Potential Role of Protein Kinase FAM20C on the Brain in Raine Syndrome, an In Silico Analysis

Author:

Palma-Lara Icela1,García Alonso-Themann Patricia2,Pérez-Durán Javier2,Godínez-Aguilar Ricardo3,Bonilla-Delgado José45ORCID,Gómez-Archila Damián6,Espinosa-García Ana María7,Nolasco-Quiroga Manuel8ORCID,Victoria-Acosta Georgina3,López-Ornelas Adolfo3,Serrano-Bello Juan Carlos9,Olguín-García María Guadalupe10ORCID,Palacios-Reyes Carmen3

Affiliation:

1. Laboratorio de Morfología Celular y Molecular, Escuela Superior de Medicina, Instituto Politécnico Nacional, Ciudad de México 11340, Mexico

2. Instituto Nacional de Perinatología Isidro Espinosa de los Reyes, Ciudad de México 11000, Mexico

3. División de Investigación, Hospital Juárez de México, Ciudad de México 11340, Mexico

4. Unidad de Investigación, Hospital Regional de Ixtapaluca, Ixtapaluca 56530, Mexico

5. Departamento de Biotecnología, Escuela de Ingeniería y Ciencias, Instituto Tecnológico de Monterrey, Toluca de Lerdo 50110, Mexico

6. Departamento de Oncología Quirúrgica, Hospital de Gineco-Obstetricia 3, Centro Médico Nacional “La Raza”, Ciudad de México 02990, Mexico

7. Laboratorio de Farmacología Clínica, Hospital General de México, Ciudad de México 06720, Mexico

8. Coordinación de Enseñanza e Investigación, Clínica Hospital Instituto de Seguridad y Servicios Sociales de los Trabajadores del Estado, Huauchinango 73177, Mexico

9. Departamento de Patología Clínica y Experimental, Hospital Infantil de México Federico Gómez, Ciudad de México 06720, Mexico

10. Centro Dermatológico “Dr. Ladislao de la Pascua”, Ciudad de México 06780, Mexico

Abstract

FAM20C (family with sequence similarity 20, member C) is a serine/threonine-specific protein kinase that is ubiquitously expressed and mainly associated with biomineralization and phosphatemia regulation. It is mostly known due to pathogenic variants causing its deficiency, which results in Raine syndrome (RNS), a sclerosing bone dysplasia with hypophosphatemia. The phenotype is recognized by the skeletal features, which are related to hypophosphorylation of different FAM20C bone-target proteins. However, FAM20C has many targets, including brain proteins and the cerebrospinal fluid phosphoproteome. Individuals with RNS can have developmental delay, intellectual disability, seizures, and structural brain defects, but little is known about FAM20C brain-target-protein dysregulation or about a potential pathogenesis associated with neurologic features. In order to identify the potential FAM20C actions on the brain, an in silico analysis was conducted. Structural and functional defects reported in RNS were described; FAM20C targets and interactors were identified, including their brain expression. Gene ontology of molecular processes, function, and components was completed for these targets, as well as for potential involved signaling pathways and diseases. The BioGRID and Human Protein Atlas databases, the Gorilla tool, and the PANTHER and DisGeNET databases were used. Results show that genes with high expression in the brain are involved in cholesterol and lipoprotein processes, plus axo-dendritic transport and the neuron part. These results could highlight some proteins involved in the neurologic pathogenesis of RNS.

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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