Multiple regulatory roles of the carboxy terminus of Ste2p a yeast GPCR

作者:Kim Kyeong Man; Lee Yong Hun; Akal Strader Ayca; Uddin M Seraj; Hauser Melinda; Naider Fred; Becker Jeffrey M*
来源:Pharmacological Research, 2012, 65(1): 31-40.
DOI:10.1016/j.phrs.2011.11.002

摘要

Signaling and internalization of Ste2p, a model G protein-coupled receptor (GPCR) from the yeast Saccharomyces cerevisiae, are reported to be regulated by phosphorylation status of serine (S) and threonine (T) residues located in the cytoplasmic C-terminus. Although the functional roles of S/T residues located in certain C-terminus regions are relatively well characterized, systemic analyses have not been conducted for all the S/T residues that are spread throughout the C-terminus. A point mutation to alanine was introduced into the S/T residues located within three intracellular loops and the C-terminus individually or in combination. A series of functional assays such as internalization, FUS1-lacZ induction, and growth arrest were conducted in comparison between WT- and mutant Ste2p. The Ste2p in which all SIT residues in the C-terminus were mutated to alanine was more sensitive to alpha-factor, suggesting that phosphorylation in the C-terminus exerts negative regulatory activities on the Ste2p signaling. C-terminal SIT residues proximal to the seventh transmembrane domain were important for ligand-induced G protein coupling but not for receptor internalization. Sites on the central region of the C-terminus regulated both constitutive and ligand-induced internalization. Residues on the distal part were important for constitutive desensitization and modulated the G protein signaling mediated through the proximal part of the C-terminus. This study demonstrated that the C-terminus contains multiple functional domains with differential and interdependent roles in regulating Ste2p function in which the SIT residues located in each domain play critical roles.

  • 出版日期2012-1