Abstract

Apolipoprotein D (apoD) and apolipoprotein E (apoE) are co-expressed in many tissues, and, in certain neuropathological situations, their expression appears to be under coordinate regulation. We have previously shown that apoD gene expression in cultured human fibroblasts is up-regulated when the cells undergo growth arrest. Here, we demonstrate that, starting around day 2 of growth arrest, both apoD and apoE mRNA levels increase between 1.5- and 27-fold in other cell types, including mouse primary fibroblasts and fibroblast-like and human astrocytoma cell lines. To understand the regulatory mechanisms of apoD expression, we have used apoD promoter-luciferase reporter constructs to compare gene expression in growing cells and in cells that have undergone growth arrest. Analysis of gene expression in cells transfected with constructs with deletions and mutations in the apoD promoter and constructs with artificial promoters demonstrated that the region between nucleotides -174 and -4 is fully responsible for the basal gene expression, whereas the region from -558 to -179 is implicated in the induction of apoD expression following growth arrest. Within this region, an alternating purine-pyrimidine stretch and a pair of serum-responsive elements (SRE) were found to be major determinants of growth arrest-induced apoD gene expression. Evidence is also presented that SREs in the apoE promoter may contribute to the up-regulation of apoE gene expression following growth arrest.

Highlights

  • Apolipoprotein D and apolipoprotein E are co-expressed in many tissues, and, in certain neuropathological situations, their expression appears to be under coordinate regulation

  • We have previously shown that Apolipoprotein D (apoD) expression is induced when cultured human fibroblasts enter a quiescent or senescent state [35] and, in a number of situations, apoD expression is absent in proliferating cells and is induced in cells that undergo growth arrest

  • The increased apoD expression that follows growth arrest may represent a component of a stress response to serum deprivation

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Summary

Apo D Apo E

Is predicted to adopt a Z-DNA conformation, are important regulators of apoD expression in cells in growth arrest. Elements within non-coding exon 1 have an inhibitory effect on apoD gene expression. The complexity of the regulation of apoD gene expression may reflect the multifunctional nature of the apoD protein

EXPERIMENTAL PROCEDURES
Modulation of ApoD and ApoE mRNA Expression
RESULTS
DISCUSSION
Full Text
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