LCR-activated expression of cloned K+ channel genes in mammalian cells
The human beta-globin LCR confers high levels of expression on cis linked cDNAs and genes under control of the beta-globin promoter, and certain genes under control of their native promoter elements. This heterologous expression is copy-number-dependent and position-independent in the nucleii of ery...
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ndltd-bl.uk-oai-ethos.bl.uk-7374452019-03-05T15:47:06ZLCR-activated expression of cloned K+ channel genes in mammalian cellsShelton, Philip Andrew1993The human beta-globin LCR confers high levels of expression on cis linked cDNAs and genes under control of the beta-globin promoter, and certain genes under control of their native promoter elements. This heterologous expression is copy-number-dependent and position-independent in the nucleii of erythroid specific cells. Mouse erythroleukemia (MEL) cells have been established as being electrophysiologically quiet with respect to K+ channels and suitable for patch-clamp analysis. Furthermore, the MEL-cell line has been utilized as an erythroid-specific host for the stable expression of mammalian delayed rectifier (RCKl), transient (A-type) {RatShal and hPCN2) and inward rectifier type (IRK1) voltage-activated K+ channel cDNAs under control of the beta-globin promoter. Parallel work has allowed the characterisation of a novel human delayed- rectifier type K+ channel (hCDRl) from human chromosomal DNA, and an analysis of the hCDRl gene promoter region has been initiated. Furthermore, a 5.2kb Bg/II-generated DNA fragment (hCDR15.2) containing the full hCDRl coding-region and 2.4kb of upstream chromosomal sequence was isolated. hCDR15.2 has been linked to the human beta-globin LCR and activation of native hCDRl promoter elements in MEL-cell nucleii and subsequent detection of expressed hCDRl homotetramers was achieved by patch-clamp analysis. Finally, the establishment of a gene-activation library for the functional expression of novel and existing K+ channel genes has been attempted. A rabbit genomic DNA cosmid library was constructed with firstly a 1kb (nanolocus) LCR cassette shown to confer 30-40% full LCR activity and secondly a full LCR (6.5kb) based vector. 14 different nanolocus-based rabbit genomic cosmid library clones, shown to be homologues of voltage-activated K+ channel sequences, were isolated. No detectable expression was observed from any of these clones after stable integration into MEL-cell nucleii. Transcriptional silencing and insulation have been discussed as probable reasons for the lack of detectable expression from these 14 clones.572University of Leicesterhttps://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.737445http://hdl.handle.net/2381/35149Electronic Thesis or Dissertation |
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572 Shelton, Philip Andrew LCR-activated expression of cloned K+ channel genes in mammalian cells |
description |
The human beta-globin LCR confers high levels of expression on cis linked cDNAs and genes under control of the beta-globin promoter, and certain genes under control of their native promoter elements. This heterologous expression is copy-number-dependent and position-independent in the nucleii of erythroid specific cells. Mouse erythroleukemia (MEL) cells have been established as being electrophysiologically quiet with respect to K+ channels and suitable for patch-clamp analysis. Furthermore, the MEL-cell line has been utilized as an erythroid-specific host for the stable expression of mammalian delayed rectifier (RCKl), transient (A-type) {RatShal and hPCN2) and inward rectifier type (IRK1) voltage-activated K+ channel cDNAs under control of the beta-globin promoter. Parallel work has allowed the characterisation of a novel human delayed- rectifier type K+ channel (hCDRl) from human chromosomal DNA, and an analysis of the hCDRl gene promoter region has been initiated. Furthermore, a 5.2kb Bg/II-generated DNA fragment (hCDR15.2) containing the full hCDRl coding-region and 2.4kb of upstream chromosomal sequence was isolated. hCDR15.2 has been linked to the human beta-globin LCR and activation of native hCDRl promoter elements in MEL-cell nucleii and subsequent detection of expressed hCDRl homotetramers was achieved by patch-clamp analysis. Finally, the establishment of a gene-activation library for the functional expression of novel and existing K+ channel genes has been attempted. A rabbit genomic DNA cosmid library was constructed with firstly a 1kb (nanolocus) LCR cassette shown to confer 30-40% full LCR activity and secondly a full LCR (6.5kb) based vector. 14 different nanolocus-based rabbit genomic cosmid library clones, shown to be homologues of voltage-activated K+ channel sequences, were isolated. No detectable expression was observed from any of these clones after stable integration into MEL-cell nucleii. Transcriptional silencing and insulation have been discussed as probable reasons for the lack of detectable expression from these 14 clones. |
author |
Shelton, Philip Andrew |
author_facet |
Shelton, Philip Andrew |
author_sort |
Shelton, Philip Andrew |
title |
LCR-activated expression of cloned K+ channel genes in mammalian cells |
title_short |
LCR-activated expression of cloned K+ channel genes in mammalian cells |
title_full |
LCR-activated expression of cloned K+ channel genes in mammalian cells |
title_fullStr |
LCR-activated expression of cloned K+ channel genes in mammalian cells |
title_full_unstemmed |
LCR-activated expression of cloned K+ channel genes in mammalian cells |
title_sort |
lcr-activated expression of cloned k+ channel genes in mammalian cells |
publisher |
University of Leicester |
publishDate |
1993 |
url |
https://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.737445 |
work_keys_str_mv |
AT sheltonphilipandrew lcractivatedexpressionofclonedkchannelgenesinmammaliancells |
_version_ |
1718997136674127872 |