Protein farnesylation is required for the activation of multiple proteins involved in cell differentiation and function. In white adipose tissue protein, farnesylation has shown to be essential for the successful differentiation of preadipocytes into adipocytes. We hypothesize that protein farnesylation is required for PPARγ2 expression and activation, and therefore for the differentiation of human mesenchymal stem cells (MSCs) into adipocytes. MSCs were plated and induced to differentiate into adipocytes for three weeks. Differentiating cells were treated with either an inhibitor of farnesylation (FTI-277) or vehicle alone. The effect of inhibition of farnesylation in differentiating adipocytes was determined by oil red O staining. Cell su...
Recently, new molecular pathways are being investigated to find potential treatments for obesity. On...
Arginylation, a poorly understood post translational modification mediated by ATE1 known to regulate...
We investigated the ability of fetal mesenchymal stem cells (fMSCs) to differentiate into brown and ...
Protein farnesylation is required for the activation of multiple proteins involved in cell different...
Background and Aim: Obesity is now considered as one of the main risk factors of certain known disea...
Adipogenesis is the process by which precursor stem cells differentiate into lipid laden adipocytes....
Thesis (Ph.D.)--Boston UniversityFat cell development is a dynamic cellular transition process in wh...
Obesity is a global health problem characterized as an increase in the mass of adipose tissue. Adipo...
RNA interference (RNAi) has been used in functional genomics and offers innovative approaches in the...
Differentiation of preadipocyte, also called adipogenesis, leads to the phenotype of mature adipocyt...
Differentiation of preadipocyte, also called adipogenesis, leads to the phenotype of mature adipocyt...
Abstract: Arginine, an α-amino acid, has been reported to exert beneficial effects that ameliorate h...
Adipose tissue is a key metabolic organ responsible for maintaining energy homeostasis throughout th...
Development of adipose tissue requires the differentiation of less specialized cells, such as human ...
FTO (fat mass and obesity associated gene) was genetically identified to be associated with body mas...
Recently, new molecular pathways are being investigated to find potential treatments for obesity. On...
Arginylation, a poorly understood post translational modification mediated by ATE1 known to regulate...
We investigated the ability of fetal mesenchymal stem cells (fMSCs) to differentiate into brown and ...
Protein farnesylation is required for the activation of multiple proteins involved in cell different...
Background and Aim: Obesity is now considered as one of the main risk factors of certain known disea...
Adipogenesis is the process by which precursor stem cells differentiate into lipid laden adipocytes....
Thesis (Ph.D.)--Boston UniversityFat cell development is a dynamic cellular transition process in wh...
Obesity is a global health problem characterized as an increase in the mass of adipose tissue. Adipo...
RNA interference (RNAi) has been used in functional genomics and offers innovative approaches in the...
Differentiation of preadipocyte, also called adipogenesis, leads to the phenotype of mature adipocyt...
Differentiation of preadipocyte, also called adipogenesis, leads to the phenotype of mature adipocyt...
Abstract: Arginine, an α-amino acid, has been reported to exert beneficial effects that ameliorate h...
Adipose tissue is a key metabolic organ responsible for maintaining energy homeostasis throughout th...
Development of adipose tissue requires the differentiation of less specialized cells, such as human ...
FTO (fat mass and obesity associated gene) was genetically identified to be associated with body mas...
Recently, new molecular pathways are being investigated to find potential treatments for obesity. On...
Arginylation, a poorly understood post translational modification mediated by ATE1 known to regulate...
We investigated the ability of fetal mesenchymal stem cells (fMSCs) to differentiate into brown and ...