Cardiac Functional and Structural Abnormalities in a Mouse Model of CDKL5 Deficiency Disorder

Author:

Loi Manuela1ORCID,Bastianini Stefano1,Candini Giulia1,Rizzardi Nicola2ORCID,Medici Giorgio1ORCID,Papa Valentina1ORCID,Gennaccaro Laura1ORCID,Mottolese Nicola1ORCID,Tassinari Marianna1ORCID,Uguagliati Beatrice1ORCID,Berteotti Chiara1ORCID,Martire Viviana Lo1,Zoccoli Giovanna1ORCID,Cenacchi Giovanna1ORCID,Trazzi Stefania1ORCID,Bergamini Christian2ORCID,Ciani Elisabetta1ORCID

Affiliation:

1. Department of Biomedical and Neuromotor Sciences, University of Bologna, 40126 Bologna, Italy

2. Department of Pharmacy and Biotechnology, University of Bologna, 40126 Bologna, Italy

Abstract

CDKL5 (cyclin-dependent kinase-like 5) deficiency disorder (CDD) is a severe neurodevelopmental disease that mostly affects girls, who are heterozygous for mutations in the X-linked CDKL5 gene. Mutations in the CDKL5 gene lead to a lack of CDKL5 protein expression or function and cause numerous clinical features, including early-onset seizures, marked hypotonia, autistic features, gastrointestinal problems, and severe neurodevelopmental impairment. Mouse models of CDD recapitulate several aspects of CDD symptomology, including cognitive impairments, motor deficits, and autistic-like features, and have been useful to dissect the role of CDKL5 in brain development and function. However, our current knowledge of the function of CDKL5 in other organs/tissues besides the brain is still quite limited, reducing the possibility of broad-spectrum interventions. Here, for the first time, we report the presence of cardiac function/structure alterations in heterozygous Cdkl5 +/− female mice. We found a prolonged QT interval (corrected for the heart rate, QTc) and increased heart rate in Cdkl5 +/− mice. These changes correlate with a marked decrease in parasympathetic activity to the heart and in the expression of the Scn5a and Hcn4 voltage-gated channels. Interestingly, Cdkl5 +/− hearts showed increased fibrosis, altered gap junction organization and connexin-43 expression, mitochondrial dysfunction, and increased ROS production. Together, these findings not only contribute to our understanding of the role of CDKL5 in heart structure/function but also document a novel preclinical phenotype for future therapeutic investigation.

Funder

Italian parent association “CDKL5 insieme verso la cura”

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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