Schaab Michael, Kratzsch Juergen
Institute of Laboratory Medicine Clinical Chemistry and Molecular Diagnostics, Leipzig, Germany.
Institute of Laboratory Medicine Clinical Chemistry and Molecular Diagnostics, Leipzig, Germany.
Best Pract Res Clin Endocrinol Metab. 2015 Oct;29(5):661-70. doi: 10.1016/j.beem.2015.08.002. Epub 2015 Sep 6.
The adipokine leptin realizes signal transduction via four different leptin receptor (OB-R) isoforms. The amount of functionally active OB-R, however, is affected by constitutive shedding of the extracellular domain. The product of the cleavage process, the so-called soluble leptin receptor (sOB-R), is the main binding protein for leptin in human blood and modulates its bioavailability. Concentrations of sOB-R are differentially regulated in metabolic disorders, such as type 1 diabetes mellitus or obesity, and can, therefore, enhance or reduce leptin sensitivity. Lipotoxicity and apoptosis increase OB-R cleavage via ADAM10-dependent mechanisms. In contrast, although increased sOB-R concentrations seem to directly inhibit leptin effects, reduced amounts of sOB-R may reflect decreased membrane expression of OB-R. These findings, in part, explain alterations of leptin sensitivity that are associated with changes in serum sOB-R concentrations seen in metabolic disorders.
脂肪因子瘦素通过四种不同的瘦素受体(OB-R)亚型实现信号转导。然而,功能性活性OB-R的数量受细胞外结构域组成性脱落的影响。裂解过程的产物,即所谓的可溶性瘦素受体(sOB-R),是人类血液中瘦素的主要结合蛋白,并调节其生物利用度。sOB-R的浓度在代谢紊乱(如1型糖尿病或肥胖症)中受到不同程度的调节,因此可以增强或降低瘦素敏感性。脂毒性和细胞凋亡通过ADAM10依赖性机制增加OB-R的裂解。相反,尽管sOB-R浓度升高似乎直接抑制瘦素作用,但sOB-R数量减少可能反映了OB-R膜表达的降低。这些发现部分解释了与代谢紊乱中血清sOB-R浓度变化相关的瘦素敏感性改变。