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A Multidrug ABC Transporter with a Taste for Salt

BACKGROUND: LmrA is a multidrug ATP-binding cassette (ABC) transporter from Lactococcus lactis with no known physiological substrate, which can transport a wide range of chemotherapeutic agents and toxins from the cell. The protein can functionally replace the human homologue ABCB1 (also termed mult...

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Autores principales: Velamakanni, Saroj, Lau, Calvin H. F., Gutmann, Daniel A. P., Venter, Henrietta, Barrera, Nelson P., Seeger, Markus A., Woebking, Barbara, Matak-Vinkovic, Dijana, Balakrishnan, Lekshmy, Yao, Yao, U, Edmond C. Y., Shilling, Richard A., Robinson, Carol V., Thorn, Peter, van Veen, Hendrik W.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2704374/
https://www.ncbi.nlm.nih.gov/pubmed/19593434
http://dx.doi.org/10.1371/journal.pone.0006137
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author Velamakanni, Saroj
Lau, Calvin H. F.
Gutmann, Daniel A. P.
Venter, Henrietta
Barrera, Nelson P.
Seeger, Markus A.
Woebking, Barbara
Matak-Vinkovic, Dijana
Balakrishnan, Lekshmy
Yao, Yao
U, Edmond C. Y.
Shilling, Richard A.
Robinson, Carol V.
Thorn, Peter
van Veen, Hendrik W.
author_facet Velamakanni, Saroj
Lau, Calvin H. F.
Gutmann, Daniel A. P.
Venter, Henrietta
Barrera, Nelson P.
Seeger, Markus A.
Woebking, Barbara
Matak-Vinkovic, Dijana
Balakrishnan, Lekshmy
Yao, Yao
U, Edmond C. Y.
Shilling, Richard A.
Robinson, Carol V.
Thorn, Peter
van Veen, Hendrik W.
author_sort Velamakanni, Saroj
collection PubMed
description BACKGROUND: LmrA is a multidrug ATP-binding cassette (ABC) transporter from Lactococcus lactis with no known physiological substrate, which can transport a wide range of chemotherapeutic agents and toxins from the cell. The protein can functionally replace the human homologue ABCB1 (also termed multidrug resistance P-glycoprotein MDR1) in lung fibroblast cells. Even though LmrA mediates ATP-dependent transport, it can use the proton-motive force to transport substrates, such as ethidium bromide, across the membrane by a reversible, H(+)-dependent, secondary-active transport reaction. The mechanism and physiological context of this reaction are not known. METHODOLOGY/PRINCIPAL FINDINGS: We examined ion transport by LmrA in electrophysiological experiments and in transport studies using radioactive ions and fluorescent ion-selective probes. Here we show that LmrA itself can transport NaCl by a similar secondary-active mechanism as observed for ethidium bromide, by mediating apparent H(+)-Na(+)-Cl(−) symport. Remarkably, LmrA activity significantly enhances survival of high-salt adapted lactococcal cells during ionic downshift. CONCLUSIONS/SIGNIFICANCE: The observations on H(+)-Na(+)-Cl(−) co-transport substantiate earlier suggestions of H(+)-coupled transport by LmrA, and indicate a novel link between the activity of LmrA and salt stress. Our findings demonstrate the relevance of investigations into the bioenergetics of substrate translocation by ABC transporters for our understanding of fundamental mechanisms in this superfamily. This study represents the first use of electrophysiological techniques to analyze substrate transport by a purified multidrug transporter.
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spelling pubmed-27043742009-07-10 A Multidrug ABC Transporter with a Taste for Salt Velamakanni, Saroj Lau, Calvin H. F. Gutmann, Daniel A. P. Venter, Henrietta Barrera, Nelson P. Seeger, Markus A. Woebking, Barbara Matak-Vinkovic, Dijana Balakrishnan, Lekshmy Yao, Yao U, Edmond C. Y. Shilling, Richard A. Robinson, Carol V. Thorn, Peter van Veen, Hendrik W. PLoS One Research Article BACKGROUND: LmrA is a multidrug ATP-binding cassette (ABC) transporter from Lactococcus lactis with no known physiological substrate, which can transport a wide range of chemotherapeutic agents and toxins from the cell. The protein can functionally replace the human homologue ABCB1 (also termed multidrug resistance P-glycoprotein MDR1) in lung fibroblast cells. Even though LmrA mediates ATP-dependent transport, it can use the proton-motive force to transport substrates, such as ethidium bromide, across the membrane by a reversible, H(+)-dependent, secondary-active transport reaction. The mechanism and physiological context of this reaction are not known. METHODOLOGY/PRINCIPAL FINDINGS: We examined ion transport by LmrA in electrophysiological experiments and in transport studies using radioactive ions and fluorescent ion-selective probes. Here we show that LmrA itself can transport NaCl by a similar secondary-active mechanism as observed for ethidium bromide, by mediating apparent H(+)-Na(+)-Cl(−) symport. Remarkably, LmrA activity significantly enhances survival of high-salt adapted lactococcal cells during ionic downshift. CONCLUSIONS/SIGNIFICANCE: The observations on H(+)-Na(+)-Cl(−) co-transport substantiate earlier suggestions of H(+)-coupled transport by LmrA, and indicate a novel link between the activity of LmrA and salt stress. Our findings demonstrate the relevance of investigations into the bioenergetics of substrate translocation by ABC transporters for our understanding of fundamental mechanisms in this superfamily. This study represents the first use of electrophysiological techniques to analyze substrate transport by a purified multidrug transporter. Public Library of Science 2009-07-10 /pmc/articles/PMC2704374/ /pubmed/19593434 http://dx.doi.org/10.1371/journal.pone.0006137 Text en Velamakanni et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Velamakanni, Saroj
Lau, Calvin H. F.
Gutmann, Daniel A. P.
Venter, Henrietta
Barrera, Nelson P.
Seeger, Markus A.
Woebking, Barbara
Matak-Vinkovic, Dijana
Balakrishnan, Lekshmy
Yao, Yao
U, Edmond C. Y.
Shilling, Richard A.
Robinson, Carol V.
Thorn, Peter
van Veen, Hendrik W.
A Multidrug ABC Transporter with a Taste for Salt
title A Multidrug ABC Transporter with a Taste for Salt
title_full A Multidrug ABC Transporter with a Taste for Salt
title_fullStr A Multidrug ABC Transporter with a Taste for Salt
title_full_unstemmed A Multidrug ABC Transporter with a Taste for Salt
title_short A Multidrug ABC Transporter with a Taste for Salt
title_sort multidrug abc transporter with a taste for salt
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2704374/
https://www.ncbi.nlm.nih.gov/pubmed/19593434
http://dx.doi.org/10.1371/journal.pone.0006137
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