Cargando…

A Link between Genetic Disorders and Cellular Impairment, Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15

Recent cutting-edge human genetics technology has allowed us to identify copy number variations (CNVs) and has provided new insights for understanding causative mechanisms of human diseases. A growing number of studies show that CNVs could be associated with physiological mechanisms linked to evolut...

Descripción completa

Detalles Bibliográficos
Autores principales: Casamassa, Alessia, Ferrari, Daniela, Gelati, Maurizio, Carella, Massimo, Vescovi, Angelo Luigi, Rosati, Jessica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084702/
https://www.ncbi.nlm.nih.gov/pubmed/32182809
http://dx.doi.org/10.3390/ijms21051860
_version_ 1783508783156166656
author Casamassa, Alessia
Ferrari, Daniela
Gelati, Maurizio
Carella, Massimo
Vescovi, Angelo Luigi
Rosati, Jessica
author_facet Casamassa, Alessia
Ferrari, Daniela
Gelati, Maurizio
Carella, Massimo
Vescovi, Angelo Luigi
Rosati, Jessica
author_sort Casamassa, Alessia
collection PubMed
description Recent cutting-edge human genetics technology has allowed us to identify copy number variations (CNVs) and has provided new insights for understanding causative mechanisms of human diseases. A growing number of studies show that CNVs could be associated with physiological mechanisms linked to evolutionary trigger, as well as to the pathogenesis of various diseases, including cancer, autoimmune disease and mental disorders such as autism spectrum disorders, schizophrenia, intellectual disabilities or attention-deficit/hyperactivity disorder. Their incomplete penetrance and variable expressivity make diagnosis difficult and hinder comprehension of the mechanistic bases of these disorders. Additional elements such as co-presence of other CNVs, genomic background and environmental factors are involved in determining the final phenotype associated with a CNV. Genetically engineered animal models are helpful tools for understanding the behavioral consequences of CNVs. However, the genetic background and the biology of these animal model systems have sometimes led to confusing results. New cellular models obtained through somatic cellular reprogramming technology that produce induced pluripotent stem cells (iPSCs) from human subjects are being used to explore the mechanisms involved in the pathogenic consequences of CNVs. Considering the vast quantity of CNVs found in the human genome, we intend to focus on reviewing the current literature on the use of iPSCs carrying CNVs on chromosome 15, highlighting advantages and limits of this system with respect to mouse model systems.
format Online
Article
Text
id pubmed-7084702
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-70847022020-03-24 A Link between Genetic Disorders and Cellular Impairment, Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15 Casamassa, Alessia Ferrari, Daniela Gelati, Maurizio Carella, Massimo Vescovi, Angelo Luigi Rosati, Jessica Int J Mol Sci Review Recent cutting-edge human genetics technology has allowed us to identify copy number variations (CNVs) and has provided new insights for understanding causative mechanisms of human diseases. A growing number of studies show that CNVs could be associated with physiological mechanisms linked to evolutionary trigger, as well as to the pathogenesis of various diseases, including cancer, autoimmune disease and mental disorders such as autism spectrum disorders, schizophrenia, intellectual disabilities or attention-deficit/hyperactivity disorder. Their incomplete penetrance and variable expressivity make diagnosis difficult and hinder comprehension of the mechanistic bases of these disorders. Additional elements such as co-presence of other CNVs, genomic background and environmental factors are involved in determining the final phenotype associated with a CNV. Genetically engineered animal models are helpful tools for understanding the behavioral consequences of CNVs. However, the genetic background and the biology of these animal model systems have sometimes led to confusing results. New cellular models obtained through somatic cellular reprogramming technology that produce induced pluripotent stem cells (iPSCs) from human subjects are being used to explore the mechanisms involved in the pathogenic consequences of CNVs. Considering the vast quantity of CNVs found in the human genome, we intend to focus on reviewing the current literature on the use of iPSCs carrying CNVs on chromosome 15, highlighting advantages and limits of this system with respect to mouse model systems. MDPI 2020-03-09 /pmc/articles/PMC7084702/ /pubmed/32182809 http://dx.doi.org/10.3390/ijms21051860 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Casamassa, Alessia
Ferrari, Daniela
Gelati, Maurizio
Carella, Massimo
Vescovi, Angelo Luigi
Rosati, Jessica
A Link between Genetic Disorders and Cellular Impairment, Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15
title A Link between Genetic Disorders and Cellular Impairment, Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15
title_full A Link between Genetic Disorders and Cellular Impairment, Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15
title_fullStr A Link between Genetic Disorders and Cellular Impairment, Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15
title_full_unstemmed A Link between Genetic Disorders and Cellular Impairment, Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15
title_short A Link between Genetic Disorders and Cellular Impairment, Using Human Induced Pluripotent Stem Cells to Reveal the Functional Consequences of Copy Number Variations in the Central Nervous System—A Close Look at Chromosome 15
title_sort link between genetic disorders and cellular impairment, using human induced pluripotent stem cells to reveal the functional consequences of copy number variations in the central nervous system—a close look at chromosome 15
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084702/
https://www.ncbi.nlm.nih.gov/pubmed/32182809
http://dx.doi.org/10.3390/ijms21051860
work_keys_str_mv AT casamassaalessia alinkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT ferraridaniela alinkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT gelatimaurizio alinkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT carellamassimo alinkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT vescoviangeloluigi alinkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT rosatijessica alinkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT casamassaalessia linkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT ferraridaniela linkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT gelatimaurizio linkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT carellamassimo linkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT vescoviangeloluigi linkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15
AT rosatijessica linkbetweengeneticdisordersandcellularimpairmentusinghumaninducedpluripotentstemcellstorevealthefunctionalconsequencesofcopynumbervariationsinthecentralnervoussystemacloselookatchromosome15