RIKEN Center for Biosystems Dynamics Research, 2-2-3 Minatojima-minamimachi, Chuo-ku, Kobe, Hyogo 650-0047, Japan.
RIKEN Center for Brain Science, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
Curr Biol. 2019 May 6;29(9):1512-1520.e6. doi: 10.1016/j.cub.2019.03.043. Epub 2019 Apr 18.
Nanometer-level patterned surface structures form the basis of biological functions, including superhydrophobicity, structural coloration, and light absorption [1-3]. In insects, the cuticle overlying the olfactory sensilla has multiple small (50- to 200-nm diameter) pores [4-8], which are supposed to function as a filter that admits odorant molecules, while preventing the entry of larger airborne particles and limiting water loss. However, the cellular processes underlying the patterning of extracellular matrices into functional nano-structures remain unknown. Here, we show that cuticular nanopores in Drosophila olfactory sensilla originate from a curved ultrathin film that is formed in the outermost envelope layer of the cuticle and secreted from specialized protrusions in the plasma membrane of the hair forming (trichogen) cell. The envelope curvature coincides with plasma membrane undulations associated with endocytic structures. The gore-tex/Osiris23 gene encodes an endosomal protein that is essential for envelope curvature, nanopore formation, and odor receptivity and is expressed specifically in developing olfactory trichogen cells. The 24-member Osiris gene family is expressed in cuticle-secreting cells and is found only in insect genomes. These results reveal an essential requirement for nanopores for odor reception and identify Osiris genes as a platform for investigating the evolution of surface nano-fabrication in insects.
纳米级图案表面结构是生物功能的基础,包括超疏水性、结构色和光吸收[1-3]。在昆虫中,覆盖在嗅觉感受器上的表皮有多个小(50-200nm 直径)孔[4-8],这些小孔被认为是一种过滤器,允许气味分子进入,同时防止较大的空气颗粒进入,并限制水分流失。然而,将细胞外基质图案化为功能性纳米结构的细胞过程尚不清楚。在这里,我们表明,果蝇嗅觉感受器的表皮纳米孔源于一个弯曲的超薄膜,该膜形成于表皮的最外层包膜层,并从毛发生成(trichogen)细胞的质膜中的专门突起分泌。包膜曲率与与内吞结构相关的质膜波动一致。Gore-tex/Osiris23 基因编码一种内体蛋白,对于包膜曲率、纳米孔形成和气味感受性是必需的,并且在发育中的嗅觉 trichogen 细胞中特异性表达。24 个成员的 Osiris 基因家族在分泌表皮的细胞中表达,仅存在于昆虫基因组中。这些结果表明纳米孔对于气味感知是必不可少的,并将 Osiris 基因确定为研究昆虫表面纳米制造进化的平台。