>> Signaling Pathways >> GPCR/G protein >> RGS Protein

RGS Protein

RGS (Regulators of G protein signaling) are protein structural domains that activate GTPases for heterotrimeric G-protein alpha-subunits. RGS proteins are multi-functional, GTPase-accelerating proteins that promote GTP hydrolysis by the alpha subunit of heterotrimeric G proteins, thereby inactivating the G protein and rapidly switching off G protein-coupled receptor signaling pathways. Upon activation by GPCRs, heterotrimeric G proteins exchange GDP for GTP, are released from the receptor, and dissociate into free, active GTP-bound alpha subunit and beta-gamma dimer, both of which activate downstream effectors. The response is terminated upon GTP hydrolysis by the alpha subunit, which can then bind the beta-gamma dimer and the receptor. RGS proteins markedly reduce the lifespan of GTP-bound alpha subunits by stabilising the G protein transition state. All RGS proteins contain an RGS-box (or RGS domain), which is required for activity. Some small RGS proteins such as RGS1 and RGS4 are little more than an RGS domain, while others also contain additional domains that confer further functionality.

Targets for  RGS Protein

Products for  RGS Protein

  1. Cat.No. 상품명 정보
  2. GC30875 CCG 203769 CCG 203769는 17nM의 IC50으로 시험관 내에서 RGS4-Gαo 단백질-단백질 상호작용을 차단하는 선택적 G 단백질 신호(RGS4) 억제제입니다. CCG 203769  Chemical Structure
  3. GC16137 CCG 2046 CCG 2046은 RGS4 억제제로서 IC50이 4.3 μM인 RGS4-Gαo 상호작용 신호입니다. CCG 2046  Chemical Structure
  4. GC16846 CCG 50014 CCG 50014는 G-단백질 신호전달 단백질 4형(RGS4)(IC50 \u003d 30nM)의 조절인자에 대해 가장 강력하고 다른 RGS 단백질에 비해 RGS4에 대해 \u003e20배 선택성입니다. CCG 50014  Chemical Structure
  5. GC10658 CCG-63802 CCG-63802  Chemical Structure
  6. GC14412 CCG-63808 CCG-63808  Chemical Structure

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