CLOCK gene polymorphisms and quality of aging in a cohort of nonagenarians - The MUGELLO Study.
Giuditta PagliaiFrancesco SofiMonica DinuElena SticchiFederica VannettiRaffaele Molino LovaJosé Marìa OrdovàsAnna Maria GoriRossella MarcucciBetti GiustiClaudio MacchiPublished in: Scientific reports (2019)
A total of 356 elderly subjects [257F; 88-106 years] were genotyped for three polymorphisms of the CLOCK gene by TaqMan real-time PCR approach, in order to find associations with quality of aging. Subjects homozygous for the minor allele of rs1801260 were less frequently overweight (p = 0.046), had higher fasting glucose levels (p = 0.037), better scores at the Clock Drawing Test (CDT) (p = 0.047) and worse scores at the Geriatric Depression Scale (p = 0.032). Subjects homozygous for the minor allele of rs11932595 showed higher fasting glucose levels (p = 0.044) and better scores at CDT (p = 0.030). Conversely, subjects homozygous for the minor allele of rs4580704 showed higher triglyceride (p = 0.012), and LDL-cholesterol levels (p = 0.44), and a greater adherence to the Mediterranean diet (MD) (p = 0.044). In addition, AAC, AAG, GGC and AGC (rs1801260-rs11932595-rs4580704) haplotypes were analyzed: AAG was associated with higher risk of overweight (p = 0.008), hypertriglyceridemia (p = 0.040) and hypercholesterolemia (p = 0.036); GGC with lower risk of hyperglycemia (p = 0.022), better sleep pattern (p = 0.001) and with better score at mini-mental state examination (p = 0.010); AGC with lower risk of depression (p = 0.026) and AAC with lower adherence to the MD (p = 0.028). Therefore, CLOCK gene polymorphisms let us hypothesize an involvement in the quality of aging in a cohort of nonagenarians.
Keyphrases
- blood glucose
- real time pcr
- physical activity
- low density lipoprotein
- sleep quality
- depressive symptoms
- weight loss
- molecular dynamics
- type diabetes
- quality improvement
- gene expression
- metabolic syndrome
- blood pressure
- glycemic control
- cardiovascular disease
- transcription factor
- oxidative stress
- dna methylation
- genome wide identification