Gタンパク質共役型受容体機能の会合タンパク質による調節(誌上シンポジウム)  [in Japanese] Regulation of G Protein-coupled Receptor Function by Its Binding Proteins(Symposium Review)  [in Japanese]

    • 中畑 則道 NAKAHATA Norimichi
    • 東北大学大学院薬学研究科細胞情報薬学分野:東北大学21世紀COEプログラム"CRESCENDO" Department of Cellular Signaling, Graduate School of Pharmaceutical Sciences, Tohoku University:Tohoku University 21st Century COE Program "CRESCENDO"
    • 斎藤 将樹 SAITO Masaki
    • 東北大学大学院薬学研究科細胞情報薬学分野:東北大学21世紀COEプログラム"CRESCENDO" Department of Cellular Signaling, Graduate School of Pharmaceutical Sciences, Tohoku University:Tohoku University 21st Century COE Program "CRESCENDO"

Abstract

G protein-coupled receptors (GPCRs) are seven transmembrane receptors with an N-terminus in the extracellular region and C-terminus in the intracellular region. When an agonist binds to a GPCR, a signal is transduced into a cell through the activation of trimeric G proteins. Recently, it has been shown that the activities of GPCRs are regulated by multiple mechanisms. One of the mechanisms is regulation through the binding proteins to the carboxy (C)-terminus of GPCRs. In the present study, the binding partners for the C-terminus of the parathyroid hormone receptor (PTHR) and thromboxane A_2 receptor (TP) were searched for using yeast two-hybrid screening, and the functions of these proteins were investigated. We identified t-complex testis expressed-1 (Tctex-1) and 4.1G as associated proteins for the PTHR. Tctex-1 is one of the light chains of cytoplasmic dynein, which is a motor protein across microtubles. We found that Tctex-1 was involved in agonist-induced internalization of the PTHR. 4.1G, a cytoskeletal protein, facilitated the cell surface localization of the PTHR and augmented PHTR-mediated signal transduction. TPs consists of two splicing variants, TPα and TPβ. As a result of yeast two-hybrid screening, two proteasomal proteins, proteasome activator PA28γ and proteasome subunit α7, were identified as direct interacting proteins for TPβ. TPβ has a tendency to be retained in the intracellular compartment, probably due to its binding to proteasomes. We also demonstrated that TPα and TPβ formed heterodimers, and the signal transduction through TPα was reduced by the formation of heterodimers. In conclusion, the proteins bound to GPCRs may regulate the intracellular traffic of GPCRs.

Journal

Journal of the Pharmaceutical Society of Japan   [List of Volumes]

Journal of the Pharmaceutical Society of Japan 127(1), 3-14, 2007-01-01  [Table of Contents]

The Pharmaceutical Society of Japan

References:  80

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Codes

  • NII Article ID (NAID) :
    110006155005
  • NII NACSIS-CAT ID (NCID) :
    AN00284903
  • Text Lang :
    JPN
  • Article Type :
    REV
  • ISSN :
    00316903
  • NDL Article ID :
    8631772
  • NDL Source Classification :
    ZS51(科学技術--薬学)
  • NDL Call No. :
    Z19-411
  • Databases :
    CJP  NDL  NII-ELS  J-STAGE