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Query: EC:2.3.1.28 (
chloramphenicol acetyltransferase
)
5,100
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Islet-specific glucose-6-phosphatase (G6Pase) catalytic-subunit-related protein (
IGRP
) is a homologue of the catalytic subunit of G6Pase, the enzyme that catalyses the final step of the gluconeogenic pathway. The analysis of
IGRP
-
chloramphenicol acetyltransferase
(
CAT
) fusion-gene expression through transient transfection of islet-derived beta TC-3 cells revealed that multiple promoter regions, located between -306 and -97, are required for maximal
IGRP
-
CAT
fusion-gene expression. These regions correlated with trans -acting factor-binding sites in the
IGRP
promoter that were identified in beta TC-3 cells in situ using the ligation-mediated PCR (LMPCR) footprinting technique. However, the LMPCR data also revealed additional trans -acting factor-binding sites located between -97 and +1 that overlap two E-box motifs, even though this region by itself conferred minimal fusion-gene expression. The data presented here show that these E-box motifs are important for
IGRP
promoter activity, but that their action is only manifest in the presence of distal promoter elements. Thus mutation of either E-box motif in the context of the -306 to +3
IGRP
promoter region reduces fusion-gene expression. These two E-box motifs have distinct sequences and preferentially bind NeuroD/BETA2 (neurogenic differentiation/beta-cell E box transactivator 2) and upstream stimulatory factor (USF) in vitro, consistent with the binding of both factors to the
IGRP
promoter in situ, as determined using the chromatin-immunoprecipitation (ChIP) assay. Based on experiments using mutated
IGRP
promoter constructs, we propose a model to explain how the ubiquitously expressed USF could contribute to islet-specific
IGRP
gene expression.
...
PMID:Upstream stimulatory factor (USF) and neurogenic differentiation/beta-cell E box transactivator 2 (NeuroD/BETA2) contribute to islet-specific glucose-6-phosphatase catalytic-subunit-related protein (IGRP) gene expression. 1254 Feb 93
Islet-specific glucose-6-phosphatase catalytic subunit-related protein
(
IGRP
) is selectively expressed in islet beta cells and is a major autoantigen in a mouse model of type I diabetes. The analysis of
IGRP
-
chloramphenicol acetyltransferase
(
CAT
) fusion gene expression through transient transfection of islet-derived betaTC-3 cells revealed that a promoter region, located between -273 and -254, is essential for high
IGRP
-
CAT
fusion gene expression. The sequence of this promoter region does not match that for any known islet-enriched transcription factor. However, data derived from gel retardation assays, a modified ligation-mediated polymerase chain reaction in situ footprinting technique and a SDS-polyacrylamide separation/renaturation procedure led to the hypothesis that this protein might be Pax-6, a conclusion that was confirmed by gel supershift assays. Additional experiments revealed a second non-consensus Pax-6 binding site in the -306/-274
IGRP
promoter region. Pax-6 binding to these elements is unusual in that it appears to require both its homeo and paired domains. Interestingly, loss of Pax-6 binding to the -273/ -246 element is compensated by Pax-6 binding to the -306/-274 element and vice versa. Gel retardation assays revealed that another islet-enriched transcription factor, namely Pdx-1, binds four non-consensus elements in the
IGRP
promoter. However, mutation of these elements has little effect on
IGRP
fusion gene expression. Although chromatin immunoprecipitation assays show that both Pax-6 and Pdx-1 bind to the
IGRP
promoter within intact cells, in contrast to the critical role of these factors in beta cell-specific insulin gene expression,
IGRP
gene transcription appears to require Pax-6 but not Pdx-1.
...
PMID:Differential regulation of islet-specific glucose-6-phosphatase catalytic subunit-related protein gene transcription by Pax-6 and Pdx-1. 1518 Sep 90
We have previously reported the discovery of an
islet-specific glucose-6-phosphatase catalytic subunit-related protein
(
IGRP
) that is predominantly expressed in islet beta-cells.
IGRP
has recently been identified as a major autoantigen in a mouse model of type 1 diabetes. The analysis of
IGRP
-
chloramphenicol acetyltransferase
(
CAT
) fusion gene expression in transiently transfected islet-derived hamster insulinoma tumor and betaTC-3 cells revealed that the promoter region located between -306 and +3 confers high-level reporter gene expression. To determine whether this same promoter region is sufficient to confer islet beta-cell-specific gene expression in vivo, it was ligated to a beta-galactosidase reporter gene, and transgenic mice expressing the resulting fusion gene were generated. In two independent founder lines, this -306 to +3 promoter region was sufficient to drive beta-galactosidase expression in newborn mouse islets, predominantly in beta-cells, which was initiated during the expected time in development, around embryonic day 12.5. However, unlike the endogenous
IGRP
gene, beta-galactosidase expression was also detected in the cerebellum. Moreover, beta-galactosidase expression was almost completely absent in adult mouse islets, suggesting that cis-acting elements elsewhere in the
IGRP
gene are required for determining appropriate
IGRP
tissue-specific expression and for the maintenance of
IGRP
gene expression in adult mice.
...
PMID:The proximal islet-specific glucose-6-phosphatase catalytic subunit-related protein autoantigen promoter is sufficient to initiate but not maintain transgene expression in mouse islets in vivo. 1522 Jan 99