Literature DB >> 16595170

Functional consequences of naturally occurring DRY motif variants in the mammalian chemoattractant receptor GPR33.

Holger Römpler1, Hon-Tsen Yu, Antje Arnold, Annie Orth, Torsten Schöneberg.   

Abstract

Most members of the large family of rhodopsin-like G-protein-coupled receptors possess an evolutionarily conserved Asp-Arg-Tyr (DRY) motif in the C-terminal region of the third transmembrane domain. Mutations of residues within this motif usually abolish receptor function and, when they occur naturally, can even cause human diseases. By analyzing over 100 mammalian orthologs of the chemoattractant receptor GPR33 we identified several polymorphic and fixed sequence variations within the DRY motif. Unexpectedly, the naturally occurring mutation of Arg(3.50) to His in mouse GPR33 showed no difference from the wild-type receptor in several functional tests. Sequence analysis of GPR33 from Asian house mice revealed the polymorphic existence of Arg(3.50) and His(3.50) alleles in wild-trapped populations, further supporting the functional equivalence of both allelic variants. In contrast, the Arg(3.50) to Gly mutation found in hamster GPR33 inactivates the receptor and may have contributed to pseudogenization of this gene in this species. Functional data with GPR33 variants indicate different receptor- and context-specific consequences of DRY mutations. Our study also reveals GPR33 as a new example illustrating missense mutations as a first step in the pseudogenization process.

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Year:  2006        PMID: 16595170     DOI: 10.1016/j.ygeno.2006.02.009

Source DB:  PubMed          Journal:  Genomics        ISSN: 0888-7543            Impact factor:   5.736


  13 in total

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4.  Determinants involved in subtype-specific functions of rat trace amine-associated receptors 1 and 4.

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6.  Mutation of the histidin residue of the DRH motif in vasopressin V2 receptor expression and function.

Authors:  H Mir Mohammad Sadeghi; M Rabbani; A Jafarian; H Najafzadeh; L Safaeian
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7.  Structural and functional evolution of the P2Y(12)-like receptor group.

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Review 10.  G Protein-Coupled Receptor Systems as Crucial Regulators of DNA Damage Response Processes.

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Journal:  Int J Mol Sci       Date:  2018-09-26       Impact factor: 5.923

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