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Evaluation of Zebrafish Kidney Function Using a Fluorescent Clearance Assay
Published on: February 20, 2015
Loss-of-function mutations in KIF14 cause severe microcephaly and kidney development defects in humans and zebrafish
Madeline Louise Reilly1,2, Marijn F Stokman3, Virginie Magry1
1Laboratory of Hereditary Kidney Diseases, INSERM UMR 1163, Imagine Institute, Paris, France.
Abstract:
Mutations in KIF14 have previously been associated with either severe, isolated or syndromic microcephaly with renal hypodysplasia (RHD). Syndromic microcephaly-RHD was strongly reminiscent of clinical ciliopathies, relating to defects of the primary cilium, a signalling organelle present on the surface of many quiescent cells. KIF14 encodes a mitotic kinesin, which plays a key role at the midbody during cytokinesis and has not previously been shown to be involved in cilia-related functions. Here, we analysed four families with fetuses presenting with the syndromic form and harbouring biallelic variants in KIF14. Our functional analyses showed that the identified variants severely impact the activity of KIF14 and likely correspond to loss-of-function mutations. Analysis in human fetal tissues further revealed the accumulation of KIF14-positive midbody remnants in the lumen of ureteric bud tips indicating a shared function of KIF14 during brain and kidney development. Subsequently, analysis of a kif14 mutant zebrafish line showed a conserved role for this mitotic kinesin. Interestingly, ciliopathy-associated phenotypes were also present in mutant embryos, supporting a potential direct or indirect role for KIF14 at cilia. However, our in vitro and in vivo analyses did not provide evidence of a direct role for KIF14 in ciliogenesis and suggested that loss of kif14 causes ciliopathy-like phenotypes through an accumulation of mitotic cells in ciliated tissues. Altogether, our results demonstrate that KIF14 mutations result in a severe syndrome associating microcephaly and RHD through its conserved function in cytokinesis during kidney and brain development.
Insights
Mutations in KIF14 cause a severe syndrome of microcephaly and renal hypodysplasia (RHD). This study reveals KIF14
Area of Science:
- Genetics and Developmental Biology
- Cell Biology
- Medical Genetics
Background:
- Mutations in KIF14 are linked to microcephaly with renal hypodysplasia (RHD), a condition resembling ciliopathies.
- KIF14 is a mitotic kinesin crucial for cytokinesis, with no prior known role in cilia function.
Purpose of the Study:
- To investigate the role of KIF14 mutations in syndromic microcephaly-RHD.
- To elucidate the functional impact of KIF14 variants and their involvement in ciliopathy-like phenotypes.
Main Methods:
- Analysis of four families with biallelic KIF14 variants.
- Functional assays to assess KIF14 variant activity.
- Examination of human fetal tissues and a zebrafish mutant line (kif14).
Main Results:
- Identified KIF14 variants are loss-of-function mutations.
- KIF14-positive midbody remnants accumulate in developing kidney tissues.
- Kif14 mutant zebrafish exhibit ciliopathy-associated phenotypes, linked to mitotic cell accumulation in ciliated tissues.
Conclusions:
- KIF14 mutations cause a severe syndrome associating microcephaly and RHD.
- KIF14 plays a conserved role in cytokinesis during brain and kidney development.
- Loss of KIF14 function leads to ciliopathy-like phenotypes indirectly, not through direct ciliary defects.

