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ALTERNATIVE SPLICING OF A POTASSIUM CHANNEL GENE

ALTERNATIVE SPLICING OF A POTASSIUM CHANNEL GENE
钾通道基因的选择性剪接
批准号:
6126223
负责人:
Linda E Iverson
金额:
$30.13万
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:
1990-01-01 至 2002-11-30

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DESCRIPTION: Alternative splicing of precursor-RNA is a common genetic regulatory mechanism that gives rise to multiple protein isoforms with distinct functional properties. Alternative splicing is particularly common in excitable cells such as nerve and muscle where many of the genes encoding ion channels and muscle contractile proteins show extremely complex tissue-and cell-type specific splicing patterns. These gene products play critical roles in determining properties of excitability and contractility suggesting that alternative splicing is a key regulatory step in the expression of genes essential for maintenance of normal function of nerve and muscle. Most studies of alternative splicing rely on in vitro systems. As a result, little is know about the cis-elements or trans-acting factors that act in concert to determine tissue-specific splicing patterns. In the research described here, the Shaker (Sh) gene of Drosophila melanogaster is being used as a model system to examine the in vivo mechanisms of regulation of alternative splicing that result in tissue-specific splicing that result in tissue-specific expression of kinetically distinct potassium ion (K+) channels. Using lacZ as a reporter gene for regulated splicing activity in transgenic animals, we have demonstrated that a 240 nuc. intron region contains the cis-elements required for correct splice choice in the indirect flight muscles and that splicing in this tissue is positively regulated. The cis-elements will be more precisely defined by in vivo analysis of splicing patterns in transformants carrying deletions and insertions of this 240 nuc. region and by sequence comparison to the corresponding introns from Drosophila virilis. Once the cis-elements have been defined, the project will be extended to identify the trans-acting factors that recognize and bind to the cis-ehancer by UV crosslinking and Northwestern analysis of nuclear proteins to synthetic RNA containing the cis-elements. Isolation of cDNA clones encoding the trans-acting splicing factors that recognize and bind to the cis-will be accomplished either by direct screening of an embryonic expression library using the cis-elements as probes, screening an expression library using a yeast three-hybrid system, or biochemical purification followed by peptide sequence determination and screening the library by conventional hybridization methods. The results of these experiments will provide a crucial link between in vitro and in vivo splicing studies and are expected to be applicable to mechanisms of alternative splicing in all organisms. The importance of examining the regulation of alternative splicing of a K+ channel gene is underscored by recent evidence indicating that many of the mammalian K+ channels genes are alternatively spliced and a number of human hereditary diseases of muscle including Long QT syndrome.
期刊论文(8)
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DOI: 10.1073/pnas.95.20.11703
发表时间: 1998-09
期刊: Proceedings of the National Academy of Sciences of the United States of America
影响因子: 11.1
作者: [V. Avdonin;J. Kasuya;M. Ciorba;B. Kaplan;Toshinori Hoshi;Linda E. Iverson]
通讯作者: V. Avdonin;J. Kasuya;M. Ciorba;B. Kaplan;Toshinori Hoshi;Linda E. Iverson
Tissue-specific alternative splicing of Shaker potassium channel transcripts results from distinct modes of regulating 3' splice choice.
Shaker 钾通道转录本的组织特异性选择性剪接源自调节 3 剪接选择的不同模式。
DOI: --
发表时间: 1997
期刊: Journal of neurobiology
影响因子: --
作者: [Iverson,LE, Mottes,JR, Yeager,SA, Germeraad,SE]
通讯作者: Germeraad,SE
Functional expression of Shaker K+ channels in cultured Drosophila "giant" neurons derived from Sh cDNA transformants: distinct properties, distribution, and turnover.
Shaker K 通道在源自 Sh cDNA 转化体的培养果蝇“巨型”神经元中的功能表达:独特的特性、分布和周转。
DOI: 10.1523/jneurosci.15-02-01406.1995
发表时间: 1995
期刊: The Journal of neuroscience : the official journal of the Society for Neuroscience.
影响因子: --
作者: [Zhao,ML, Sable,EO, Iverson,LE, Wu,CF]
通讯作者: Wu,CF
INITIATION OF CELL DEATH BY POTASSIUM CHANNEL BLOCK
INITIATION OF CELL DEATH BY POTASSIUM CHANNEL BLOCK
INITIATION OF CELL DEATH BY POTASSIUM CHANNEL BLOCK
INITIATION OF CELL DEATH BY POTASSIUM CHANNEL BLOCK
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