IMR Press / FBL / Volume 14 / Issue 8 / DOI: 10.2741/3422

Frontiers in Bioscience-Landmark (FBL) is published by IMR Press from Volume 26 Issue 5 (2021). Previous articles were published by another publisher on a subscription basis, and they are hosted by IMR Press on imrpress.com as a courtesy and upon agreement with Frontiers in Bioscience.

Article
Type 3 cystatins; fetuins, kininogen and histidine-rich glycoprotein
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1 Department of Genetics and Pathology, Uppsala University, 751 85 Uppsala, Sweden
2 Department of Animal Breeding and Genetics, Swedish University of Agricultural Sciences, 750 24 Uppsala, Sweden
3 Cell Surface Signalling Laboratory, Wellcome Trust Sanger Institute, Cambridge CB10 1HH, United Kingdom
4 Department of Biomedical Engineering, RWTH Aachen University Hospital, 52074 Aachen, Germany
Front. Biosci. (Landmark Ed) 2009, 14(8), 2911–2922; https://doi.org/10.2741/3422
Published: 1 January 2009
Abstract

This review describes the properties of four structurally related, abundant plasma proteins denoted fetuin-A/alpha-2-Heremans Schmid-glycoprotein (AHSG), fetuin-B (FETUB), kininogen (KNG) and histidine-rich glycoprotein (HRG). These proteins form a subgroup (denoted type 3) within the cystatin superfamily of cysteine protease inhibitors. Apart from KNG, the type 3 proteins appear to lack cystatin activity. AHSG has its major function in regulation of bone mineralization; the physiological role of FETUB is poorly understood. KNG serves dual functions in the assembly of the protein complex initiating the surface-activated blood coagulation cascade and as a precursor for the kinin hormones. The heparin-binding HRG has also been implicated in regulation of coagulation. In addition, several members of the type 3 cystatins have been implicated in tumor growth and shown to regulate endothelial cell function and formation of new blood vessels, angiogenesis. Thus, these proteins may potentially be useful in treatment of diseases characterized by excess angiogenesis such as cancer.

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