MUTATIONS OF MUSCARINIC CHOLINERGIC RECEPTOR GENES
MUTATIONS OF MUSCARINIC CHOLINERGIC RECEPTOR GENES
批准号:
3302031
负责人:
WOLFGANG SADEE
金额:
$16.67万
依托单位国家:
美国
项目类别:
财政年份:
1989
资助国家:
美国
项目状态:
已结题
起止时间:
1989-12-01 至 1993-11-30
关键词:
G protein cyclic AMP gene expression immunochemistry membrane proteins messenger RNA muscarinic receptor nucleic acid sequence protein structure protein structure function receptor binding receptor coupling receptor sensitivity second messengers tissue mosaicism transfection transposon /insertion element
中文摘要
毒蕈碱类胆碱能受体具有重要的生理功能
英文摘要
Muscarinic cholinergic receptors have important physiological functions
throughout the body and are potential sites for therapeutic drug
intervention in pathological states such as chronic obstructive pulmonary
disease, spastic colon disease, and Alzheimer's disease. Recently,
molecular cloning techniques have demonstrated the existence of at least
five distinct genes encoding for the muscarinic receptors. Individual
subtypes of these receptors display different affinities for muscarinic
cholinergic drugs and are differentially expressed in various organs of
the body. These receptors couple with varying selectivity, via several G
regulatory proteins, to three major second messenger systems: adenylyl
cyclase-cAMP, phosphatidyl inositol turnover, and Ca++ and K+ channels.
Insight into the different functions of the individual muscarinic
receptors at the molecular level would prove valuable for the design of
specific cholinergic drugs. The primary goals of the this project are,
first, to define the amino acid residues involved in ligand binding and ,
second, to analyze those sequence domains involved in second messenger
coupling and those governing receptor desensitization and internalization.
The framework of these goals will allow us to test the hypothesis that
dynamic rearrangements of the seven membrane spanning regions found in
these receptor molecules determine whether the receptors are active or
inactive. Our experimental approach will be to introduce a series of
mutations into the muscarinic receptor genes and test the effects of each
mutation on the functional state of the receptor after transfection and
expression of the mutated genes in suitable mammalian target cells. To
facilitate interpretation of the results, a combination of site specific
mutagenesis, deletion mutation, and chimera formation will be employed in
an iterative fashion. Our results will be compared to data previously
obtained from other members of the some superfamily of receptors capable
of coupling to second messengers via G proteins, particularly the
adrenergic receptors. The project will provide a better understanding of
the domains of the muscarinic cholinergic receptors involved in ligand
binding, coupling, and regulation.
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依托单位:
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依托单位:
海外基金