Human equilibrative nucleoside transporter (ENT) family of nucleoside and nucleobase transporter proteins
Autor: | S. A. Baldwin, C. E. Cass, Sylvia Y.M. Yao, Lijie Sun, James D. Young |
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Rok vydání: | 2008 |
Předmět: |
Pharmacology
biology Health Toxicology and Mutagenesis Nucleosides Equilibrative nucleoside transporter Transporter General Medicine Equilibrative nucleoside transporter 2 Toxicology Biochemistry Adenosine Nucleobase Structure-Activity Relationship Transmembrane domain Virus Diseases Equilibrative Nucleoside Transport Proteins Neoplasms medicine biology.protein Humans Integral membrane protein Nucleoside medicine.drug |
Zdroj: | Xenobiotica. 38:995-1021 |
ISSN: | 1366-5928 0049-8254 |
DOI: | 10.1080/00498250801927427 |
Popis: | 1. The human (h) SLC29 family of integral membrane proteins is represented by four members, designated equilibrative nucleoside transporters (ENTs) because of the properties of the first-characterized family member, hENT1. They belong to the widely distributed eukaryotic ENT family of equilibrative and concentrative nucleoside/nucleobase transporter proteins. 2. A predicted topology of eleven transmembrane helices has been experimentally confirmed for hENT1. The best-characterized members of the family, hENT1 and hENT2, possess similar broad permeant selectivities for purine and pyrimidine nucleosides, but hENT2 also efficiently transports nucleobases. hENT3 has a similar broad permeant selectivity for nucleosides and nucleobases and appears to function in intracellular membranes, including lysosomes. 3. hENT4 is uniquely selective for adenosine, and also transports a variety of organic cations. hENT3 and hENT4 are pH sensitive, and optimally active under acidic conditions. ENTs, including those in parasitic protozoa, function in nucleoside and nucleobase uptake for salvage pathways of nucleotide synthesis and, in humans, are also responsible for the cellular uptake of nucleoside analogues used in the treatment of cancers and viral diseases. 4. By regulating the concentration of adenosine available to cell surface receptors, mammalian ENTs additionally influence physiological processes ranging from cardiovascular activity to neurotransmission. |
Databáze: | OpenAIRE |
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