Journal of Biological Chemistry 2015-01-16

Efflux by small multidrug resistance proteins is inhibited by membrane-interactive helix-stapled peptides.

Kathrin Bellmann-Sickert, Tracy A Stone, Bradley E Poulsen, Charles M Deber

Index: J. Biol. Chem. 290(3) , 1752-9, (2015)

Full Text: HTML

Abstract

Bacterial cell membranes contain several protein pumps that resist the toxic effects of drugs by efficiently extruding them. One family of these pumps, the small multidrug resistance proteins (SMRs), consists of proteins of about 110 residues that need to oligomerize to form a structural pathway for substrate extrusion. As such, SMR oligomerization sites should constitute viable targets for efflux inhibition, by disrupting protein-protein interactions between helical segments. To explore this proposition, we are using Hsmr, an SMR from Halobacter salinarum that dimerizes to extrude toxicants. Our previous work established that (i) Hsmr dimerization is mediated by a helix-helix interface in Hsmr transmembrane (TM) helix 4 (residues (90)GLALIVAGV(98)); and (ii) a peptide comprised of the full TM4(85-105) sequence inhibits Hsmr-mediated ethidium bromide efflux from bacterial cells. Here we define the minimal linear sequence for inhibitor activity (determined as TM4(88-100), and then "staple" this sequence via Grubbs metathesis to produce peptides typified by acetyl-A-(Sar)3-(88)VVGLXLIZXGVVV(100)-KKK-NH2 (X = 2-(4'-pentenyl)alanine at positions 92 and 96; Z = Val, Gly, or Asn at position 95)). The Asn(95) peptide displayed specific efflux inhibition and resensitization of Hsmr-expressing cells to ethidium bromide; and was non-hemolytic to human red blood cells. Stapling essentially prevented peptide degradation in blood plasma and liver homogenates versus an unstapled counterpart. The overall results confirm that the stapled analog of TM4(88-100) retains the structural complementarity required to disrupt the Hsmr TM4-TM4 locus in Hsmr, and portend the general validity of stapled peptides as therapeutics for the disruption of functional protein-protein interactions in membranes. © 2015 by The American Society for Biochemistry and Molecular Biology, Inc.


Related Compounds

Related Articles:

Neuroprotective effect of modified Chungsimyeolda-tang, a traditional Korean herbal formula, via autophagy induction in models of Parkinson's disease.

2015-01-15

[J. Ethnopharmacol. 159 , 93-101, (2014)]

Biomolecular imaging with a C60-SIMS/MALDI dual ion source hybrid mass spectrometer: instrumentation, matrix enhancement, and single cell analysis.

2014-11-01

[J. Am. Soc. Mass Spectrom. 25(11) , 1897-907, (2014)]

Itraconazole suppresses the growth of glioblastoma through induction of autophagy: involvement of abnormal cholesterol trafficking.

2014-07-01

[Autophagy 10(7) , 1241-55, (2014)]

Diclofenac toxicity in human intestine ex vivo is not related to the formation of intestinal metabolites.

2015-01-01

[Arch. Toxicol. 89(1) , 107-19, (2015)]

Methionine oxidation accelerates the aggregation and enhances the neurotoxicity of the D178N variant of the human prion protein.

2014-12-01

[Biochim. Biophys. Acta 1842(12 Pt A) , 2345-56, (2014)]

More Articles...