Institute of Physiology, University of Hohenheim, Stuttgart, Germany.
Histochem Cell Biol. 2011 Sep;136(3):357-69. doi: 10.1007/s00418-011-0850-y. Epub 2011 Aug 5.
The detection of odorants in vertebrates is mediated by chemosensory neurons that reside in the olfactory epithelium of the nose. In land-living species, the hydrophobic odorous compounds inhaled by the airstream are dissolved in the nasal mucus by means of specialized globular proteins, the odorant-binding proteins (OBPs). To assure the responsiveness to odors of each inhalation, a rapid removal of odorants from the microenvironment of the receptor is essential. In order to follow the fate of OBP/odorant complexes, a recombinant OBP was fluorescently labeled, loaded with odorous compounds, and applied to the nose of a mouse. Very quickly, labeled OBP appeared inside the sustentacular cells of the epithelium. This uptake occurred only when the OBP was loaded with appropriate odorant compounds. A search for candidate transporters that could mediate such an uptake process led to the identification of the low density lipoprotein receptor Lrp2/Megalin. In the olfactory epithelium, megalin was found to be specifically expressed in sustentacular cells and the Megalin protein was located in their microvilli. In vitro studies using a cell line that expresses megalin revealed a rapid internalization of OBP/odorant complexes into lysosomes. The uptake was blocked by a Megalin inhibitor, as was the internalization of OBPs into the sustentacular cells of the olfactory epithelium. The results suggest that a Megalin-mediated internalization of OBP/odorant complexes into the sustentacular cells may represent an important mechanism for a rapid and local clearance of odorants.
脊椎动物对气味的检测是由位于鼻腔嗅觉上皮的化学感觉神经元介导的。在陆生物种中,吸入的气流中的疏水性气味化合物通过专门的球形蛋白质(气味结合蛋白,OBP)溶解在鼻粘液中。为了确保对每次吸入的气味有反应,必须迅速将气味从受体的微环境中去除。为了跟踪 OBP/气味复合物的命运,用荧光标记了重组 OBP,并用其负载气味化合物,并应用于老鼠的鼻子。很快,标记的 OBP 出现在上皮的支持细胞内。只有当 OBP 负载适当的气味化合物时,才会发生这种摄取。寻找可能介导这种摄取过程的候选转运蛋白,导致了低密脂蛋白受体 Lrp2/Megalin 的鉴定。在嗅觉上皮中,发现 Megalin 特异性地在上皮的支持细胞中表达,Megalin 蛋白位于它们的微绒毛中。使用表达 Megalin 的细胞系进行的体外研究表明,OBP/气味复合物迅速被内吞到溶酶体中。Megalin 抑制剂阻断了摄取,OBP 进入嗅觉上皮的支持细胞的内化也被阻断。这些结果表明,Megalin 介导的 OBP/气味复合物进入支持细胞的内吞可能是快速局部清除气味的重要机制。