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      Hutchinson-Gilford Progeria Syndrome: a premature aging disease caused by LMNA gene mutations

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          Abstract

          Products of the LMNA gene, primarily lamin A and C, are key components of the nuclear lamina, a proteinaceous meshwork that underlies the inner nuclear membrane and is essential for proper nuclear architecture. Alterations in lamin A and C that disrupt the integrity of the nuclear lamina affect a whole repertoire of nuclear functions, causing cellular decline. In humans, hundreds of mutations in the LMNA gene have been identified and correlated with over a dozen degenerative disorders, referred to as laminopathies. These diseases include neuropathies, muscular dystrophies, lipodystrophies, and premature aging diseases. This review focuses on one of the most severe laminopathies, Hutchinson-Gilford Progeria Syndrome (HGPS), which is caused by aberrant splicing of the LMNA gene and expression of a mutant product called progerin. Here, we discuss current views about the molecular mechanisms that contribute to the pathophysiology of this devastating disease, as well as the strategies being tested in vitro and in vivo to counteract progerin toxicity. In particular, progerin accumulation elicits nuclear morphological abnormalities, misregulated gene expression, defects in DNA repair, telomere shortening, and genomic instability, all of which limit cellular proliferative capacity. In patients harboring this mutation, a severe premature aging disease develops during childhood. Interestingly, progerin is also produced in senescent cells and cells from old individuals, suggesting that progerin accumulation might be a factor in physiological aging. Deciphering the molecular mechanisms whereby progerin expression leads to HGPS is an emergent area of research, which could bring us closer to understanding the pathology of aging.

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          Author and article information

          Journal
          101128963
          29630
          Ageing Res Rev
          Ageing Res. Rev.
          Ageing research reviews
          1568-1637
          1872-9649
          20 July 2016
          29 June 2016
          January 2017
          01 January 2018
          : 33
          : 18-29
          Affiliations
          [1 ]Edward A. Doisy Department of Biochemistry and Molecular Biology, Saint Louis University School of Medicine, St. Louis, MO 63104, USA
          [2 ]Andalusian Center for Developmental Biology (CABD), CSIC/Junta de Andalucia/Universidad Pablo de Olavide, Carretera de Utrera, km 1, 41013 Seville, Spain
          Author notes
          [* ]Corresponding author, Susana Gonzalo, Department of Biochemistry and Molecular Biology, Doisy Research Center, St Louis University School of Medicine, 1100 S Grand Ave, St. Louis, MO 63104, USA, Phone: 314-9779244, sgonzalo@ 123456slu.edu
          Article
          PMC5195863 PMC5195863 5195863 nihpa803560
          10.1016/j.arr.2016.06.007
          5195863
          27374873
          762e6b9b-249a-49d4-a6d8-5f9fd7d173d8
          History
          Categories
          Article

          Laminopathies,nuclear lamina,progerin,genomic instability,HGPS pathology,HGPS treatment

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