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Developmental Regulation of Synthesis and Dimerization of the Amyloidogenic Protease Inhibitor Cystatin C in the Hematopoietic System
Authors:Yuekang Xu  Petra Lindemann  Javier Vega-Ramos  Jian-Guo Zhang  Jose A Villadangos
Institution:From the Divisions of Immunology and ;Cancer and Haematology, The Walter and Eliza Hall Institute of Medical Research, Melbourne, Victoria 3052 and ;the Departments of §Biochemistry and Molecular Biology at the Bio21 Institute and ;Microbiology and Immunology, The University of Melbourne, Melbourne, Victoria 3010, Australia
Abstract:The cysteine protease inhibitor cystatin C is thought to be secreted by most cells and eliminated in the kidneys, so its concentration in plasma is diagnostic of kidney function. Low extracellular cystatin C is linked to pathologic protease activity in cancer, arthritis, atherosclerosis, aortic aneurism, and emphysema. Cystatin C forms non-inhibitory dimers and aggregates by a mechanism known as domain swapping, a property that reportedly protects against Alzheimer disease but can also cause amyloid angiopathy. Despite these clinical associations, little is known about the regulation of cystatin C production, dimerization, and secretion. We show that hematopoietic cells are major contributors to extracellular cystatin C levels in healthy mice. Among these cells, macrophages and dendritic cells (DC) are the predominant producers of cystatin C. Both cell types synthesize monomeric and dimeric cystatin C in vivo, but only secrete monomer. Dimerization occurs co-translationally in the endoplasmic reticulum and is regulated by the levels of reactive oxygen species (ROS) derived from mitochondria. Drugs or stimuli that reduce the intracellular concentration of ROS inhibit cystatin C dimerization. The extracellular concentration of inhibitory cystatin C is thus partly dependent on the abundance of macrophages and DC, and the ROS levels. These results have implications for the diagnostic use of serum cystatin C as a marker of kidney function during inflammatory processes that induce changes in DC or macrophage abundance. They also suggest an important role for macrophages, DC, and ROS in diseases associated with the protease inhibitory activity or amyloidogenic properties of cystatin C.
Keywords:Dendritic Cells  Macrophages  Protease Inhibitor  Protein Folding  Reactive Oxygen Species (ROS)  Amyloidosis  Vascular Angiopathy
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