Blood-Brain Barrier Group, Pennington Biomedical Research Center, 6400 Perkins Rd., Baton Rouge, LA 70808, USA.
FASEB J. 2010 Jul;24(7):2281-91. doi: 10.1096/fj.09-143487. Epub 2010 Mar 11.
Impairment in blood-to-brain transport of leptin is a major cause as well as consequence of obesity. Leptin crosses the blood-brain barrier by transcytosis rather than undergoing intracellular degradation. Results from previous studies have indicated that the membrane juxtapositional cytoplasmic sequence of the leptin receptor ObR is responsible for leptin transport. To identify the specific structural domains, we generated a series of ObR truncates with different lengths of the intracellular sequence, overexpressed them in 3 types of mammalian cells including cerebral endothelia, and quantified leptin binding and endocytosis. All mutant ObRs were able to bind and mediate the internalization of leptin. Surprisingly, ObR860, a construct with no cytoplasmic sequence, could act like the classical ObRa transporter in internalizing leptin. There were some cell type-dependent variations in the intracellular trafficking of Alexa-labeled leptin when mediated by ObR860 or ObRa because of differential involvement of membrane microdomains, as shown by use of the clathrin inhibitor chlorpromazine and the dynamin inhibitor Dynasore. The clathrin- and dynamin-mediated endocytosis of leptin contrasts with the lack of effect of the caveolae inhibitors nystatin and filipin. Thus, leptin-induced internalization of the ligand-receptor complex can occur without specific sorting signals in the cytoplasmic region of ObR. This novel finding may have significant implications for leptin transport.
血脑转运素瘦素的损伤是肥胖的主要原因和后果。瘦素通过胞吞作用穿过血脑屏障,而不是经历细胞内降解。先前的研究结果表明,瘦素受体 ObR 的膜并列细胞质序列负责瘦素转运。为了确定特定的结构域,我们生成了一系列具有不同长度细胞内序列的 ObR 截断物,在包括脑内皮细胞在内的 3 种哺乳动物细胞中过表达它们,并定量了瘦素结合和内吞作用。所有突变的 ObR 都能够结合并介导瘦素的内化。令人惊讶的是,没有细胞质序列的 ObR860 构建体可以像经典的 ObRa 转运体一样内化瘦素。由于膜微区的不同参与,在用 ObR860 或 ObRa 介导的 Alexa 标记瘦素的细胞内运输中存在一些细胞类型依赖性变化,如用网格蛋白抑制剂氯丙嗪和动力蛋白抑制剂 Dynasore 所示。瘦素诱导的配体-受体复合物的内吞作用与小窝抑制剂制霉菌素和 filipin 无影响形成对比。因此,瘦素诱导的配体-受体复合物的内化可以在 ObR 的细胞质区域中没有特定的分拣信号的情况下发生。这一新发现可能对瘦素转运具有重要意义。