Cellular stress and AMPK activation as a common mechanism of action linking the effects of metformin and diverse compounds that alleviate accelerated aging defects in Hutchinson-Gilford progeria syndrome

被引:14
作者
Finley, Jahahreeh [1 ]
机构
[1] Finley BioSci, 9900 Richmond Ave, Houston, TX 77042 USA
关键词
AMP-activated protein kinase (AMPK); Hutchinson-Gilford progeria syndrome (HGPS); Oocyte; HIV-1; latency; Rapamycin; Metformin; Retinoic acid; Methylene blue; Sulforaphane; Oltipraz; Vitamin D; MG132; Acrosome; Alternative splicing; ULK1; Autophagy; PGC-l alpha; Nrf2; SRSF1; p32; SPLICE-SITE SELECTION; TRANS-RETINOIC ACID; PROTEIN-KINASE; METHYLENE-BLUE; REACTIVE OXYGEN; SKELETAL-MUSCLE; MITOCHONDRIAL BIOGENESIS; OOCYTE ACTIVATION; OXIDATIVE STRESS; P-32; PROTEIN;
D O I
10.1016/j.mehy.2018.06.029
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Hutchinson-Gilford progeria syndrome (HGPS) is a rare genetic disorder characterized by an accelerated aging phenotype that typically leads to death via stroke or myocardial infarction at approximately 14.6 years of age. Most cases of HGPS have been linked to the extensive use of a cryptic splice donor site located in the LMNA gene due to a de novo mutation, generating a truncated and toxic protein known as progerin. Progerin accumulation in the nuclear membrane and within the nucleus distorts the nuclear architecture and negatively effects nuclear processes including DNA replication and repair, leading to accelerated cellular aging and premature senescence. The serine-arginine rich splicing factor SRSF1 (also known as ASF/SF2) has recently been shown to modulate alternative splicing of the LMNA gene, with SRSF1 inhibition significantly reducing progerin at both the mRNA and protein levels. In 2014, we hypothesized for the first time that compounds including metformin that induce activation of AMP-activated protein kinase (AMPK), a master metabolic regulator activated by cellular stress (e.g. increases in intracellular calcium, reactive oxygen species, and/or an AMP(ADP)/ATP ratio increase, etc.), will beneficially alter gene splicing in progeria cells by inhibiting SRSF1, thus lowering progerin levels and altering the LMNA pre-mRNA splicing ratio. Recent evidence has substantiated this hypothesis, with metformin significantly reducing the mRNA and protein levels of both SRSF1 and progerin, activating AMPK, and alleviating pathological defects in HGPS cells. Metformin has also recently been shown to beneficially alter gene splicing in normal humans. Interestingly, several chemically distinct compounds, including rapamycin, methylene blue, all-trans retinoic acid, MG132, 1 alpha,25-dihydroxyvitamin D3, sulforaphane, and oltipraz have each been shown to alleviate accelerated aging defects in patient-derived HGPS cells. Each of these compounds has also been independently shown to induce AMPK activation. Because these compounds improve accelerated aging defects in HGPS cells either by enhancing mitochondrial functionality, increasing Nrf2 activity, inducing autophagy, or by altering gene splicing and because AMPK activation beneficially modulates each of the aforementioned processes, it is our hypothesis that cellular stress-induced AMPK activation represents an indirect yet common mechanism of action linking such chemically diverse compounds with the beneficial effects of those compounds observed in HGPS cells. As normal humans also produce progerin at much lower levels through a similar mechanism, compounds that safely induce AMPK activation may have wide-ranging implications for both normal and pathological aging.
引用
收藏
页码:151 / 162
页数:12
相关论文
共 181 条
[1]   Vitamin A and retinoid signaling: genomic and nongenomic effects [J].
Al Tanoury, Ziad ;
Piskunov, Aleksandr ;
Rochette-Egly, Cecile .
JOURNAL OF LIPID RESEARCH, 2013, 54 (07) :1761-1775
[2]  
[Anonymous], 2015, ORPHANET J RARE D S2, V10, P09
[3]   Autophagy-related proteins are functionally active in human spermatozoa and may be involved in the regulation of cell survival and motility [J].
Aparicio, I. M. ;
Espino, J. ;
Bejarano, I. ;
Gallardo-Soler, A. ;
Campo, M. L. ;
Salido, G. M. ;
Pariente, J. A. ;
Pena, F. J. ;
Tapia, J. A. .
SCIENTIFIC REPORTS, 2016, 6
[4]   Pre-treatment with metformin activates Nrf2 antioxidant pathways and inhibits inflammatory responses through induction of AMPK after transient global cerebral ischemia [J].
Ashabi, Ghorbangol ;
Khalaj, Leila ;
Khodagholi, Fariba ;
Goudarzvand, Mahdi ;
Sarkaki, Alireza .
METABOLIC BRAIN DISEASE, 2015, 30 (03) :747-754
[5]   Methylene blue delays cellular senescence and enhances key mitochondrial biochemical pathways [J].
Atamna, Hani ;
Nguyen, Andy ;
Schultz, Carla ;
Boyle, Kathleen ;
Newberry, Justin ;
Kato, Hiroyuki ;
Ames, Bruce N. .
FASEB JOURNAL, 2008, 22 (03) :703-712
[6]   Combined activation of the energy and cellular-defense pathways may explain the potent anti-senescence activity of methylene blue [J].
Atamna, Hani ;
Atamna, Wafa ;
Al-Eyd, Ghaith ;
Shanower, Gregory ;
Dhahbi, Joseph M. .
REDOX BIOLOGY, 2015, 6 :426-435
[7]   Identification of a novel class of dithiolethiones that prevent hepatic insulin resistance via the adenosine mono phosphate-activated protein kinase-p70 ribosomal s6 kinase-1 pathway [J].
Bae, Eun Ju ;
Yang, Yoon Mee ;
Kim, Jin Wan ;
Kim, Sang Geon .
HEPATOLOGY, 2007, 46 (03) :730-739
[8]   Addition of adenosine monophosphate-activated protein kinase activators to University of Wisconsin solution:: A way of protecting rat steatotic livers [J].
Ben Mosbah, Ismail ;
Massip-Salcedo, Marto ;
Fernández-Monteiro, Izabel ;
Xaus, Carme ;
Bartrons, Ramon ;
Boillot, Olivier ;
Rosello-Catafau, Joan ;
Peralta, Carmen .
LIVER TRANSPLANTATION, 2007, 13 (03) :410-425
[9]   Trehalose accumulation during cellular stress protects cells and cellular proteins from damage by oxygen radicals [J].
Benaroudj, N ;
Lee, DH ;
Goldberg, AL .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (26) :24261-24267
[10]   CHROMOSOMAL LOCALIZATION OF MOUSE AND HUMAN GENES ENCODING THE SPLICING FACTORS ASF/SF2 (SFRS1) AND SC-35 (SFRS2) [J].
BERMINGHAM, JR ;
ARDEN, KC ;
NAUMOVA, AK ;
SAPIENZA, C ;
VIARS, CS ;
FU, XD ;
KHOTZ, J ;
MANLEY, JL ;
ROSENFELD, MG .
GENOMICS, 1995, 29 (01) :70-79