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REGULATORY DOMAINS OF G PROTEIN COUPLED RECEPTORS

REGULATORY DOMAINS OF G PROTEIN COUPLED RECEPTORS
G 蛋白偶联受体的调控域
批准号:
6476510
负责人:
Ellen Ruth Weiss
金额:
$24.94万
依托单位国家:
美国
项目类别:
财政年份:
1990
资助国家:
美国
项目状态:
已结题
起止时间:
1990-07-01 至 2003-11-30

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项目成果

Ellen Ruth Weiss的其他基金

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中文摘要
翻译
G蛋白偶联受体是一类细胞表面受体
英文摘要
G protein-coupled receptors are a family of cell surface receptors that regulate G protein signaling pathways in response to a variety of environmental stimuli. These events are important in the control of growth, differentiation and metabolism in eukaryotic cells through the stimulation of second messengers, phosphorylation cascades and the regulation of ion channels. Control of the lifetime of an active receptor through a process known as desensitization is a critical aspect of the regulation of G protein signaling pathways. Rhodopsin, the photoreceptor of the vertebrate rod cell, has been used as a structural model for investigating the interactions between G protein-coupled receptors and their G proteins, as well as the G protein-coupled receptor kinases and arrestins that mediate receptor desensitization. Previously, our laboratory identified several nonoverlapping domains on the surface of rhodopsin that are involved in Gt activation, interaction with rhodopsin kinase and arrestin. The aim of the present proposal is to provide an in-depth understanding of the molecular roles played by domains that we have identified in the regulation of receptor desensitization. In order to achieve this goal, clustered alanine mutations will be separated into individual alanine point mutants and tested for their ability to be phosphorylated and to bind arrestin. Additional mutations will be made at these sites to determine the requirement for charge, hydrophobicity, size or specific secondary structure. The mutants that affect phosphorylation will be analyzed to determine whether these sites are important for binding rhodopsin kinase, regulating its activity, or both. Mutants that affect arrestin binding will be examined to determine whether they are part of a high- affinity binding site on the surface of rhodopsin or whether they are important in regulating the transition of arrestin from a low to a high affinity form. Mutants of the highly conserved amino acid Arg-135, was shown by our laboratory to be phosphorylated and to bind arrestin in the absence of 11-cis-retinal. Additional substitution mutagenesis will be performed to analyze the requirement for specific amino acids or secondary structure at this site. The consequences of retinal- independent phosphorylation and arrestin binding on the ability of these mutants to activate Gt will also be performed. A better understanding of the mechanisms by which the cytoplasmic domains of rhodopsin control G protein activation and desensitization will aid in defining potential mechanisms of disease resulting from defects in G protein-coupled receptor signaling pathways and in designing therapeutic strategies.
期刊论文(16)
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会议论文
Direct binding of visual arrestin to a rhodopsin carboxyl terminal synthetic phosphopeptide.
视觉抑制蛋白与视紫红质羧基末端合成磷酸肽的直接结合。
DOI: --
发表时间: 2004
期刊: Molecular vision [electronic resource].
影响因子: --
作者: [Liu,Peng, Roush,EricD, Bruno,JoAnne, Osawa,Shoji, Weiss,EllenR]
通讯作者: Weiss,EllenR
Inhibition of cell differentiation by G alpha q in the renal epithelial cell line LLC-PK1.
G α q 对肾上皮细胞系 LLC-PK1 中细胞分化的抑制。
DOI: 10.1152/ajpcell.1998.274.4.c1030
发表时间: 1998
期刊: The American journal of physiology
影响因子: --
作者: [Sun,L, Weaver,DJ, Amsler,K, Weiss,ER]
通讯作者: Weiss,ER
The carboxyl terminus of bovine rhodopsin is not required for G protein activation.
G 蛋白激活不需要牛视紫红质的羧基末端。
DOI: --
发表时间: 1994
期刊: Molecular pharmacology
影响因子: 3.6
作者: [Osawa,S, Weiss,ER]
通讯作者: Weiss,ER
DOI: --
发表时间: 2002-12
期刊: Molecular vision
影响因子: 2.2
作者: [Xuemei Zhu;Aimin Li;B. Brown;E. Weiss;S. Osawa;C. Craft]
通讯作者: Xuemei Zhu;Aimin Li;B. Brown;E. Weiss;S. Osawa;C. Craft
12
    Identification of novel contributors to retinitis pigmentosa using metabolic and proteomic approaches
    SOX2 maintains quiescent progenitor cell state of retinal Muller glia
    SOX2 maintains quiescent progenitor cell state of retinal M^ller glia
    The Role of Phosphorylation in Photoreceptor Cell Biology
    海外基金