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Klotho: an antiaging protein involved in mineral and vitamin D metabolism
P-Ureña Torres1, D Prié, V Molina-Blétry
1Service de Néphrologie et Dialyse, Clinique de l'Orangerie, Aubervilliers, France. urena.pablo@wanadoo.fr
Abstract:
Klotho gene mutation leads to a syndrome strangely resembling chronic kidney disease patients undergoing dialysis with multiple accelerated age-related disorders, including hypoactivity, sterility, skin thinning, muscle atrophy, osteoporosis, vascular calcifications, soft-tissue calcifications, defective hearing, thymus atrophy, pulmonary emphysema, ataxia, and abnormalities of the pituitary gland, as well as hypoglycemia, hyperphosphatemia, and paradoxically high-plasma calcitriol levels. Conversely, mice overexpressing klotho show an extended existence and a slow aging process through a mechanism that may involve the induction of a state of insulin and oxidant stress resistance. Two molecules are produced by the klotho gene, a membrane bound form and a circulating form. However, their precise biological roles and molecular functions have been only partly deciphered. Klotho can act as a circulating factor or hormone, which binds to a not yet identified high-affinity receptor and inhibits the intracellular insulin/insulin-like growth factor-1 (IGF-1) signaling cascade; klotho can function as a novel beta-glucuronidase, which deglycosylates steroid beta-glucuronides and the calcium channel transient receptor potential vallinoid-5 (TRPV5); as a cofactor essential for the stimulation of fibroblast growth factor (FGF) receptor by FGF23. The two last functions have propelled klotho to the group of key factors regulating mineral and vitamin D metabolism, and have also stimulated the interest of the nephrology community. The purpose of this review is to provide a nephrology-oriented overview of klotho and its potential implications in normal and altered renal function states.
Insights
Klotho gene mutations cause premature aging and kidney disease-like symptoms. Overexpression of klotho extends lifespan and slows aging, highlighting its role in aging and kidney function.
Area of Science:
- Endocrinology
- Nephrology
- Genetics
- Aging Research
Background:
- Klotho gene mutations mimic chronic kidney disease and accelerated aging syndromes.
- Klotho gene overexpression in mice extends lifespan and promotes resistance to insulin and oxidative stress.
Purpose of the Study:
- To provide a nephrology-focused review of the klotho gene.
- To explore klotho's implications in normal and impaired kidney function.
Main Methods:
- Review of existing literature on klotho gene function and its clinical relevance.
- Analysis of klotho's roles as a circulating hormone, beta-glucuronidase, and cofactor for FGF23.
Main Results:
- Klotho has diverse functions, including regulating insulin/IGF-1 signaling, vitamin D, and mineral metabolism.
- Klotho's roles in deglycosylation of steroid beta-glucuronides and TRPV5, and as an FGF23 cofactor are key.
- Klotho's involvement in mineral and vitamin D metabolism is significant for nephrology.
Conclusions:
- Klotho is a crucial regulator of mineral and vitamin D metabolism.
- Understanding klotho's functions is vital for nephrology and aging research.
- Further research into klotho's precise biological roles and receptor interactions is warranted.
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