Key result
Lipasin (betatrophin) is involved in lipid regulation, but its mechanism of action, role in pancreatic beta-cell proliferation, and circulating levels in human disease remain highly controversial.
This review highlights the consensus that lipasin (betatrophin) regulates lipid metabolism, while emphasizing the ongoing controversies regarding its mechanism of action and potential role as a therapeutic target for diabetes.
Lipasin's lipid role is established but mechanisms and diabetes links remain disputed; leaves open its therapeutic targeting pending resolution.
Metabolic syndrome includes glucose intolerance and dyslipidemia, both of which are strong risk factors for developing diabetes and atherosclerotic cardiovascular diseases. Recently, multiple groups independently studied a previously uncharacterized gene, officially named C19orf80 (human) and Gm6484 (mouse), but more commonly known as RIFL, Angptl8, betatrophin and lipasin. Both exciting and conflicting results have been obtained, and significant controversy is ongoing. Accumulating evidence from genome wide association studies and mouse genetic studies convincingly shows that lipasin is involved in lipid regulation. However, the mechanism of action, the identity of transcription factors mediating its nutritional regulation, circulating levels, and relationship among lipasin, Angptl3 and Angptl4, remain elusive. Betatrophin represents a promising drug target for replenishing β-cell mass, but current results have not been conclusive regarding its potency and specificity. Here, we summarize the consensus and controversy regarding functions of lipasin/betatrophin based on currently available evidence.
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Zhang et al. (2014) conducted a review in Metabolic syndrome, dyslipidemia, diabetes. Lipasin (betatrophin) was evaluated. Lipasin (betatrophin) is involved in lipid regulation, but its mechanism of action, role in pancreatic beta-cell proliferation, and circulating levels in human disease remain highly controversial.
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