Functional characterization of CDK5 and CDK5R1 mutations identified in patients with non-syndromic intellectual

Silvia Moncini1, Paola Castronovo1, Alessandra Murgia2

  • 1Dipartimento di Biotecnologie Mediche e Medicina Traslazionale, Università degli Studi di Milano, Milan, Italy.

Journal of Human Genetics
|December 15, 2015
PubMed

Insights

Mutations in CDK5 and CDK5R1 genes are linked to non-syndromic intellectual disability (NS-ID). Genetic variations in these genes, particularly in CDK5R1, may increase the risk for NS-ID development.

Area of Science:

  • Neurogenetics
  • Molecular Biology
  • Human Genetics

Background:

  • Cyclin-dependent kinase 5 (CDK5) and its activator p35 (encoded by CDK5R1) are crucial for central nervous system (CNS) development and function.
  • Dysregulation of CDK5 and CDK5R1 is implicated in neurodegenerative disorders and intellectual disability (ID).

Purpose of the Study:

  • To investigate the role of mutations and polymorphisms in CDK5 and CDK5R1 genes in the pathogenesis of non-syndromic intellectual disability (NS-ID).

Main Methods:

  • Mutation screening of CDK5 and CDK5R1 coding regions and CDK5R1 3'-UTR in 360 NS-ID patients using DHPLC and direct sequencing.
  • Functional studies of identified mutations, including p35 cleavage assays and luciferase reporter assays for 3'-UTR variants.
  • Genotyping of known polymorphisms and association analysis with NS-ID risk.

Main Results:

  • Identified novel mutations in CDK5 and CDK5R1, including silent mutations and 3'-UTR variations, not found in healthy controls.
  • Functional analysis revealed impaired p35 cleavage for CDK5R1 p.A108V mutation and altered gene expression for 3'-UTR variants.
  • A specific CDK5R1 3'-UTR polymorphism (rs735555) was associated with an increased risk of NS-ID.

Conclusions:

  • Genetic variations in CDK5 and CDK5R1 genes, including mutations and specific polymorphisms, may contribute to the development of non-syndromic intellectual disability.
  • These findings highlight CDK5 and CDK5R1 as potential candidate genes for NS-ID.

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