Intra Jari, Cenni Federica, Perotti Maria-Elisa
Department of Biomolecular Sciences and Biotechnologies, University of Milano, Milano, Italy.
Mol Reprod Dev. 2006 Sep;73(9):1149-58. doi: 10.1002/mrd.20425.
Drosophila is emerging as a model organism to investigate egg fertilization in insects and the possible conservation of molecular mechanisms of gamete interactions demonstrated in higher organisms. This study shows that the spermatozoa of several species of Drosophila belonging to the melanogaster group have a plasma membrane associated alpha-L-fucosidase with features in common with alpha-L-fucosidases from sperm of other animals, including mammals. The enzyme has been purified and completely characterized in D. ananassae, because of its stability in this species. The sperm alpha-L-fucosidase is an integral protein terminally mannosylated, with the catalytic site oriented toward the extracellular space. It has a M(r) of 256 kDa and a multimeric structure made up by subunits of 48 and 55 kDa. Enzyme characterization included kinetic properties, pI, optimal pH, and thermal stability. A soluble form of the enzyme similar to the sperm associated alpha-L-fucosidase is secreted by the seminal vesicles. Synthetic peptides designed from the deduced product of the D. melanogaster gene encoding an alpha-L-fucosidase were used to raise a specific polyclonal antibody. Immunofluorescence labeling of spermatozoa showed that the enzyme is present in the sperm plasma membrane overlying the acrosome and the tail. Lectin cytochemistry analysis of the egg surface indicated that alpha-L-fucose terminal residues are present on the chorion with a strongly polarized localization on the micropyle. The alpha-L-fucosidase of Drosophila sperm plasma membrane appears to be potentially involved in gamete recognition by interacting with its glycoside ligands present on the egg surface at the site of sperm entry.
果蝇正在成为一种模式生物,用于研究昆虫的卵子受精以及高等生物中配子相互作用分子机制的可能保守性。这项研究表明,属于黑腹果蝇组的几种果蝇的精子具有一种与质膜相关的α-L-岩藻糖苷酶,其特征与包括哺乳动物在内的其他动物精子中的α-L-岩藻糖苷酶相同。由于该酶在果蝇种中的稳定性,已在菠萝果蝇中对其进行了纯化和全面表征。精子α-L-岩藻糖苷酶是一种末端甘露糖基化的整合蛋白,催化位点朝向细胞外空间。它的分子量为256 kDa,由48 kDa和55 kDa的亚基组成多聚体结构。酶的表征包括动力学性质、等电点、最适pH值和热稳定性。精囊分泌一种与精子相关的α-L-岩藻糖苷酶相似的可溶性酶形式。从编码α-L-岩藻糖苷酶的黑腹果蝇基因的推导产物设计的合成肽被用于制备特异性多克隆抗体。精子的免疫荧光标记显示该酶存在于覆盖顶体和尾部的精子质膜中。卵子表面的凝集素细胞化学分析表明,α-L-岩藻糖末端残基存在于卵壳上,在卵孔处有强烈的极化定位。果蝇精子质膜的α-L-岩藻糖苷酶似乎可能通过与其在精子进入部位的卵子表面存在的糖苷配体相互作用而参与配子识别。