Interaction of nuclear factors with the promoter of the human pro-1̉(I) collagen gene
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North-West University (South Africa)
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Abstract
At least thirteen types of collagen have been identified, each
having a characteristic tissue distribution. Type I, the most -
abundant collagen, consists of two a 1 and one a2 polypeptides.
There is considerable evidence that expression of the genes coding
for the type I subunits is regulated on the level of transcription. In
the pro-a 1 (I) collagen gene, regulatory regions have been
identified both upstream of the transcription initiation site and in
the first intron, with the minimal promoter contained in 250 bp
immediately upstream of the start site for transcription. This 250
bp region has been shown to be sufficient to direct transcription of
heterologous genes in different systems (Rossouw et al, 1987; Rippe
et al, 1989; Liska et al, 1990 and Karsentry and de Crombrugghe,
1990). In this study, the minimal promoter of the human pro-al(I)
collagen gene is characterized. Transfection of human growth
hormone under control of different promoters, revealed that even
in the absence of an enhancer the pro-a 1 (I) collagen promoter 1s a
strong promoter. The results also suggest that the promoter
sequences contain information for cell-specific modulation of
expression of the gene.
Several DNA-protein binding assays performed with nuclear
extracts from both expressing (fibroblasts) and non-expressing
cells (lymphocytes) revealed differences in DNA-protein
interactions with different cell extracts. These differences were
observed at a pyrimidine stretch upstream of the CCAAT-boxes,
around the duplicated and inverted CCAAT-boxes, and at a putative
AP-2 site. Whereas DNAase I protection assays indicate that the
pyrimidine stretch is bound by a factor present in fibroblasts,
several DNAase I hypersensitive sites are induced here in the case
of lymphocyte extracts. This DNAase I hypersensitivity suggests an
alteration in DNA conformation in this region. The different but
overlapping binding of nuclear factors to the CCAAT-boxes is
suggestive of mutually exclusive binding of CCAAT-binding factors
as a possible mechanism for down-regulating the gene in nonexpressing
cells. In addition, we observed binding at a putative AP-
2 site in the case of fibroblast extracts but not lymphocyte extracts.
Similarities between fibroblast and lymphocyte extracts include
binding to a putative Spl site and a factor of about 40 kd, named
col-B, binding to a previously unidentified element upstream of the
pyrimidine stretch.
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MSc (Biochemistry), North-West University, Potchefstroom Campus
