Enzyme-coupled Receptor: Difference between revisions

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Enzyme-coupled receptors are a major kind of cell membrane receptors characterized either by having an intrinsic enzymatic activity on their cytosolic domain or by being coupled with an enzyme. These receptors are very diverse but they can be classified in six main classes<ref>Alberts, et al. Molecular Biology of the Cell. 5th ed. Garland Science. 2008</ref>:<br>  
Enzyme-coupled receptors are a major kind of cell membrane receptors characterized either by having an intrinsic enzymatic activity on their cytosolic domain or by being coupled with an [[Enzyme|enzyme]]. They have two main domains: ligand binding site on the outside and an enzyme binding (catalytic) domain on the inside of the cell. Enzyme-coupled receptors are single-pass transmembrane proteins<ref>Alberts B, Johnson A, Lewis J, Morgan D, Raff M, Roberts K, Walter P. Molecular Biology of the cell: Sixth Edition: 6th Ed. New York: Garland Science. 2015</ref>.<sup></sup>&nbsp;These receptors are very diverse but they can be classified in six main classes<ref>Alberts, et al. Molecular Biology of the Cell. 5th ed. Garland Science. 2008</ref>:<br>  


*'''Receptor tyrosine kinases (RTKs)''' usually phophorylate some of their own tyrosine residues. Once phosphorylated they become docking sites for other intracellular signalling proteins. RTKs include the [[Insuline receptor|insuline receptor]] and many growth factor receptors.<br>  
*'''Receptor tyrosine kinases (RTKs)''' usually phophorylate some of their own [[Tyrosine|tyrosine]] residues. Once phosphorylated they become docking sites for other intracellular signalling proteins. RTKs include the [[Insuline receptor|insuline receptor]] and many growth factor receptors.<br>  
*'''Tyrosine-kinase-associated receptors '''are coupled to tyrosine kinases (such as [[Src|Src]] or [[JAK|JAK]] kinases) on the cytosolic side of the membrane. Receptors for the [[Growth hormone|growth hormone]], [[Prolactin|prolactin]], [[Erythropoietin|erythropoietin]] and [[Alpha-interferon|alpha]] and [[Gamma interferon|gamma interferons]] are part of this group.<br>  
*'''Tyrosine-kinase-associated receptors '''are coupled to [[Tyrosine kinase|tyrosine kinases]] (such as [[Src|Src]] or [[JAK|JAK]] kinases) on the cytosolic side of the membrane. Receptors for the [[Growth hormone|growth hormone]], [[Prolactin|prolactin]], [[Erythropoietin|erythropoietin]] and [[Alpha-interferon|alpha]] and [[Gamma interferon|gamma interferons]] are part of this group.<br>  
*'''Receptor serine/threonine kinases '''phosphorylate serine and threonine residues on themselves or associated proteins. The receptor for the [[Transforming growth factor β|transforming growth factor β ]](TGFβ) acts as a serine/threonine kinase).<br>  
*'''Receptor serine/threonine kinases '''phosphorylate [[Serine|serine]] and [[Threonine|threonine]] residues on themselves or associated proteins. The receptor for the [[Transforming growth factor β|transforming growth factor β ]](TGFβ) acts as a [[Serine/threonine kinase|serine/threonine kinase]]).<br>  
*'''Histidine-kinase-associated receptors, '''important in bacterial [[Chemotaxis|chemotaxis]].  
*'''Histidine-kinase-associated receptors, '''important in bacterial [[Chemotaxis|chemotaxis]].  
*'''Receptor guanylyl cyclases''' act through the production of the second messenger [[CGMP|cGMP]].  
*'''Receptor guanylyl cyclases''' act through the production of the second messenger [[CGMP|cGMP]].  
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=== References  ===
=== References  ===


<references />  
<references /><br>


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Latest revision as of 16:03, 4 December 2016

Enzyme-coupled receptors are a major kind of cell membrane receptors characterized either by having an intrinsic enzymatic activity on their cytosolic domain or by being coupled with an enzyme. They have two main domains: ligand binding site on the outside and an enzyme binding (catalytic) domain on the inside of the cell. Enzyme-coupled receptors are single-pass transmembrane proteins[1]. These receptors are very diverse but they can be classified in six main classes[2]:

References

  1. Alberts B, Johnson A, Lewis J, Morgan D, Raff M, Roberts K, Walter P. Molecular Biology of the cell: Sixth Edition: 6th Ed. New York: Garland Science. 2015
  2. Alberts, et al. Molecular Biology of the Cell. 5th ed. Garland Science. 2008