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Cited 74 time in webofscience Cited 74 time in scopus
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Interruption of progerin-lamin A/C binding ameliorates Hutchinson-Gilford progeria syndrome phenotypeopen access

Authors
Lee, Su-JinJung, Youn-SangYoon, Min-HoKang, So-miOh, Ah-YoungLee, Jee-HyunJun, So-YoungWoo, Tae-GyunChun, Ho-YoungKim, Sang KyumChung, Kyu JinLee, Ho-YoungLee, KyeongJin, GuanghaiNa, Min-KyunHa, Nam ChulBarcena, CleaFreije, Jose M. P.Lopez-Otin, CarlosSong, Gyu YongPark, Bum-Joon
Issue Date
Oct-2016
Publisher
AMER SOC CLINICAL INVESTIGATION INC
Citation
JOURNAL OF CLINICAL INVESTIGATION, v.126, no.10, pp 3879 - 3893
Pages
15
Indexed
SCI
SCIE
SCOPUS
Journal Title
JOURNAL OF CLINICAL INVESTIGATION
Volume
126
Number
10
Start Page
3879
End Page
3893
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/18135
DOI
10.1172/JCI84164
ISSN
0021-9738
1558-8238
Abstract
Hutchinson-Gilford progeria syndrome (HGPS) is a rare autosomal dominant genetic disease that is caused by a silent mutation of the LMNA gene encoding lamins A and C (lamin A/C). The G608G mutation generates a more accessible splicing donor site than does WT and produces an alternatively spliced product of LMNA called progerin, which is also expressed in normal aged cells. In this study, we determined that progerin binds directly to lamin A/C and induces profound nuclear aberrations. Given this observation, we performed a random screening of a chemical library and identified 3 compounds (JH1, JH4, and JH13) that efficiently block progerin-lamin A/C binding. These 3 chemicals, particularly JH4, alleviated nuclear deformation and reversed senescence markers characteristic of HGPS cells, including growth arrest and senescence associated beta-gal (SA-beta-gal) activity. We then used microarray-based analysis to demonstrate that JH4 is able to rescue defects of cell-cycle progression in both HGPS and aged cells. Furthermore, administration of JH4 to Lmna(G689G/G669G)-mutant mice, which phenocopy human HGPS, resulted in a marked improvement of several progeria phenotypes and an extended lifespan. Together, these findings indicate that specific inhibitors with the ability to block pathological progerin-lamin A/C binding may represent a promising strategy for improving lifespan and health in both HGPS and normal aging.
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