Literature DB >> 1312201

Differential regulation of chromogranin B/secretogranin I and secretogranin II by forskolin in PC12 cells.

M E Thompson1, W E Zimmer, L B Wear, L A MacMillan, W J Thompson, W B Huttner, H Hidaka, J G Scammell.   

Abstract

The factors which regulate the expression of the granin family of secretory proteins have yet to be completely described. The present study investigated the effects of forskolin (FSK), an activator of adenylate cyclase, on the regulation of chromogranin B/secretogranin I (CgB) and secretogranin II (SgII) mRNA levels in rat PC12 cells. PC12 cells were treated with 10 microM FSK for time points up to 48 h and were harvested for cAMP determination, RNA isolation and Northern blot analysis, or fixed in 4% paraformaldehyde for immunocytochemistry. Cellular cAMP levels peaked after two h of FSK treatment and remained elevated for 48 h. Chromogranin B mRNA increased with FSK treatment, reaching a maximum of 7-fold above control after 24 h, while the level of SgII mRNA decreased to a level of 65 +/- 10% of control after 48 h. The effects of FSK on CgB mRNA appear to be mediated by cAMP, as 8-bromo-cAMP (500 microM) resulted in a 2.8-fold increase in CgB mRNA, and H-89 (30 microM), a selective inhibitor of cAMP-dependent protein kinase, reduced the FSK-mediated response. The level of CgB was also increased in FSK-treated cells, as evidenced by immunofluorescent analysis which showed a more intense staining in PC12 cells treated with FSK for 48 h than in untreated cells. The intensity of SgII staining was diminished by FSK treatment, most likely a result of a decreased rate of synthesis as well as an increase in the release of SgII. This study demonstrated that the mRNA and protein levels of CgB and SgII are differentially regulated by cAMP in PC12 cells.

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Year:  1992        PMID: 1312201     DOI: 10.1016/0169-328x(92)90084-o

Source DB:  PubMed          Journal:  Brain Res Mol Brain Res        ISSN: 0169-328X


  6 in total

1.  Regulation and distribution of squirrel monkey chorionic gonadotropin and secretogranin II in the pituitary.

Authors:  Audrey A Vasauskas; Tina R Hubler; Christina Mahanic; Susan Gibson; Andrea G Kahn; Jonathan G Scammell
Journal:  Gen Comp Endocrinol       Date:  2010-11-21       Impact factor: 2.822

Review 2.  The granin protein family: markers for neuroendocrine cells and tools for the diagnosis of neuroendocrine tumors.

Authors:  P Rosa; H H Gerdes
Journal:  J Endocrinol Invest       Date:  1994-03       Impact factor: 4.256

3.  Cell type-specific gene expression in the neuroendocrine system. A neuroendocrine-specific regulatory element in the promoter of chromogranin A, a ubiquitous secretory granule core protein.

Authors:  H Wu; D J Rozansky; N J Webster; D T O'Connor
Journal:  J Clin Invest       Date:  1994-07       Impact factor: 14.808

4.  A functional cyclic AMP response element plays a crucial role in neuroendocrine cell type-specific expression of the secretory granule protein chromogranin A.

Authors:  H Wu; S K Mahata; M Mahata; N J Webster; R J Parmer; D T O'Connor
Journal:  J Clin Invest       Date:  1995-07       Impact factor: 14.808

5.  In situ hybridization: mRNA levels of secretogranin II, VGF and peptidylglycine alpha-amidating monooxygenase in brain of salt-loaded rats.

Authors:  S K Mahata; M Mahata; R Fischer-Colbrie; H Winkler
Journal:  Histochemistry       Date:  1993-04

Review 6.  Marfan syndrome.

Authors:  Dianna M Milewicz; Alan C Braverman; Julie De Backer; Shaine A Morris; Catherine Boileau; Irene H Maumenee; Guillaume Jondeau; Arturo Evangelista; Reed E Pyeritz
Journal:  Nat Rev Dis Primers       Date:  2021-09-02       Impact factor: 65.038

  6 in total

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