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May 20, 2026FEBS Open Bio0 citationsOpen Access

The C‐terminal region of KIF26B is indispensable for nephron progenitor condensation and kidney formation in mice

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YYYuta YamamuraKFKengo FuruichiHAH Akamatsu

Key Points

  • The aim is to clarify the role of the KIF26B C-terminal region in kidney development.
  • Generated mice lacking the C-terminal region of KIF26B (Kif26b-C) using CRISPR/Cas9.
  • Performed histological analysis at embryonic day 18.5 to assess nephron development.
  • Conducted in situ hybridization to analyze Gdnf and Wnt11 expression in kidney structures.
  • Homozygous Kif26b-C mice displayed bilateral renal agenesis, similar to Kif26b knockout mice.
  • Histological analysis indicated loss of the nephrogenic zone and impaired nephron progenitor condensation.
  • Reduced Gdnf levels in metanephric mesenchyme and Wnt11 in ureteric buds disrupted the Gdnf-Wnt11 signaling loop.

Abstract

Loss of Kif26b function causes renal agenesis or hypoplasia in mice, and a KIF26B mutation resulting in deletion of the C‐terminal region has been identified in a human patient with a congenital kidney disorder. However, the role of this region during kidney development is unclear; thus, to investigate this, we generated mice lacking the C‐terminal region of KIF26B (Kif26b‐C) using CRISPR/Cas9. Homozygous Kif26b‐C mice showed bilateral renal agenesis, resembling Kif26b knockout mice. Histological analysis revealed loss of the nephrogenic zone and impaired nephron progenitor condensation at embryonic day 18.5. In situ hybridization showed reduced Gdnf in the metanephric mesenchyme and reduced Wnt11 in ureteric buds, indicating disruption of the Gdnf‐Wnt11 signaling loop. These findings suggest a key role for the KIF26B C‐terminal region in kidney morphogenesis.

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Cite This Study

Yamamura et al. (2026) studied this question.

synapsesocial.com/papers/6a0d5098f03e14405aa9c90dhttps://doi.org/10.1002/2211-5463.70260
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