Fibrillin-1 and fibrillin-1-derived asprosin in adipose tissue function and metabolic disorders.
Muthu L MuthuDieter P ReinhardtPublished in: Journal of cell communication and signaling (2020)
The extracellular matrix microenvironment of adipose tissue is of critical importance for the differentiation, remodeling and function of adipocytes. Fibrillin-1 is one of the main components of microfibrils and a key player in this process. Furin processing of profibrillin-1 results in mature fibrillin-1 and releases the C-terminal propeptide as a circulating hunger hormone, asprosin. Mutations in the fibrillin-1 gene lead to adipose tissue dysfunction and causes Marfan syndrome, marfanoid progeroid lipodystrophy syndrome, and neonatal progeroid syndrome. Increased TGF-β signaling, altered mechanical properties and impaired adipogenesis are potential causes of adipose tissue dysfunction, mediated through deficient microfibrils. Circulating asprosin on the other hand is secreted primarily by white adipose tissue under fasting conditions and in obesity. It increases hepatic glucose production and drives insulin secretion and appetite stimulation through inter-organ cross talk. This review discusses the metabolic consequences of fibrillin-1 and fibrillin-1-derived asprosin in pathological conditions. Understanding the dynamic role of fibrillin-1 in the adipose tissue milieu and of circulating asprosin in the body can provide novel mechanistic insights into how fibrillin-1 may contribute to metabolic syndrome. This could lead to new management regimens of patients with metabolic disease.
Keyphrases
- adipose tissue
- insulin resistance
- metabolic syndrome
- high fat diet
- extracellular matrix
- high fat diet induced
- case report
- weight loss
- stem cells
- cardiovascular disease
- blood pressure
- blood glucose
- risk assessment
- gene expression
- genome wide
- dna methylation
- body mass index
- weight gain
- physical activity
- glycemic control
- signaling pathway