4.4 Article

Targeting rho guanine nucleotide exchange factor ARHGEF5/TIM with auto-inhibitory peptides in human breast cancer

期刊

AMINO ACIDS
卷 47, 期 6, 页码 1239-1246

出版社

SPRINGER WIEN
DOI: 10.1007/s00726-015-1950-0

关键词

ARHGEF5/TIM; DH domain; Auto-inhibitory helix; Peptide; Breast cancer

资金

  1. National Natural Science Foundation of China [30801118, 81172520, 81202087, 81202088, 81472462, 81402176]
  2. Natural Science Foundation of Shanghai Municipal Science and Technology Commission [12ZR1446400]
  3. Shanghai Municipal Science and Technology Commission [14411950200, 14411950201]
  4. Wenzhou Science and Technology Bureau [Y20130090]
  5. Natural Science Foundation of Jiangsu Province [BK20140288]
  6. Natural Science Foundation of Jiangsu Higher Education Institutions of China [14KJB320011]
  7. Joint Research Project of the Emerging Cutting-edge Technology of Shanghai Shen-kang Hospital Development Center [SHDC12014103]

向作者/读者索取更多资源

The oncogenic protein ARHGEF5/TIM has long been known to express specifically in human breast cancer and other tumors, which is an important member of Rho guanine nucleotide exchange factors that activate Rho-family GTPases by promoting GTP/GDP exchange. The activation capability of TIM is auto-inhibited by a putative helix N-terminal to Dbl homology (DH) domain, which is stabilized by intramolecular interaction of Src homology 3 domain with a poly-proline sequence that locates between the helix and DH domain. Here, we attempted to target TIM DH domain using the modified versions of its auto-inhibitory helix. In the procedure, bioinformatics techniques were used to investigate the intramolecular interaction of DH domain with auto-inhibitory helix and, based on obtained knowledge, to optimize physicochemical property and structural conformation for the helix. We also performed affinity assay to determine the binding strength of modified peptides to DH domain. Consequently, two modified peptides, namely, DALYEEYNLVV and EVLYEEYQLVV were found as good binders of DH domain with dissociation constants K (d) of 0.35 and 2 A mu M, respectively. Structural analysis revealed that the charge neutralization and electrostatic interaction confer additional stability for these two peptide complexes with DH domain.

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