Literature DB >> 14512426

Targeting of big stanniocalcin and its receptor to lipid storage droplets of ovarian steroidogenic cells.

Mark Paciga1, Christopher R McCudden, Constantine Londos, Gabriel E DiMattia, Graham F Wagner.   

Abstract

Stanniocalcin (STC) is a large polypeptide hormone that is widely distributed in tissues such as kidney, adrenal, and ovary. In most tissues, STC exists as a 50-kDa homodimer (STC50). The ovaries produce a higher molecular weight variant (big STC) in androgen-producing theca cell and interstitial cell compartments. Luteal cells, which do not express the STC gene, nonetheless contain high levels of STC protein, suggesting they are targeted by and sequester big STC through a receptor-mediated process. Recently, an STC.alkaline phosphatase fusion protein was used to characterize mitochondrial targeting and sequestration of STC50 and its receptor in liver and kidney. The main objective of the present study was to characterize big STC and its receptor in mammalian ovary and determine whether the ovarian STC variant was similarly targeted to luteal cell mitochondria. By in situ ligand binding, we identified large numbers of STC receptors on corpus luteal cells. However, a more detailed analysis of sub-cellular fractions revealed that both STC and its receptor were not preferentially targeted to mitochondria but instead to cholesterol/lipid storage droplets, which was more indicative of a role in steroidogenesis. Functional studies revealed that additions of big STC had concentration-dependent inhibitory effects on both basal and stimulated progesterone output by primary cultured luteal cells. Furthermore, STC receptor levels were up-regulated in luteal cells in response to protein kinase A activation. Taken together, these findings indicate that theca cell-derived big STC is targeted to the cholesterol/lipid storage droplets of luteal cells to regulate steroidogenesis. This constitutes the first reported description of polypeptide hormone and receptor targeting to cholesterol/lipid droplets and the first biological role for the big STC variant.

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Year:  2003        PMID: 14512426     DOI: 10.1074/jbc.M307302200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  20 in total

Review 1.  The role of lipid droplets in metabolic disease in rodents and humans.

Authors:  Andrew S Greenberg; Rosalind A Coleman; Fredric B Kraemer; James L McManaman; Martin S Obin; Vishwajeet Puri; Qing-Wu Yan; Hideaki Miyoshi; Douglas G Mashek
Journal:  J Clin Invest       Date:  2011-06-01       Impact factor: 14.808

2.  Stanniocalcin 1 is a potential physiological modulator of steroidogenesis in the swine ovarian follicle.

Authors:  L Baioni; G Basini; S Bussolati; F Grasselli
Journal:  Vet Res Commun       Date:  2009-09       Impact factor: 2.459

3.  Stanniocalcin 1 and ovarian tumorigenesis.

Authors:  Guangzhi Liu; Gong Yang; Bin Chang; Imelda Mercado-Uribe; Miao Huang; Jingfang Zheng; Robert C Bast; Sue-Hwa Lin; Jinsong Liu
Journal:  J Natl Cancer Inst       Date:  2010-05-18       Impact factor: 13.506

4.  Stanniocalcin-1 expression in normal human endometrium and dysregulation in endometriosis.

Authors:  Lusine Aghajanova; Signe Altmäe; Sergo Kasvandik; Andres Salumets; Anneli Stavreus-Evers; Linda C Giudice
Journal:  Fertil Steril       Date:  2016-06-17       Impact factor: 7.329

5.  Osteoblast autonomous Pi regulation via Pit1 plays a role in bone mineralization.

Authors:  Yuji Yoshiko; G Antonio Candeliere; Norihiko Maeda; Jane E Aubin
Journal:  Mol Cell Biol       Date:  2007-04-16       Impact factor: 4.272

6.  Roles and origins of leukocyte lipid bodies: proteomic and ultrastructural studies.

Authors:  Hsiao-Ching Wan; Rossana C N Melo; Zhoung Jin; Ann M Dvorak; Peter F Weller
Journal:  FASEB J       Date:  2006-11-29       Impact factor: 5.191

7.  Stanniocalcin-1 suppresses superoxide generation in macrophages through induction of mitochondrial UCP2.

Authors:  Yanlin Wang; Luping Huang; Maen Abdelrahim; Qingsong Cai; Anh Truong; Roger Bick; Brian Poindexter; David Sheikh-Hamad
Journal:  J Leukoc Biol       Date:  2009-07-14       Impact factor: 4.962

8.  Low-resolution structural studies of human Stanniocalcin-1.

Authors:  Daniel M Trindade; Júlio C Silva; Margareth S Navarro; Iris C L Torriani; Jörg Kobarg
Journal:  BMC Struct Biol       Date:  2009-08-27

Review 9.  Mammalian stanniocalcin-1 activates mitochondrial antioxidant pathways: new paradigms for regulation of macrophages and endothelium.

Authors:  David Sheikh-Hamad
Journal:  Am J Physiol Renal Physiol       Date:  2009-08-05

10.  Anti-inflammatory and renal protective actions of stanniocalcin-1 in a model of anti-glomerular basement membrane glomerulonephritis.

Authors:  Luping Huang; Gabriela Garcia; Yahuan Lou; Qin Zhou; Luan D Truong; Gabriel DiMattia; Xia Ru Lan; Hui Y Lan; Yanlin Wang; David Sheikh-Hamad
Journal:  Am J Pathol       Date:  2009-02-26       Impact factor: 4.307

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