Wingen Almut, Carrera Pilar, Ekaterini Psathaki Olympia, Voelzmann André, Paululat Achim, Hoch Michael
Developmental Genetic&Molecular Physiology Unit, Life&Medical Sciences Institute (LIMES), University of Bonn, Carl-Troll-Strasse 31, D-53115 Bonn, Germany.
Developmental Genetic&Molecular Physiology Unit, Life&Medical Sciences Institute (LIMES), University of Bonn, Carl-Troll-Strasse 31, D-53115 Bonn, Germany.
Dev Biol. 2017 Oct 1;430(1):52-68. doi: 10.1016/j.ydbio.2017.08.018. Epub 2017 Aug 15.
Scavenger receptors class B (SR-B) are multifunctional transmembrane proteins, which in vertebrates participate in lipid transport, pathogen clearance, lysosomal delivery and intracellular sorting. Drosophila has 14 SR-B members whose functions are still largely unknown. Here, we reveal a novel role for the SR-B family member Debris buster (Dsb) in Drosophila airway physiology. Larvae lacking dsb show yeast avoidance behavior, hypoxia, and severe growth defects associated with impaired elongation and integrity along the airways. Furthermore, in dsb mutant embryos, the barrier function of the posterior spiracles, which are critical for gas exchange, is not properly established and liquid clearance is locally impaired at the spiracular lumen. We found that Dsb is specifically expressed in a group of distal epithelial cells of the posterior spiracle organ and not throughout the entire airways. Furthermore, tissue-specific knockdown and rescue experiments demonstrate that Dsb function in the airways is only required in the posterior spiracles. Dsb localizes in intracellular vesicles, and a subset of these associate with lysosomes. However, we found that depletion of proteins involved in vesicular transport to the apical membrane, but not in lysosomal function, causes dsb-like airway elongation defects. We propose a model in which Dsb sorts components of the apical extracellular matrix which are essential for airway physiology. Since SR-B LIMP2-deficient mice show reduced expression of several apical plasma membrane proteins, sorting of proteins to the apical membrane is likely an evolutionary conserved function of Dsb and LIMP2. Our data provide insights into a spatially confined function of the SR-B Dsb in intracellular trafficking critical for the physiology of the whole tubular airway network.
B类清道夫受体(SR-B)是多功能跨膜蛋白,在脊椎动物中参与脂质运输、病原体清除、溶酶体递送和细胞内分选。果蝇有14个SR-B成员,其功能在很大程度上仍不清楚。在这里,我们揭示了SR-B家族成员碎片清除蛋白(Dsb)在果蝇气道生理学中的新作用。缺乏dsb的幼虫表现出对酵母的回避行为、缺氧以及与气道伸长和完整性受损相关的严重生长缺陷。此外,在dsb突变胚胎中,对气体交换至关重要的后气门的屏障功能未得到正确建立,并且气门腔内的液体清除在局部受到损害。我们发现Dsb在后气门器官的一组远端上皮细胞中特异性表达,而不是在整个气道中。此外,组织特异性敲低和拯救实验表明,气道中Dsb的功能仅在后气门中是必需的。Dsb定位于细胞内囊泡,其中一部分与溶酶体相关。然而,我们发现参与向顶端膜的囊泡运输但不参与溶酶体功能的蛋白质的缺失会导致类似dsb的气道伸长缺陷。我们提出了一个模型,其中Dsb对气道生理学所必需的顶端细胞外基质成分进行分选。由于SR-B LIMP2缺陷小鼠显示几种顶端质膜蛋白的表达降低,将蛋白质分选到顶端膜可能是Dsb和LIMP2在进化上保守的功能。我们的数据为SR-B Dsb在对整个管状气道网络生理学至关重要的细胞内运输中的空间受限功能提供了见解。