Severe fibronectin-deposit renal glomerular disease in mice lacking uteroglobin

Z Zhang, GC Kundu, CJ Yuan, JM Ward, EJ Lee… - Science, 1997 - science.org
Z Zhang, GC Kundu, CJ Yuan, JM Ward, EJ Lee, F DeMayo, H Westphal, AB Mukherjee
Science, 1997science.org
Despite myriads of biological activities ascribed to uteroglobin (UG), a steroid-inducible
secreted protein, its physiological functions are unknown. Mice in which the uteroglobin
gene was disrupted had severe renal disease that was associated with massive glomerular
deposition of predominantly multimeric fibronectin (Fn). The molecular mechanism that
normally prevents Fn deposition appears to involve high-affinity binding of UG with Fn to
form Fn-UG heteromers that counteract Fn self-aggregation, which is required for abnormal …
Despite myriads of biological activities ascribed to uteroglobin (UG), a steroid-inducible secreted protein, its physiological functions are unknown. Mice in which the uteroglobin gene was disrupted had severe renal disease that was associated with massive glomerular deposition of predominantly multimeric fibronectin (Fn). The molecular mechanism that normally prevents Fn deposition appears to involve high-affinity binding of UG with Fn to form Fn-UG heteromers that counteract Fn self-aggregation, which is required for abnormal tissue deposition. Thus, UG is essential for maintaining normal renal function in mice, which raises the possibility that an analogous pathogenic mechanism may underlie genetic Fn-deposit human glomerular disease.
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