4.5 Article

Flow cytometry for real-time measurement of guanine nucleotide binding and exchange by Ras-like GTPases

期刊

ANALYTICAL BIOCHEMISTRY
卷 381, 期 2, 页码 258-266

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.ab.2008.06.039

关键词

Rab and Rho GTPases; membrane trafficking; actin remodeling; nucleotide binding and exchange; fluorescent GTP analogues

资金

  1. National Science Foundation [MCB0446179]
  2. National institutes of Health [R03MH081231, K25A160036, CA1181000]
  3. University of New Mexico (UNM) Research and Allocations
  4. European Young Investigator Award

向作者/读者索取更多资源

Ras-like small GTPases cycle between GTP-bound active and GDP-bound inactive conformational states to regulate diverse cellular processes. Despite their importance, detailed kinetic or comparative studies of family members are rarely Undertaken due to the lack of real-time assays measuring nucleotide binding or exchange. Here we report a bead-based flow cytometric assay that quantitatively measures the nucleotide binding properties of glutathione-S-transferase (GST) chimeras for prototypical Ras family members Rab7 and Rho. Measurements are possible in the presence or absence of Mg2+, With magnesium cations principally increasing affinity and slowing nucleotide dissociation rates 8- to 10-fold. GST-Rab7 exhibited a 3-fold higher affinity for guanosine diphosphate (GDP) relative to guanosine triphosphate (GTP) that is consistent with a 3-fold slower dissociation Fate of GDP. Strikingly, GST-Rab7 had a marked preference for GTP with ribose ring-conjugated BODIPY FL. The more commonly used gamma-NH-conjugated BODIPY FL GTP analogue failed to bind to GST-Rab7. In contrast, both BODIPY analogues bound equally well to GST-RhoA and GST-RhoC. Comparisons of the GST-Rab7 and GST-RhoA GTP binding pockets provide a Structural basis for the observed binding differences. in sum, the flow cytometric assay can be used to measure nucleotide binding properties of GTPases in real time and to quantitatively assess differences between GTPases. (C) 2008 Elsevier Inc. All rights reserved.

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