Expression patterns and different subcellular localization of the growth factors HDGF (hepatoma-derived growth factor) and HRP-3 (HDGF-related protein-3) suggest functions in addition to their mitogenic activity
Open Access
- 15 February 2004
- journal article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 378 (1) , 169-176
- https://doi.org/10.1042/bj20030916
Abstract
HDGF (hepatoma-derived growth factor) and the HRPs (HDGF-related proteins) comprise a family of six proteins which display high identity in their N-terminus, but differ at the C-terminus. Here we investigate the patterns of expression of HDGF and HRP-3, by generating antisera specifically recognizing each growth factor. Whereas HRP-3 protein is expressed only in brain, HDGF can be found in a broad range of tissues, with highest levels in brain, testis, lung and spleen. The expression of HDGF and HRP-3 was found to be regulated during brain development, with highest levels around birth, followed by a decline until postnatal day 9. Interestingly, expression of HRP-3 increases again in adult brain. In situ hybridization and immunohistochemistry of cerebellar, cerebral and hippocampal brain slices showed that expression of both growth factors is not limited to areas of high proliferative activity. Both mRNAs and proteins are expressed in neuronal as well as glial cells. Immunocytochemistry of cultured neocortical neurons revealed that HDGF and HRP-3 can be found in the nucleus as well as the cytoplasm. HDGF is restricted to the neuronal soma, whereas HRP-3 can also be found in neurites. Thus the expression of HDGF and HRP-3 in differentiated cells, post-mitotic neurons and primary cultures of rat neocortex points to functions in brain that might not be limited to proliferation. In addition, their simultaneous expression in the same cell and their different subcellular localization in cultured neurons suggest different functions of HDGF and HRP-3 within single cells.Keywords
This publication has 31 references indexed in Scilit:
- Lens epithelium-derived growth factor: increased survival and decreased DNA breakage of human RPE cells induced by oxidative stress.2001
- Nuclear Targeting Is Required for Hepatoma-derived Growth Factor-stimulated Mitogenesis in Vascular Smooth Muscle CellsJournal of Biological Chemistry, 2001
- Neurotrophins and neuronal differentiation in the central nervous systemCellular and Molecular Life Sciences, 2001
- LEDGF Binds to Heat Shock and Stress-Related Element to Activate the Expression of Stress-Related GenesBiochemical and Biophysical Research Communications, 2001
- Lens epithelium-derived growth factor promotes photoreceptor survival in light-damaged and RCS rats.2001
- LEDGF: survival of embryonic chick retinal photoreceptor cells.2000
- Hepatoma-derived growth factor stimulates smooth muscle cell growth and is expressed in vascular developmentJournal of Clinical Investigation, 2000
- Fetal lung development: Airway pressure enhances the expression of developmental genesJournal of Pediatric Surgery, 2000
- Lens Epithelium-Derived Growth Factor: Effects on Growth and Survival of Lens Epithelial Cells, Keratinocytes, and FibroblastsBiochemical and Biophysical Research Communications, 2000
- Isolation of cDNAs encoding novel transcription coactivators p52 and p75 reveals an alternate regulatory mechanism of transcriptional activationThe EMBO Journal, 1998