Triiodothyronine (T3) enhances lifespan and protects against oxidative stress via activation of Klotho in Caenorhabditis elegans

被引:1
作者
Saswat Kumar Mohanty
Kitlangki Suchiang
机构
[1] Pondicherry University,Department of Biochemistry and Molecular Biology
来源
Biogerontology | 2021年 / 22卷
关键词
Triiodothyronine; Klotho; Aging; EGL-15; DAF-16; Oxidative stress;
D O I
暂无
中图分类号
学科分类号
摘要
Age predisposes individuals to significant diseases, and the biological processes contributing to aging are currently under intense investigation. Klotho is an anti-aging protein with multifaceted roles and is an essential component of the endocrine fibroblast growth factor. In Caenorhabditis elegans (C. elegans), there are two prospective orthologs of α-Klotho, C50F7.10, and E02H9.5, identified. The two orthologs' products are homologous to the highly conserved KL1 domain of human and mouse Klotho protein. Considering the endocrine system's major involvement in an organism's homeostasis and that thyroid disorders increase with advancing age, the molecular mechanisms underlying its impact on different endocrine components during the aging process remain poorly characterized. In this study, we sought to determine the regulatory role of Triiodothyronine (T3) on homologs genes of klotho and its impact on different parameters of aging in the C. elegans model organism. We showed that T3 could increase the mRNA expressions of the klotho homologous genes in C. elegans. Moreover, T3 could also extend a worm lifespan and modulate oxidative stress resistance and aging biomarkers significantly and positively. Further investigations employing different mutant and transgenic strains reveal that these observed effects are mediated through the EGL-17/EGL-15 pathway via Klotho activation along with the involvement of transcription factor DAF-16. In conclusion, these findings have revealed an unexpected link between T3 and Klotho and how this link can modulate the aging process in C. elegans via activation of klotho. This study will help understand the crosstalk and regulations of different endocrine components and their consequences on the aging process in multiple species.
引用
收藏
页码:397 / 413
页数:16
相关论文
共 446 条
[1]  
Adijiang A(2010)An oral sorbent, AST-120, increases klotho expression and inhibits cell senescence in the kidney of uremic rats Am J Nephrol 31 160-164
[2]  
Niwa T(1998)Statistics notes: generalisation and extrapolation BMJ 317 409-410
[3]  
Altman DG(2003)SKN-1 links C. elegans mesendodermal specification to a conserved oxidative stress response Genes Dev 17 1882-1893
[4]  
Bland JM(2008)Remarkable longevity and stress resistance of nematode PI3K-null mutants Aging Cell 7 13-22
[5]  
An JH(2015)The emonstration of αKlotho deficiency in human chronic kidney disease with a novel synthetic antibody Nephrol Dial Transplant 30 223-233
[6]  
Blackwell TK(1998)The free radical theory of aging matures Physiol Rev 78 547-581
[7]  
Ayyadevara S(2009)Klotho is a substrate for α-, β- and γ-secretase FEBS Lett 583 3221-3224
[8]  
Alla R(2003)Extended longevity in mice lacking the insulin receptor in adipose tissue Science 299 572-574
[9]  
Thaden JJ(1981)Quantitative measures of aging in the nematode Caenorhabditis elegans. In population and longitudinal studies of two behavioral parameters Mech Ageing Dev 15 279-295
[10]  
Shmookler Reis RJ(2013)Thyroid hormone signaling and homeostasis during aging Endocr Rev 34 556-589