Molecular bases of progeroid syndromes
Open Access
- 15 October 2006
- journal article
- review article
- Published by Oxford University Press (OUP) in Human Molecular Genetics
- Vol. 15 (suppl_2) , R151-R161
- https://doi.org/10.1093/hmg/ddl214
Abstract
Progeroid syndromes (PSs) constitute a group of disorders characterized by clinical features mimicking physiological aging at an early age. In some of these syndromes, biological hallmarks of aging are also present, whereas in others, a link with physiological aging, if any, remains to be elucidated. These syndromes are clinically and genetically heterogeneous and most of them, including Werner syndrome and Hutchinson–Gilford progeria, are known as ‘segmental aging syndromes’, as they do not feature all aspects usually associated to physiological aging. However, all the characterized PSs enter in the field of rare monogenic disorders and several causative genes have been identified. These can be separated in subcategories corresponding to (i) genes encoding DNA repair factors, in particular, DNA helicases, and (ii) genes affecting the structure or post-translational maturation of lamin A, a major nuclear component. In addition, several animal models featuring premature aging have abnormal mitochondrial function or signal transduction between membrane receptors, nuclear regulatory proteins and mitochondria: no human pathological counterpart of these alterations has been found to date. In recent years, identification of mutations and their functional characterization have helped to unravel the cellular processes associated to segmental PSs. Recently, several studies allowed to establish a functional link between DNA repair and A-type lamins-associated syndromes, evidencing a relation between these syndromes, physiological aging and cancer. Here, we review recent data on molecular and cellular bases of PSs and discuss the mechanisms involved, with a special emphasis on lamin A-associated progeria and related disorders, for which therapeutic approaches have started to be developed.Keywords
This publication has 147 references indexed in Scilit:
- The spectrum ofWRNmutations in Werner syndrome patientsHuman Mutation, 2006
- Interstitial chromatin alteration causes persistent p53 activation involved in the radiation-induced senescence-like growth arrestBiochemical and Biophysical Research Communications, 2006
- Molecular Mechanisms of Mammalian Global Genome Nucleotide Excision RepairChemical Reviews, 2005
- Calorie restriction, SIRT1 and metabolism: understanding longevityNature Reviews Molecular Cell Biology, 2005
- The Plasticity of Aging: Insights from Long-Lived MutantsCell, 2005
- IGF-1 signaling and agingExperimental Gerontology, 2004
- Mice and mitochondriaNature, 2004
- Mitochondrial Protein p32 Can Accumulate in the NucleusBiochemical and Biophysical Research Communications, 2001
- Mechanism of Aminobisphosphonate Action: Characterization of Alendronate Inhibition of the Isoprenoid PathwayBiochemical and Biophysical Research Communications, 1999
- Farnesyl Pyrophosphate Synthase Is the Molecular Target of Nitrogen-Containing BisphosphonatesBiochemical and Biophysical Research Communications, 1999