Literature DB >> 14754412

Structure of multidrug-resistance proteins of the ATP-binding cassette (ABC) superfamily.

Guillermo A Altenberg1.   

Abstract

Multidrug resistance of tumors, characterized by resistance against a variety of chemically unrelated anticancer agents, can be caused by overexpression of ATP-binding cassette (ABC) proteins, such as P-glycoprotein and MRP1. These multidrug-resistance proteins are plasma-membrane proteins that actively extrude chemotherapeutic agents from the cell interior, decreasing drug accumulation and thus, allowing the cells to survive in the presence of toxic levels of anticancer agents. ABC proteins contain multispanning transmembrane domains and nucleotide-binding domains (NBDs). The NBDs are responsible for the ATP binding/hydrolysis that drives drug transport, and their structure is conserved independently of the degree of primary-sequence homology. The transmembrane domains contain the drug-binding sites that are likely located in a flexible internal chamber that is sufficiently large to accommodate different drugs. It has been recently proposed that dimerization of the NBDs induced by ATP binding is a key step for the coupling of ATP hydrolysis to substrate transport. The power stroke for substrate transport can be the formation or the dissociation of the dimers. Since the NBDs and TMDs are tightly associated, association/dissociation of the NBDs may control the "gate" of the translocation pathway, formed by intracellular loops. In the case of P-glycoprotein it seems that the power stroke for transport is ATP binding (and therefore NBD dimerization), and not hydrolysis, because the major conformational and functional changes seem to occur at this step.

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Year:  2004        PMID: 14754412     DOI: 10.2174/1568011043482160

Source DB:  PubMed          Journal:  Curr Med Chem Anticancer Agents        ISSN: 1568-0118


  16 in total

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2.  ATP Binding Cassette C1 (ABCC1/MRP1)-mediated drug efflux contributes to disease progression in T-lineage acute lymphoblastic leukemia.

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Review 3.  Principles of biofouling protection in marine sponges: a model for the design of novel biomimetic and bio-inspired coatings in the marine environment?

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Journal:  Mar Biotechnol (NY)       Date:  2013-03-26       Impact factor: 3.619

4.  The synthesis and characterization of cellular membrane affinity chromatography columns for the study of human multidrug resistant proteins MRP1, MRP2 and human breast cancer resistant protein BCRP using membranes obtained from Spodoptera frugiperda (Sf9) insect cells.

Authors:  Prateek A Bhatia; Ruin Moaddel; Irving W Wainer
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5.  Temperature invariance of the nitrogenase electron transfer mechanism.

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Review 6.  ATP-binding cassette efflux transporters in human placenta.

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Journal:  Curr Pharm Biotechnol       Date:  2011-04       Impact factor: 2.837

7.  Molecular basis for differential nucleotide binding of the nucleotide-binding domain of ABC-transporter CvaB.

Authors:  Xiangxue Guo; Xianfeng Chen; Irene T Weber; Robert W Harrison; Phang C Tai
Journal:  Biochemistry       Date:  2006-12-05       Impact factor: 3.162

8.  Psorospermin structural requirements for P-glycoprotein resistance reversal.

Authors:  Steven S Carey; Mary Gleason-Guzman; Vijay Gokhale; Laurence H Hurley
Journal:  Mol Cancer Ther       Date:  2008-11       Impact factor: 6.261

9.  The selectivity of austocystin D arises from cell-line-specific drug activation by cytochrome P450 enzymes.

Authors:  Kevin M Marks; Eun Sun Park; Alexander Arefolov; Katie Russo; Keiko Ishihara; Jennifer E Ring; Jon Clardy; Astrid S Clarke; Henry E Pelish
Journal:  J Nat Prod       Date:  2011-02-24       Impact factor: 4.050

10.  Deciphering cellular states of innate tumor drug responses.

Authors:  Esther Graudens; Virginie Boulanger; Cindy Mollard; Régine Mariage-Samson; Xavier Barlet; Guilaine Grémy; Christine Couillault; Malika Lajémi; Dominique Piatier-Tonneau; Patrick Zaborski; Eric Eveno; Charles Auffray; Sandrine Imbeaud
Journal:  Genome Biol       Date:  2006-03-15       Impact factor: 13.583

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