Functional Alterations in Ciliogenesis-Associated Kinase 1 (CILK1) that Result from Mutations Linked to Juvenile

Eric J Wang1, Casey D Gailey1, David L Brautigan2,3

  • 1Department of Pharmacology, University of Virginia School of Medicine, Charlottesville, VA 22908, USA.

Cells
|March 18, 2020
PubMed

Insights

Juvenile myoclonic epilepsy (JME) mutations in CILK1 kinase disrupt primary cilia formation and length regulation. These mutations alter CILK1 localization and function, impacting cilia homeostasis independently of KIF3A phosphorylation.

Area of Science:

  • Cell Biology
  • Genetics
  • Neuroscience

Background:

  • Ciliopathies are genetic disorders caused by primary cilia dysfunction.
  • Ciliogenesis-associated kinase 1 (CILK1) restricts primary cilia formation and length.
  • CILK1 mutations are linked to ciliopathies and juvenile myoclonic epilepsy (JME).

Purpose of the Study:

  • To investigate the impact of JME-related CILK1 mutations on kinase activity and function.
  • To understand how these mutations affect primary cilia formation and homeostasis.

Main Methods:

  • Assessed CILK1 kinase activity by examining KIF3A phosphorylation at Thr672.
  • Analyzed the localization of wild-type and mutant CILK1 within primary cilia.
  • Evaluated the effects of CILK1 variants on cilia length and ciliogenesis.

Main Results:

  • JME mutations in the N-terminal kinase domain abolished CILK1 activity and KIF3A phosphorylation.
  • JME mutations in the C-terminal non-catalytic domain retained kinase activity but impaired cilia length restriction and promoted ciliogenesis.
  • Wild-type CILK1 localized to the cilium base, while JME variants distributed along the axoneme.

Conclusions:

  • JME pathogenic mutations perturb CILK1 function and localization, affecting primary cilia.
  • These CILK1 variants impact primary cilia independently of KIF3A phosphorylation.
  • CILK1 mutations linked to JME alter primary cilia formation and homeostasis, contributing to disease pathogenesis.

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