Literature DB >> 1450208

Analysis of the binding of polymyxin B to endotoxic lipid A and core glycolipid using a fluorescent displacement probe.

S A David1, K A Balasubramanian, V I Mathan, P Balaram.   

Abstract

Dansylcadaverine, a cationic fluorescent probe binds to bacterial lipopolysaccharide and lipid A, and is displaced competitively by other compounds which possess affinity toward endotoxins. The binding parameters of dansylcadaverine for lipid A were determined by Scatchard analysis to be two apparently equivalent sites with apparent dissociation constants (Kd) ranging between 16 microM to 26 microM, while that obtained for core glycolipid from Salmonella minnesota Re595 yielded a Kd of 22 microM to 28 microM with three binding sites. The Kd of polymyxin B for lipid A was computed from dansylcadaverine displacement by the method of Horovitz and Levitzki (Horovitz, A., and Levitzki, A. (1987) Proc. Natl. Acad. Sci. USA 84, 6654-6658). The applicability of this method for analyzing fluorescence data was validated by comparing the Kds of melittin for lipid A obtained by direct Scatchard analysis, and by the Horovitz-Levitzki method. The displacement of dansylcadaverine from lipid A by polymyxin B was distinctly biphasic with Kds for polymyxin B-lipid A interactions corresponding to 0.4 microM and 1.5 microM, probably resulting as a consequence of lipid A being a mixture of mono- and di-phosphoryl species. This was not observed with core glycolipid, for which the Kd for polymyxin was estimated to range from 1.1 microM to 5.8 microM. The use of dansylcadaverine as a displacement probe offers a novel and convenient method of quantitating the interactions of a wide variety of substances with lipid A.

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Year:  1992        PMID: 1450208     DOI: 10.1016/0005-2760(92)90180-4

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  11 in total

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2.  Interaction of NK lysin, a peptide produced by cytolytic lymphocytes, with endotoxin.

Authors:  M Andersson; R Girard; P Cazenave
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4.  Delineation of lipopolysaccharide (LPS)-binding sites on hemoglobin: from in silico predictions to biophysical characterization.

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5.  Lipopolyamines: novel antiendotoxin compounds that reduce mortality in experimental sepsis caused by gram-negative bacteria.

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6.  Structure-activity relationships of antimicrobial and lipoteichoic acid-sequestering properties in polyamine sulfonamides.

Authors:  Hemamali J Warshakoon; Mark R Burns; Sunil A David
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7.  Anti-endotoxin agents. 1. Development of a fluorescent probe displacement method optimized for the rapid identification of lipopolysaccharide-binding agents.

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8.  Structural correlates of antibacterial and membrane-permeabilizing activities in acylpolyamines.

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9.  Polymyxin Susceptibility in Pseudomonas aeruginosa Linked to the MexXY-OprM Multidrug Efflux System.

Authors:  Keith Poole; Calvin Ho-Fung Lau; Christie Gilmour; Youai Hao; Joseph S Lam
Journal:  Antimicrob Agents Chemother       Date:  2015-09-14       Impact factor: 5.191

10.  Comparison of the immunostimulatory and proinflammatory activities of candidate Gram-positive endotoxins, lipoteichoic acid, peptidoglycan, and lipopeptides, in murine and human cells.

Authors:  Matthew R Kimbrell; Hemamali Warshakoon; Jens R Cromer; Subbalakshmi Malladi; Jennifer D Hood; Rajalakshmi Balakrishna; Tandace A Scholdberg; Sunil A David
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