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Updated: May 2, 2026

Guided Differentiation of Mature Kidney Podocytes from Human Induced Pluripotent Stem Cells Under Chemically Defined Conditions
Published on: July 2, 2020
TGF-β-activated kinase 1 is crucial in podocyte differentiation and glomerular capillary formation
Sung Il Kim1, So-Young Lee2, Zhibo Wang3
1Renal Division, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts; Division of Nephrology and Hypertension, Weill Cornell Medical College, New York, New York; szk2006@med.cornell.edu mechoi@med.cornell.edu.
Abstract:
TGF-β-activated kinase 1 (TAK1) is a key intermediate in signal transduction induced by TGF-β or inflammatory cytokines, such as TNF-α and IL-1, which are potent inducers of podocyte injury responses that lead to proteinuria and glomerulosclerosis. Nevertheless, little is known about the physiologic and pathologic roles of TAK1 in podocytes. To examine the in vivo role of TAK1, we generated podocyte-specific Tak1 knockout mice (Nphs2-Cre(+):Tak1(fx/fx); Tak1(∆/∆)). Targeted deletion of Tak1 in podocytes resulted in perinatal lethality, with approximately 50% of animals dying soon after birth and 90% of animals dying within 1 week of birth. Tak1(∆/∆) mice developed proteinuria from P1 and exhibited delayed glomerulogenesis and reduced expression of Wilms' tumor suppressor 1 and nephrin in podocytes. Compared with Tak1(fx/fx) mice, Tak1(∆/∆) mice exhibited impaired formation of podocyte foot processes that caused disruption of the podocyte architecture with prominent foot process effacement. Intriguingly, Tak1(∆/∆) mice displayed increased expression of vascular endothelial growth factor within the glomerulus and abnormally enlarged glomerular capillaries. Furthermore, 4- and 7-week-old Tak1(∆/∆) mice with proteinuria had increased collagen deposition in the mesangium and the adjacent tubulointerstitial area. Thus, loss of Tak1 in podocytes is associated with the development of proteinuria and glomerulosclerosis. Taken together, our data show that TAK1 regulates the expression of Wilms' tumor suppressor 1, nephrin, and vascular endothelial growth factor and that TAK1 signaling has a crucial role in podocyte differentiation and attainment of normal glomerular microvasculature during kidney development and glomerular filtration barrier homeostasis.
Insights
TGF-β-activated kinase 1 (TAK1) is crucial for kidney development. Loss of TAK1 in podocytes causes proteinuria, glomerulosclerosis, and impaired glomerular filtration barrier homeostasis.
Area of Science:
- Nephrology
- Molecular Biology
- Developmental Biology
Background:
- TGF-β-activated kinase 1 (TAK1) is a key signaling intermediate for TGF-β and inflammatory cytokines.
- Podocyte injury from these signals can cause proteinuria and glomerulosclerosis.
- The specific roles of TAK1 in podocytes remain largely unknown.
Purpose of the Study:
- To investigate the in vivo function of TAK1 in podocytes.
- To elucidate the role of TAK1 in kidney development and glomerular filtration barrier homeostasis.
Main Methods:
- Generation of podocyte-specific Tak1 knockout mice (Nphs2-Cre(+):Tak1(fx/fx); Tak1(∆/∆)).
- Analysis of kidney development, podocyte structure, gene expression, and disease markers in knockout mice.
Main Results:
- Podocyte-specific Tak1 deletion led to perinatal lethality and severe proteinuria.
- Knockout mice showed delayed glomerulogenesis, reduced Wilms' tumor suppressor 1 and nephrin expression, and impaired foot process formation.
- Increased vascular endothelial growth factor and glomerular capillary abnormalities were observed, along with collagen deposition indicating glomerulosclerosis.
Conclusions:
- TAK1 signaling is essential for podocyte differentiation and normal kidney development.
- Loss of TAK1 in podocytes disrupts glomerular filtration barrier homeostasis, leading to proteinuria and glomerulosclerosis.
- TAK1 regulates key podocyte genes (Wilms' tumor suppressor 1, nephrin) and vascular endothelial growth factor expression.
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