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HMG-17 is an early marker of inductive interactions in the developing mouse kidney
1Department of Pathology, Haartman Institute University of Helsinki, Finland.
Abstract:
We studied the relationship between proliferation, differentiation, and the expression of high-mobility-group protein 17 (HMG-17) during metanephric kidney development. Proliferating cells were found homogenously throughout the early kidney rudiment. The expression pattern of HMG-17 mRNA, on the other hand, was distinctly uneven: In the undifferentiated mesenchyme, the cells in the cranial "tail" part of the mesenchyme showed only a weak signal, whereas a group of cells lying close to the tip of the ureteric bud showed strong HMG-17 expression. The region distinctly positive for HMG-17 is known to contain the first cells to undergo mesenchyme-to-epithelium transition. Using the transfilter model system, strong expression of HMG-17 mRNA, followed by mesenchyme-to-epithelium transition, could be induced also in the "tail" part of the mesenchyme. The upregulation of HMG-17 in the metanephrogenic mesenchyme thus results from interaction with an inductor tissue. Throughout the renal development, the HMG-17 mRNA was also abundant in those epithelial and mesenchymal cells that were undergoing active cell differentiation, and the transcript was downregulated in mature cells. HMG-17 expression thus correlated with the processes of induction and differentiation rather than with proliferation. The present results suggest that HMG-17 could have a role in the activation of the genes regulating kidney organogenesis.
Insights
High-mobility-group protein 17 (HMG-17) expression is linked to kidney development induction and differentiation, not proliferation. This suggests HMG-17 may activate genes crucial for kidney organogenesis.
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Metanephric kidney development involves complex interactions between mesenchymal and epithelial cells.
- High-mobility-group protein 17 (HMG-17) is a nuclear protein implicated in gene regulation.
Purpose of the Study:
- To investigate the role of HMG-17 expression during metanephric kidney development.
- To determine the correlation between HMG-17 expression, cell proliferation, and differentiation.
Main Methods:
- Analysis of HMG-17 mRNA expression patterns in developing kidneys.
- Utilizing a transfilter model system to study inductive interactions.
- Comparing HMG-17 expression with cell proliferation and differentiation markers.
Main Results:
- HMG-17 mRNA expression was uneven in the developing kidney, with strong signals in cells undergoing mesenchyme-to-epithelium transition.
- HMG-17 expression was induced by interaction with inductor tissue in a transfilter model.
- HMG-17 expression correlated with active cell differentiation and was downregulated in mature cells, but not with proliferation.
Conclusions:
- HMG-17 upregulation in metanephric mesenchyme is induced by signaling from adjacent tissues.
- HMG-17 expression is associated with kidney induction and differentiation processes.
- HMG-17 may play a role in activating genes essential for kidney organogenesis.