Genetics of Charcot-Marie-Tooth (CMT) Disease within the Frame of the Human Genome Project Success.

Genes (Basel)

Department of Human Genetics, Hussman Institute for Human Genomics, University of Miami Miller School of Medicine, Biomedical Research Building, Room 523, LC: M-860, 1501 NW 10 Ave., Miami, FL 33136, USA.

Published: January 2014

AI Article Synopsis

  • Charcot-Marie-Tooth (CMT) neuropathies are genetic disorders that affect the peripheral nervous system, with over 1,000 mutations identified across 80 genes, highlighting their genetic diversity.
  • Research has advanced the understanding of CMT by revealing common mechanisms of nerve degeneration and exploring potential therapeutic strategies, driven by technologies like next-generation sequencing.
  • The document reviews the history of gene discoveries in CMT, emphasizes relevant gene examples, and proposes future initiatives for improving diagnosis through better data sharing and reduced costs.

Article Abstract

Charcot-Marie-Tooth (CMT) neuropathies comprise a group of monogenic disorders affecting the peripheral nervous system. CMT is characterized by a clinically and genetically heterogeneous group of neuropathies, involving all types of Mendelian inheritance patterns. Over 1,000 different mutations have been discovered in 80 disease-associated genes. Genetic research of CMT has pioneered the discovery of genomic disorders and aided in understanding the effects of copy number variation and the mechanisms of genomic rearrangements. CMT genetic study also unraveled common pathomechanisms for peripheral nerve degeneration, elucidated gene networks, and initiated the development of therapeutic approaches. The reference genome, which became available thanks to the Human Genome Project, and the development of next generation sequencing tools, considerably accelerated gene and mutation discoveries. In fact, the first clinical whole genome sequence was reported in a patient with CMT. Here we review the history of CMT gene discoveries, starting with technologies from the early days in human genetics through the high-throughput application of modern DNA analyses. We highlight the most relevant examples of CMT genes and mutation mechanisms, some of which provide promising treatment strategies. Finally, we propose future initiatives to accelerate diagnosis of CMT patients through new ways of sharing large datasets and genetic variants, and at ever diminishing costs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3978509PMC
http://dx.doi.org/10.3390/genes5010013DOI Listing

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