Literature DB >> 21735094

A detailed thermodynamic profile of cyclopentyl and isopropyl derivatives binding to CK2 kinase.

Takayoshi Kinoshita1, Yusuke Sekiguchi, Harumi Fukada, Tetsuko Nakaniwa, Toshiji Tada, Shinya Nakamura, Kazuo Kitaura, Hiroaki Ohno, Yamato Suzuki, Akira Hirasawa, Isao Nakanishi, Gozoh Tsujimoto.   

Abstract

The detailed understanding of the molecular features of a ligand binding to a target protein, facilitates the successful design of potent and selective inhibitors. We present a case study of ATP-competitive kinase inhibitors that include a pyradine moiety. These compounds have similar chemical structure, except for distinct terminal hydrophobic cyclopentyl or isopropyl groups, and block kinase activity of casein kinase 2 subunit α (CK2α), which is a target for several diseases, such as cancer and glomerulonephritis. Although these compounds display similar inhibitory potency against CK2α, the crystal structures reveal that the cyclopentyl derivative gains more favorable interactions compared with the isopropyl derivative, because of the additional ethylene moiety. The structural observations and biological data are consistent with the thermodynamic profiles of these inhibitors in binding to CK2α, revealing that the enthalpic advantage of the cyclopentyl derivative is accompanied with a lower entropic loss. Computational analyses indicated that the relative enthalpic gain of the cyclopentyl derivative arises from an enhancement of a wide range of van der Waals interactions from the whole complex. Conversely, the relative entropy loss of the cyclopentyl derivative arises from a decrease in the molecular fluctuation and higher conformational restriction in the active site of CK2α. These structural insights, in combination with thermodynamic and computational observations, should be helpful in developing potent and selective CK2α inhibitors.

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Year:  2011        PMID: 21735094     DOI: 10.1007/s11010-011-0960-9

Source DB:  PubMed          Journal:  Mol Cell Biochem        ISSN: 0300-8177            Impact factor:   3.396


  40 in total

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  6 in total

1.  A novel allosteric site in casein kinase 2α discovered using combining bioinformatics and biochemistry methods.

Authors:  Hai-Ming Jiang; Jiang-Kai Dong; Kun Song; Tong-Dan Wang; Wen-Kang Huang; Jing-Miao Zhang; Xiu-Yan Yang; Ying Shen; Jian Zhang
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2.  Crystal structure of human CK2α at 1.06 Å resolution.

Authors:  Takayoshi Kinoshita; Tetsuko Nakaniwa; Yusuke Sekiguchi; Yuri Sogabe; Atsushi Sakurai; Shinya Nakamura; Isao Nakanishi
Journal:  J Synchrotron Radiat       Date:  2013-10-02       Impact factor: 2.616

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4.  Exploring the Pivotal Role of the CK2 Hinge Region Sub-Pocket in Binding with Tricyclic Quinolone Analogues by Computational Analysis.

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5.  Halogen Atoms in the Protein-Ligand System. Structural and Thermodynamic Studies of the Binding of Bromobenzotriazoles by the Catalytic Subunit of Human Protein Kinase CK2.

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6.  Copper Modulates the Catalytic Activity of Protein Kinase CK2.

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  6 in total

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