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Marked Defects in the Expression and Glycosylation of α2-HS Glycoprotein/Fetuin-A in Plasma from Neonates with Intrauterine Growth Restriction

Authors :
Karamessinis, Panagiotis M.
Malamitsi-Puchner, Ariadne
Boutsikou, Theodora
Makridakis, Manousos
Vougas, Konstantinos
Fountoulakis, Michael
Vlahou, Antonia
Chrousos, George
Source :
Molecular and Cellular Proteomics (MCP Online); March 2008, Vol. 7 Issue: 3 p591-599, 9p
Publication Year :
2008

Abstract

Intrauterine growth restriction (IUGR) has been associated with increased perinatal morbidity and mortality and increased morbidity and metabolic abnormalities later in life. IUGR is characterized as the failure of a fetus to achieve his or her genetic growth potential in utero. Altered protein expression profiles associated with IUGR may be informative on the pathologic mechanisms of this condition and might reveal potential markers for postnatal complications. The aim of this study was to compare protein profiles of umbilical cord plasma from IUGR and appropriate for gestational age full-term neonates. Blood samples from doubly clamped umbilical cord at delivery from 10 IUGR and 10 appropriate for gestational age full-term neonates were analyzed by two-dimensional electrophoresis and MS. Prominent changes of the α2-HS glycoprotein/fetuin-A were observed in IUGR cases. Specifically we showed that these changes occur primarily at the level of post-translational modifications of the protein. Using a combination of mass spectrometry and classical biochemical assays, single and heavy chain forms of fetuin-A were found to lack the normally present O-linked sialic acids in IUGR neonates. Fetuin A is a glycoprotein that has been associated with promotion of in vitrocell replication, fetal growth and osteogenesis, and protection from Gram-negative bacterial endotoxins. Prominent defects in glycosylation/sialylation of fetuin-A revealed by our study might be responsible for impaired function of fetuin-A, leading to deficient fetal growth, especially osteogenesis, and/or to the development of complications frequently seen later in the lives of IUGR neonates.

Details

Language :
English
ISSN :
15359476 and 15359484
Volume :
7
Issue :
3
Database :
Supplemental Index
Journal :
Molecular and Cellular Proteomics (MCP Online)
Publication Type :
Periodical
Accession number :
ejs55976818
Full Text :
https://doi.org/10.1074/mcp.M700422-MCP200