Cutis Laxa and Premature Aging Syndromes

Author(s):  
Jeffrey M. Davidson ◽  
MariaGabriella Giro
2016 ◽  
Vol 32 (5) ◽  
pp. 650-658 ◽  
Author(s):  
Yuichi Ikeda ◽  
Hidetoshi Kumagai ◽  
Yoshihiro Motozawa ◽  
Jun-ichi Suzuki ◽  
Hiroshi Akazawa ◽  
...  

Author(s):  
John C. Lucchesi

Epigenetic modifications correlated with aging and oncogenesis are changes in the pattern of DNA methylation and of histone modifications, and changes in the level of histone variants (H3.3, macroH2A, H2A.Z) and gene mutations. The sirtuins are a set of highly conserved protein deacetylases of particular significance to the aging process. Many cancer types are found to carry mutations in chromatin-modifying genes such as those encoding methyl or acetyl transferases, affecting the histone modifications of promoters and enhancers. The aging process and oncogenesis present a number of changes in the nuclear architecture. Mutations in the lamina-coding genes lead to premature aging syndromes. Mutations in remodeling complexes are found in different cancers. Modifications that affect the architectural protein binding sites at topologically associating domain (TAD) borders can cause the merging of neighboring TADs. The levels of short non-coding RNAs (sncRNAs) are altered in model organisms and are associated with cancer. Changes in the position of chromosome territories often occur in tumor cells. Nevertheless, cellular senescence, due mostly to the absence of telomerase, represents a mechanism of tumor suppression.


Author(s):  
Vilhelm A. Bohr ◽  
Adayabalam Balajce ◽  
Grigory Dianov ◽  
Amrita Machwe ◽  
Alfred May ◽  
...  

2014 ◽  
Vol 29 ◽  
pp. 125-147 ◽  
Author(s):  
Pierre Cau ◽  
Claire Navarro ◽  
Karim Harhouri ◽  
Patrice Roll ◽  
Sabine Sigaudy ◽  
...  

2020 ◽  
Vol 12 (1) ◽  
Author(s):  
Olivia Cypris ◽  
Monika Eipel ◽  
Julia Franzen ◽  
Corinna Rösseler ◽  
Vithurithra Tharmapalan ◽  
...  

Abstract Background Dyskeratosis congenita (DKC) and idiopathic aplastic anemia (AA) are bone marrow failure syndromes that share characteristics of premature aging with severe telomere attrition. Aging is also reflected by DNA methylation changes, which can be utilized to predict donor age. There is evidence that such epigenetic age predictions are accelerated in premature aging syndromes, but it is yet unclear how this is related to telomere length. DNA methylation analysis may support diagnosis of DKC and AA, which still remains a challenge for these rare diseases. Results In this study, we analyzed blood samples of 70 AA and 18 DKC patients to demonstrate that their epigenetic age predictions are overall increased, albeit not directly correlated with telomere length. Aberrant DNA methylation was observed in the gene PRDM8 in DKC and AA as well as in other diseases with premature aging phenotype, such as Down syndrome and Hutchinson-Gilford-Progeria syndrome. Aberrant DNA methylation patterns were particularly found within subsets of cell populations in DKC and AA samples as measured with barcoded bisulfite amplicon sequencing (BBA-seq). To gain insight into the functional relevance of PRDM8, we used CRISPR/Cas9 technology to generate induced pluripotent stem cells (iPSCs) with heterozygous and homozygous knockout. Loss of PRDM8 impaired hematopoietic and neuronal differentiation of iPSCs, even in the heterozygous knockout clone, but it did not impact on epigenetic age. Conclusion Taken together, our results demonstrate that epigenetic aging is accelerated in DKC and AA, independent from telomere attrition. Furthermore, aberrant DNA methylation in PRDM8 provides another biomarker for bone marrow failure syndromes and modulation of this gene in cellular subsets may be related to the hematopoietic and neuronal phenotypes observed in premature aging syndromes. Graphical abstract


2015 ◽  
pp. 1-19
Author(s):  
Adele Chedraoui ◽  
Abdul Ghani Kibbi ◽  
Mazen Kurban

2011 ◽  
Vol 155 (6) ◽  
pp. 1285-1289 ◽  
Author(s):  
Dar-Shong Lin ◽  
Chun-Yan Yeung ◽  
Hsuan-Liang Liu ◽  
Che-Sheng Ho ◽  
Chyong-Hsin Shu ◽  
...  

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