss of lateral contacts in microtubule, thus promoting microtubule destabilization. This study provides detailed account of microtubule destabilization mechanism by indanone ligands and combretastatin, and would be helpful for designing microtubule destabilizers with higher activity.
引用
收藏
页码:559 / 572
页数:14
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