Kiefer Susan McLeskey, Saling Patricia
Department of Obstetrics and Gynecology, Department of Cell Biology, Duke University Medical Center, Durham, North Carolina 27710, USA.
Biol Reprod. 2002 Feb;66(2):407-14. doi: 10.1095/biolreprod66.2.407.
Formation of the egg's extracellular matrix, the zona pellucida, is critical for fertilization and development of growing embryos. Zona pellucida glycoproteins, ZP1, ZP2, and ZP3, are secreted to form an insoluble extracellular matrix surrounding mammalian eggs. All cloned mammalian zona pellucida sequences contain a furin consensus cleavage site, RX(K)/(R)R, upstream of a putative transmembrane domain, which suggests processing by an endoprotease of the furin-proprotein-convertase family. Recombinant expression of human (h) ZP1, ZP2, and ZP3 produces glycoproteins that are secreted and have migration patterns in SDS-PAGE identical to those of native human zona pellucida proteins. Because a C-terminal epitope tag that is present in the cell-associated zona proteins is, however, absent from the secreted zona proteins, secreted recombinant zona pellucida proteins lack their C-terminal regions. Three different strategies were used to explore processing events in the C-terminal region: site-directed mutagenesis of the furin cleavage site, treatment with a competitive inhibitor of all furin family members, and interference with Golgi modifications by Brefeldin A. All treatments altered the SDS-PAGE migration of recombinant hZP3, concordant with cleavage by a furin family member and Golgi glycosylation of secreted hZP3. Furthermore, cleavage of cell-associated hZP3 by exogenous furin converts the migration of cell-associated hZP3 to that of secreted hZP3. To determine whether a similar cleavage pattern exists in zona pellucida proteins that are assembled in the zona matrix, "hZP3 rescue" mouse zonae pellucidae were employed. Immunoblotting experiments revealed that hZP3, assembled and functional in the "hZP3 rescue" mouse zona pellucida, lacks the furin cleavage site, supporting the hypothesis that formation of the zona pellucida matrix involves regulated proteolysis by a member of the furin convertase family.
卵子细胞外基质透明带的形成对于生长中胚胎的受精和发育至关重要。透明带糖蛋白ZP1、ZP2和ZP3分泌后形成围绕哺乳动物卵子的不溶性细胞外基质。所有克隆的哺乳动物透明带序列在假定的跨膜结构域上游都含有一个弗林蛋白酶识别序列切割位点RX(K)/(R)R,这表明其由弗林蛋白酶原蛋白转化酶家族的一种内切蛋白酶进行加工。人ZP1、ZP2和ZP3的重组表达产生的糖蛋白可分泌,并且在SDS-PAGE中的迁移模式与天然人透明带蛋白相同。然而,由于细胞相关的透明带蛋白中存在的C末端表位标签在分泌的透明带蛋白中不存在,因此分泌的重组透明带蛋白缺少其C末端区域。使用了三种不同策略来探索C末端区域的加工事件:弗林蛋白酶切割位点的定点诱变、用所有弗林蛋白酶家族成员的竞争性抑制剂处理以及用布雷菲德菌素A干扰高尔基体修饰。所有处理均改变了重组hZP3在SDS-PAGE中的迁移,这与弗林蛋白酶家族成员的切割以及分泌的hZP3的高尔基体糖基化一致。此外,外源性弗林蛋白酶对细胞相关hZP3的切割将细胞相关hZP3的迁移转变为分泌的hZP3的迁移。为了确定在透明带基质中组装的透明带蛋白中是否存在类似的切割模式,采用了“hZP3拯救”小鼠透明带。免疫印迹实验表明,在“hZP3拯救”小鼠透明带中组装并发挥功能的hZP3缺少弗林蛋白酶切割位点,这支持了透明带基质的形成涉及弗林蛋白酶转化酶家族成员的调节性蛋白水解这一假说。