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PMID: 7568086 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Reduction of insulin gene transcription in HIT-T15 beta cells chronically exposed to a supraphysiologic glucose concentration is associated with loss of STF-1 transcription factor expression.

Olson LK, Sharma A, Peshavaria M, Wright CV, Towle HC, Rodertson RP, Stein R

Abstract

Chronic exposure of HIT-T15 beta cells to elevated glucose concentrations leads to decreased insulin gene transcription. The reduction in expression is accompanied by diminished binding of a glucose-sensitive transcription factor (termed GSTF) that interacts with two (A+T)-rich elements within the 5' flanking control region of the insulin gene. In this study we examined whether GSTF corresponds to the recently cloned insulin gene transcription factor STF-1, a homeodomain protein whose expression is restricted to the nucleus of endodermal cells of the duodenum and pancreas. We found that an affinity-purified antibody recognizing STF-1 supershifted the GSTF activator complex formed from HIT-T15 extracts. In addition, we demonstrated a reduction in STF-1 mRNA and protein levels that closely correlated with the change in GSTF binding in HIT-T15 cells chronically cultured under supraphysiologic glucose concentrations. The reduction in STF-1 expression in these cells could be accounted for by a change in the rate of STF-1 gene transcription, suggesting a posttranscriptional control mechanism. In support of this hypothesis, no STF-1 mRNA accumulated in HIT-T15 cells passaged in 11.1 mM glucose. The only RNA species detected was a 6.4-kb STF-1 RNA species that hybridized with 5' and 3' STF-1-specific cDNA probes. We suggest that the 6.4-kb RNA represents an STF-1 mRNA precursor and that splicing of this RNA is defective in these cells. Overall, this study suggests that reduced expression of a key transcriptional regulatory factor, STF-1, contributes to the decrease in insulin gene transcription in HIT-T15 cells chronically cultured in supraphysiologic glucose concentration.

MeSH Terms
3T3 Cells Animals Base Sequence Blotting, Northern Cell Line Cell Nucleus/metabolism Chloramphenicol O-Acetyltransferase/biosynthesis DNA Primers Gene Expression/drug effects Glucose/pharmacology Homeodomain Proteins/biosynthesis,metabolism Humans Insulin/biosynthesis,genetics Islets of Langerhans Mice Molecular Sequence Data Polymerase Chain Reaction Protein Biosynthesis RNA, Messenger/biosynthesis Recombinant Proteins/biosynthesis Trans-Activators/biosynthesis,metabolism Transcription Factors/biosynthesis Transcription, Genetic/drug effects
Chemicals
DNA Primers Homeodomain Proteins Insulin RNA, Messenger Recombinant Proteins Trans-Activators Transcription Factors pancreatic and duodenal homeobox 1 protein Chloramphenicol O-Acetyltransferase Glucose
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Olson L K
Department of Medicine, University of Minnesota, Minneapolis 55455, USA.
Sharma A
Peshavaria M
Wright C V
Towle H C
Rodertson R P
Stein R
References (38)
38 references, click to expand
  1. A tissue-specific nuclear factor binds to multiple sites in the human insulin-gene enhancer.
    Biochem J. 1989 Nov 15;264(1):233-9 PMID: 2690822
  2. Transcription activation by the adenovirus E1a protein.
    Nature. 1989 Mar 2;338(6210):39-44 PMID: 2521923
  3. Regulation of insulin gene expression by glucose and calcium in transfected primary islet cultures.
    J Biol Chem. 1990 Dec 25;265(36):22063-6 PMID: 1979979
  4. Glucose induces insulin gene transcription in a murine pancreatic beta-cell line.
    J Biol Chem. 1991 Jun 15;266(17):11141-3 PMID: 1710218
  5. Novel insulin promoter- and enhancer-binding proteins that discriminate between pancreatic alpha- and beta-cells.
    Mol Endocrinol. 1991 Jul;5(7):897-904 PMID: 1944296
  6. The insulin and islet amyloid polypeptide genes contain similar cell-specific promoter elements that bind identical beta-cell nuclear complexes.
    Mol Cell Biol. 1992 Apr;12(4):1777-88 PMID: 1549125
  7. Definition of the carbohydrate response element of the rat S14 gene. Evidence for a common factor required for carbohydrate regulation of hepatic genes.
    J Biol Chem. 1992 Jul 5;267(19):13222-8 PMID: 1618827
  8. Preservation of insulin mRNA levels and insulin secretion in HIT cells by avoidance of chronic exposure to high glucose concentrations.
    J Clin Invest. 1992 Aug;90(2):320-5 PMID: 1644911
  9. Multiple elements in the upstream glucokinase promoter contribute to transcription in insulinoma cells.
    Mol Cell Biol. 1992 Oct;12(10):4578-89 PMID: 1406648
  10. Mox-1 and Mox-2 define a novel homeobox gene subfamily and are differentially expressed during early mesodermal patterning in mouse embryos.
    Development. 1992 Dec;116(4):1123-36 PMID: 1363541
  11. Glucose modulates the binding of an islet-specific factor to a conserved sequence within the rat I and the human insulin promoters.
    Proc Natl Acad Sci U S A. 1993 May 1;90(9):3865-9 PMID: 8483904
  12. Chronic exposure of HIT cells to high glucose concentrations paradoxically decreases insulin gene transcription and alters binding of insulin gene regulatory protein.
    J Clin Invest. 1993 Jul;92(1):514-9 PMID: 8326016
  13. IPF1, a homeodomain-containing transactivator of the insulin gene.
    EMBO J. 1993 Nov;12(11):4251-9 PMID: 7901001
  14. Murine Cdx-4 bears striking similarities to the Drosophila caudal gene in its homeodomain sequence and early expression pattern.
    Mech Dev. 1993 Sep;43(1):71-81 PMID: 7902125
  15. Characterization of somatostatin transactivating factor-1, a novel homeobox factor that stimulates somatostatin expression in pancreatic islet cells.
    Mol Endocrinol. 1993 Oct;7(10):1275-83 PMID: 7505393
  16. Glucose-induced transcription of the insulin gene is mediated by factors required for beta-cell-type-specific expression.
    Mol Cell Biol. 1994 Feb;14(2):871-9 PMID: 8289826
  17. IDX-1: a new homeodomain transcription factor expressed in rat pancreatic islets and duodenum that transactivates the somatostatin gene.
    EMBO J. 1994 Mar 1;13(5):1145-56 PMID: 7907546
  18. The insulin gene contains multiple transcriptional elements that respond to glucose.
    Mol Cell Biol. 1994 Jun;14(6):4067-75 PMID: 8196645
  19. Differentiating glucose toxicity from glucose desensitization: a new message from the insulin gene.
    Diabetes. 1994 Sep;43(9):1085-9 PMID: 8070607
  20. XIHbox 8, an endoderm-specific Xenopus homeodomain protein, is closely related to a mammalian insulin gene transcription factor.
    Mol Endocrinol. 1994 Jun;8(6):806-16 PMID: 7935494
  21. Insulin-promoter-factor 1 is required for pancreas development in mice.
    Nature. 1994 Oct 13;371(6498):606-9 PMID: 7935793
  22. Transcriptional regulation of the human insulin gene is dependent on the homeodomain protein STF1/IPF1 acting through the CT boxes.
    Proc Natl Acad Sci U S A. 1994 Oct 25;91(22):10465-9 PMID: 7937976
  23. Expression of murine STF-1, a putative insulin gene transcription factor, in beta cells of pancreas, duodenal epithelium and pancreatic exocrine and endocrine progenitors during ontogeny.
    Development. 1995 Jan;121(1):11-8 PMID: 7867492
  24. Glucose toxicity.
    Diabetes Care. 1990 Jun;13(6):610-30 PMID: 2192847
  25. Transcriptional regulation of the ovalbumin and conalbumin genes by steroid hormones in chick oviduct.
    J Biol Chem. 1979 Sep 25;254(18):9050-8 PMID: 479179
  26. Direct effect of glucose on the preproinsulin mRNA level in isolated pancreatic islets.
    Biochem Biophys Res Commun. 1982 Jun 30;106(4):1383-9 PMID: 7052089
  27. Effects of glucose on proinsulin messenger RNA in rats in vivo.
    Diabetes. 1982 Jul;31(7):624-9 PMID: 6761201
  28. Isolation and characterization of full-length cDNA clones for human alpha-, beta-, and gamma-actin mRNAs: skeletal but not cytoplasmic actins have an amino-terminal cysteine that is subsequently removed.
    Mol Cell Biol. 1983 May;3(5):787-95 PMID: 6865942
  29. "A technique for radiolabeling DNA restriction endonuclease fragments to high specific activity". Addendum.
    Anal Biochem. 1984 Feb;137(1):266-7 PMID: 6329026
  30. Hyperglycaemia as an inducer as well as a consequence of impaired islet cell function and insulin resistance: implications for the management of diabetes.
    Diabetologia. 1985 Mar;28(3):119-21 PMID: 3888754
  31. Control of insulin gene expression in pancreatic beta-cells and in an insulin-producing cell line, RIN-5F cells. II. Regulation of insulin mRNA stability.
    J Biol Chem. 1985 Nov 5;260(25):13590-4 PMID: 3902821
  32. Glucose regulates preproinsulin messenger RNA levels in a clonal cell line of simian virus 40-transformed B cells.
    FEBS Lett. 1987 Mar 9;213(1):149-54 PMID: 3030804
  33. Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction.
    Anal Biochem. 1987 Apr;162(1):156-9 PMID: 2440339
  34. Regulation and specificity of glucose-stimulated insulin gene expression in human islets of Langerhans.
    FEBS Lett. 1987 Oct 19;223(1):131-7 PMID: 3311808
  35. A mutational analysis of the insulin gene transcription control region: expression in beta cells is dependent on two related sequences within the enhancer.
    Proc Natl Acad Sci U S A. 1987 Dec;84(24):8819-23 PMID: 3321054
  36. Single-step purification of polypeptides expressed in Escherichia coli as fusions with glutathione S-transferase.
    Gene. 1988 Jul 15;67(1):31-40 PMID: 3047011
  37. GAL4-VP16 is an unusually potent transcriptional activator.
    Nature. 1988 Oct 6;335(6190):563-4 PMID: 3047590
  38. Insulin secretion and cAMP metabolism in HIT cells. Reciprocal and serial passage-dependent relationships.
    Diabetes. 1989 Jan;38(1):44-8 PMID: 2535825
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1995-09-26
Pages
9127-31
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC40937
Subset
IM
Grants
NIDDK NIH HHS · DK R01-38325 · United States
NIDDK NIH HHS · DK-42502 · United States
NIDDK NIH HHS · F32-DK-08742 · United States
Corrections
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