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Published June 1, 2020 | Published
Journal Article

Mutational analysis of genes with ureteric progenitor cell‐specific expression in branching morphogenesis of the mouse kidney

  • 1. ROR icon University of Southern California

Abstract

Background

Ureteric progenitor cells (UPCs) within the branch tips of the arborizing ureteric epithelium of the kidney's developing collecting system establish the shape and cellular organization of the collecting network, and drive the nephrogenic program through their interactions with nephron progenitor cells. In a previous study, expression screening identified a cohort of genes showing UPC-enriched expression including D17H6S56E-5Hs3st3a1Hs3st3b1, and Tmem59l. Each of these is also enriched in branch tips of assembling airways of the developing lungs. Here, we used Crispr-CAS9 directed gene editing to mutate each of these targets to address their potential role(s) in UPC programs.

Results

Single (D17H6S56E-5 and Tmem59l) and double (Hs3st3a1 and Hs3st3b1) mutants were viable, fertile, and displayed varying frequencies of ureter duplications and no overt lung phenotype. Ureter duplications arise spontaneously through multiple outgrowths of the ureteric bud at the onset of kidney development. Tmem59l mutants and Hs3st3a1/Hs3st3b1 compound mutants showed a weakly penetrant, but statistically significant increase in duplicated ureters compared to C57BL6/J and SW wild-type mouse strains.

Conclusions

Tmem59l and Hs3st3a1/Hs3st3b1 activities contribute to the regulatory programs restricting ureteric outgrowth in the developing mouse kidney. However, the low penetrance of the observed phenotype precludes a detailed analysis of their specific actions.

Copyright and License

© 2020 Wiley Periodicals, Inc.

Acknowledgement

We would like to thank Dr Frank Costantini for graciously providing the Hoxb7Venus mice. The Hs3st3a1−/− mouse (VG19780) was generated by the trans-NIH Knock-Out Mouse Project (KOMP) and obtained from the KOMP Repository (www.komp.org). NIH grants to Velocigene at Regeneron Inc (U01HG004085) and the CSD Consortium (U01HG004080) funded the generation of gene-targeted ES cells for 8500 genes in the KOMP Program and archived and distributed by the KOMP Repository at UC Davis and CHORI (U42RR024244). For more information or to obtain KOMP products go to www.komp.org or email service@komp.org

Funding

Work in A.P.M.'s laboratory was funded by a grant from the National Institutes of Health [DK054364]. E.A.R. was supported by a graduate student training fellowship from the National Institutes of Health [5T32HD060549] and by the National Institute of Diabetes and Digestive and Kidney Diseases of the National Institutes of Health [F31DK107216].

Additional details

Created:
November 15, 2024
Modified:
November 15, 2024