Literature DB >> 7852866

Non-sterol regulation of low density lipoprotein receptor gene expression in T cells.

R S Makar1, P E Lipsky, J A Cuthbert.   

Abstract

Non-sterol regulation of low density lipoprotein (LDL) receptor gene expression was examined in a mitogen-responsive human T cell line. Stimulation of the leukemic T cell line Jurkat with the phorbol ester phorbol 12-myristate 13-acetate (PMA) and the calcium ionophore ionomycin rapidly and transiently increased LDL receptor mRNA levels. Inhibition of protein synthesis with cycloheximide (CHX) or puromycin resulted in superinduction of LDL receptor mRNA levels by mitogenic stimulation. The increase in LDL receptor mRNA levels resulted from increased gene transcription rather than stabilization of mRNA half-life. Thus, similar results were obtained when reporter gene expression was assessed in Jurkat cells transfected with LDL receptor promoter constructs and mRNA half-life was not significantly altered by the stimuli. Neither mitogenic induction nor superinduction of LDL receptor mRNA levels in Jurkat cells was prevented by sterol downregulation of LDL receptor gene expression. The protein synthesis inhibitors CHX and anisomycin, but not puromycin, also directly stimulated LDL receptor mRNA levels, suggesting that these compounds could provide a signal required for LDL receptor gene transcription. Taken together, these data indicate that various non-sterol stimuli, including activation of protein kinase C, increases in intracellular calcium, inhibition of protein synthesis, and signals generated by the protein synthesis inhibitors CHX and anisomycin, induce LDL receptor gene expression. Thus, transcription of the LDL receptor gene is not only regulated by ambient sterols but also by a variety of influences that govern the various primary response or immediate early genes. These stimuli may play an important role in normal regulation of LDL receptor gene expression.

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Year:  1994        PMID: 7852866

Source DB:  PubMed          Journal:  J Lipid Res        ISSN: 0022-2275            Impact factor:   5.922


  4 in total

1.  An improved method on stimulated T-lymphocytes to functionally characterize novel and known LDLR mutations.

Authors:  Maria Romano; Maria Donata Di Taranto; Peppino Mirabelli; Maria Nicoletta D'Agostino; Arcangelo Iannuzzi; Gennaro Marotta; Marco Gentile; Maddalena Raia; Rosa Di Noto; Luigi Del Vecchio; Paolo Rubba; Giuliana Fortunato
Journal:  J Lipid Res       Date:  2011-08-24       Impact factor: 5.922

2.  Growth modulation of low density lipoprotein receptor sterol sensitivity in cultured human fibroblasts.

Authors:  L Tatidis; S Vitols
Journal:  Lipids       Date:  2001-11       Impact factor: 1.880

3.  Modulation of hepatic apolipoprotein B, 3-hydroxy-3-methylglutaryl-CoA reductase and low-density lipoprotein receptor mRNA and plasma lipoprotein concentrations by defined dietary fats. Comparison of trimyristin, tripalmitin, tristearin and triolein.

Authors:  A J Bennett; M A Billett; A M Salter; E H Mangiapane; J S Bruce; K L Anderton; C B Marenah; N Lawson; D A White
Journal:  Biochem J       Date:  1995-10-01       Impact factor: 3.857

4.  Acute Myelogenous Leukemia Cells Secrete Factors that Stimulate Cellular LDL Uptake via Autocrine and Paracrine Mechanisms.

Authors:  Hasanuzzaman Bhuiyan; Michèle Masquelier; Loukas Tatidis; Astrid Gruber; Christer Paul; Sigurd Vitols
Journal:  Lipids       Date:  2017-05-09       Impact factor: 1.880

  4 in total

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