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1.
J Biol Chem ; 293(23): 9064-9077, 2018 06 08.
Article in English | MEDLINE | ID: mdl-29695506

ABSTRACT

The GTPase RhoA is a major player in many different regulatory pathways. RhoA catalyzes GTP hydrolysis, and its catalysis is accelerated when RhoA forms heterodimers with proteins of the guanine nucleotide exchange factor (GEF) family. Neuroepithelial cell transforming gene 1 (Net1) is a RhoA-interacting GEF implicated in cancer, but the structural features supporting the RhoA/Net1 interaction are unknown. Taking advantage of a simple production and purification process, here we solved the structure of a RhoA/Net1 heterodimer with X-ray crystallography at 2-Å resolution. Using a panel of several techniques, including molecular dynamics simulations, we characterized the RhoA/Net1 interface. Moreover, deploying an extremely simple peptide-based scanning approach, we found that short peptides (penta- to nonapeptides) derived from the protein/protein interaction region of RhoA could disrupt the RhoA/Net1 interaction and thereby diminish the rate of nucleotide exchange. The most inhibitory peptide, EVKHF, spanning residues 102-106 in the RhoA sequence, displayed an IC50 of ∼100 µm without further modifications. The peptides identified here could be useful in further investigations of the RhoA/Net1 interaction region. We propose that our structural and functional insights might inform chemical approaches for transforming the pentapeptide into an optimized pseudopeptide that antagonizes Net1-mediated RhoA activation with therapeutic anticancer potential.


Subject(s)
Oncogene Proteins/chemistry , rhoA GTP-Binding Protein/chemistry , Amino Acid Sequence , Antineoplastic Agents/chemistry , Antineoplastic Agents/pharmacology , Crystallography, X-Ray , Drug Discovery , Humans , Molecular Dynamics Simulation , Molecular Targeted Therapy , Oncogene Proteins/metabolism , Peptides/chemistry , Peptides/pharmacology , Protein Conformation/drug effects , Protein Interaction Maps/drug effects , Protein Multimerization/drug effects , Sequence Alignment , rhoA GTP-Binding Protein/metabolism
2.
Acta Crystallogr F Struct Biol Commun ; 73(Pt 10): 574-578, 2017 Oct 01.
Article in English | MEDLINE | ID: mdl-28994406

ABSTRACT

A microfluidic platform was used to address the problems of obtaining diffraction-quality crystals and crystal handling during transfer to the X-ray diffractometer. Crystallization conditions of a protein of pharmaceutical interest were optimized and X-ray data were collected both in situ and ex situ.


Subject(s)
Microfluidics/methods , X-Ray Diffraction/methods , Crystallization/instrumentation , Crystallization/methods , Microfluidics/instrumentation , X-Ray Diffraction/instrumentation
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