author_facet Ventura, S
Ventura, S
author Ventura, S
spellingShingle Ventura, S
British Journal of Pharmacology
What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
Pharmacology
author_sort ventura, s
spelling Ventura, S 0007-1188 1476-5381 Wiley Pharmacology http://dx.doi.org/10.1111/j.1476-5381.2011.01663.x <jats:p>The α<jats:sub>1A</jats:sub>‐adrenoceptor is therapeutically exploited because of its prevalence in the lower urinary tract. The pharmacology shown by this lower urinary tract α<jats:sub>1A</jats:sub>‐adrenoceptor is different from that shown by other α<jats:sub>1A</jats:sub>‐adrenoceptors, which has led to it being subclassified as an α<jats:sub>1L</jats:sub>‐adrenoceptor. Only in the last few years was it shown that this pharmacologically distinct α<jats:sub>1L</jats:sub>‐adrenoceptor is a product of the α<jats:sub>1A</jats:sub>‐adrenoceptor gene. In this issue of the <jats:italic>BJP</jats:italic>, Nishimune <jats:italic>et al</jats:italic>. review the literature on α<jats:sub>1L</jats:sub>‐adrenoceptor pharmacology and discuss the possible molecular mechanisms by which the α<jats:sub>1A</jats:sub>‐adrenoceptor gene is able to produce two pharmacologically distinct adrenoceptor subtypes. Based primarily from their own research using cell lines transfected with α<jats:sub>1A</jats:sub>‐adrenoceptors, they conclude that a protein that interacts with the receptor is the most plausible explanation. The challenge remains to identify any such interacting protein and show how it is able to change the pharmacology of the receptor for different ligands.</jats:p><jats:p><jats:bold>LINKED ARTICLE</jats:bold> This article is a commentary on Nishimune <jats:italic>et al</jats:italic>., pp. 1226–1234 of this issue. To view this paper visit <jats:ext-link xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="http://dx.doi.org/10.1111/j.1476-5381.2011.01591.x">http://dx.doi.org/10.1111/j.1476‐5381.2011.01591.x</jats:ext-link></jats:p> What makes the α<sub>1A</sub>‐adrenoceptor gene express the α<sub>1L</sub>‐adrenoceptor functional phenotype? British Journal of Pharmacology
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title What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_unstemmed What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_full What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_fullStr What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_full_unstemmed What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_short What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_sort what makes the α<sub>1a</sub>‐adrenoceptor gene express the α<sub>1l</sub>‐adrenoceptor functional phenotype?
topic Pharmacology
url http://dx.doi.org/10.1111/j.1476-5381.2011.01663.x
publishDate 2012
physical 1223-1225
description <jats:p>The α<jats:sub>1A</jats:sub>‐adrenoceptor is therapeutically exploited because of its prevalence in the lower urinary tract. The pharmacology shown by this lower urinary tract α<jats:sub>1A</jats:sub>‐adrenoceptor is different from that shown by other α<jats:sub>1A</jats:sub>‐adrenoceptors, which has led to it being subclassified as an α<jats:sub>1L</jats:sub>‐adrenoceptor. Only in the last few years was it shown that this pharmacologically distinct α<jats:sub>1L</jats:sub>‐adrenoceptor is a product of the α<jats:sub>1A</jats:sub>‐adrenoceptor gene. In this issue of the <jats:italic>BJP</jats:italic>, Nishimune <jats:italic>et al</jats:italic>. review the literature on α<jats:sub>1L</jats:sub>‐adrenoceptor pharmacology and discuss the possible molecular mechanisms by which the α<jats:sub>1A</jats:sub>‐adrenoceptor gene is able to produce two pharmacologically distinct adrenoceptor subtypes. Based primarily from their own research using cell lines transfected with α<jats:sub>1A</jats:sub>‐adrenoceptors, they conclude that a protein that interacts with the receptor is the most plausible explanation. The challenge remains to identify any such interacting protein and show how it is able to change the pharmacology of the receptor for different ligands.</jats:p><jats:p><jats:bold>LINKED ARTICLE</jats:bold> This article is a commentary on Nishimune <jats:italic>et al</jats:italic>., pp. 1226–1234 of this issue. To view this paper visit <jats:ext-link xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="http://dx.doi.org/10.1111/j.1476-5381.2011.01591.x">http://dx.doi.org/10.1111/j.1476‐5381.2011.01591.x</jats:ext-link></jats:p>
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author Ventura, S
author_facet Ventura, S, Ventura, S
author_sort ventura, s
container_issue 5
container_start_page 1223
container_title British Journal of Pharmacology
container_volume 165
description <jats:p>The α<jats:sub>1A</jats:sub>‐adrenoceptor is therapeutically exploited because of its prevalence in the lower urinary tract. The pharmacology shown by this lower urinary tract α<jats:sub>1A</jats:sub>‐adrenoceptor is different from that shown by other α<jats:sub>1A</jats:sub>‐adrenoceptors, which has led to it being subclassified as an α<jats:sub>1L</jats:sub>‐adrenoceptor. Only in the last few years was it shown that this pharmacologically distinct α<jats:sub>1L</jats:sub>‐adrenoceptor is a product of the α<jats:sub>1A</jats:sub>‐adrenoceptor gene. In this issue of the <jats:italic>BJP</jats:italic>, Nishimune <jats:italic>et al</jats:italic>. review the literature on α<jats:sub>1L</jats:sub>‐adrenoceptor pharmacology and discuss the possible molecular mechanisms by which the α<jats:sub>1A</jats:sub>‐adrenoceptor gene is able to produce two pharmacologically distinct adrenoceptor subtypes. Based primarily from their own research using cell lines transfected with α<jats:sub>1A</jats:sub>‐adrenoceptors, they conclude that a protein that interacts with the receptor is the most plausible explanation. The challenge remains to identify any such interacting protein and show how it is able to change the pharmacology of the receptor for different ligands.</jats:p><jats:p><jats:bold>LINKED ARTICLE</jats:bold> This article is a commentary on Nishimune <jats:italic>et al</jats:italic>., pp. 1226–1234 of this issue. To view this paper visit <jats:ext-link xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="http://dx.doi.org/10.1111/j.1476-5381.2011.01591.x">http://dx.doi.org/10.1111/j.1476‐5381.2011.01591.x</jats:ext-link></jats:p>
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spelling Ventura, S 0007-1188 1476-5381 Wiley Pharmacology http://dx.doi.org/10.1111/j.1476-5381.2011.01663.x <jats:p>The α<jats:sub>1A</jats:sub>‐adrenoceptor is therapeutically exploited because of its prevalence in the lower urinary tract. The pharmacology shown by this lower urinary tract α<jats:sub>1A</jats:sub>‐adrenoceptor is different from that shown by other α<jats:sub>1A</jats:sub>‐adrenoceptors, which has led to it being subclassified as an α<jats:sub>1L</jats:sub>‐adrenoceptor. Only in the last few years was it shown that this pharmacologically distinct α<jats:sub>1L</jats:sub>‐adrenoceptor is a product of the α<jats:sub>1A</jats:sub>‐adrenoceptor gene. In this issue of the <jats:italic>BJP</jats:italic>, Nishimune <jats:italic>et al</jats:italic>. review the literature on α<jats:sub>1L</jats:sub>‐adrenoceptor pharmacology and discuss the possible molecular mechanisms by which the α<jats:sub>1A</jats:sub>‐adrenoceptor gene is able to produce two pharmacologically distinct adrenoceptor subtypes. Based primarily from their own research using cell lines transfected with α<jats:sub>1A</jats:sub>‐adrenoceptors, they conclude that a protein that interacts with the receptor is the most plausible explanation. The challenge remains to identify any such interacting protein and show how it is able to change the pharmacology of the receptor for different ligands.</jats:p><jats:p><jats:bold>LINKED ARTICLE</jats:bold> This article is a commentary on Nishimune <jats:italic>et al</jats:italic>., pp. 1226–1234 of this issue. To view this paper visit <jats:ext-link xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="http://dx.doi.org/10.1111/j.1476-5381.2011.01591.x">http://dx.doi.org/10.1111/j.1476‐5381.2011.01591.x</jats:ext-link></jats:p> What makes the α<sub>1A</sub>‐adrenoceptor gene express the α<sub>1L</sub>‐adrenoceptor functional phenotype? British Journal of Pharmacology
spellingShingle Ventura, S, British Journal of Pharmacology, What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?, Pharmacology
title What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_full What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_fullStr What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_full_unstemmed What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_short What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
title_sort what makes the α<sub>1a</sub>‐adrenoceptor gene express the α<sub>1l</sub>‐adrenoceptor functional phenotype?
title_unstemmed What makes the α1A‐adrenoceptor gene express the α1L‐adrenoceptor functional phenotype?
topic Pharmacology
url http://dx.doi.org/10.1111/j.1476-5381.2011.01663.x