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海胆卵过氧化物酶:血红素依赖性过氧化物酶超家族的卵母细胞特异性成员,在多精受精阻断中发挥作用。

Sea urchin ovoperoxidase: oocyte-specific member of a heme-dependent peroxidase superfamily that functions in the block to polyspermy.

作者信息

LaFleur G J, Horiuchi Y, Wessel G M

机构信息

Department of Molecular Biology, Cell Biology and Biochemistry, Brown University, Providence, RI 02912, USA.

出版信息

Mech Dev. 1998 Jan;70(1-2):77-89. doi: 10.1016/s0925-4773(97)00178-0.

Abstract

Ovoperoxidase is one of several oocyte-specific proteins that are stored within sea urchin cortical granules, released during the cortical reaction, and incorporated into the newly formed fertilization envelope. Ovoperoxidase plays a particularly important role in this process, crosslinking the envelope into a hardened matrix that is insensitive to biochemical and mechanical challenges and thus providing a permanent block to polyspermy. Here we present the primary structures of two ovoperoxidases as predicted from cDNAs cloned from the sea urchins Strongylocentrotus purpuratus (AF035380) and Lytechinus variegatus (AF035381). We also present a proposed scheme for the post-translational processing of ovoperoxidase based upon comparisons between the cDNA and protein structures and taking into account previously published reports. The sea urchin ovoperoxidase sequences conform to a profile shared by members of a heme-dependent animal peroxidase family, including the mammalian myelo-, lacto-, eosinophil, and thyroid peroxidases. Using in situ RNA hybridizations, we showed that the mRNA of S. purpuratus ovoperoxidase (4 kb) is present exclusively in oocytes, and is turned over rapidly following germinal vesicle breakdown. Taking into account our immunoblot and N-terminal sequencing data along with reports from similar peroxidases, we propose that ovoperoxidases are synthesized in a pre-pro form and proteolytically processed to result in the 70 and 50 kDa forms that are found in the fertilization envelope. The sequence and structural data presented here will facilitate our continuing studies of the biogenesis of cortical granules and the fertilization envelope. Additionally, since ovoperoxidase activities have been reported in a wide range of animals, these cDNAs will be useful in uncovering similar peroxidases used in the fertilization reactions of other metazoan eggs.

摘要

卵过氧化物酶是几种卵母细胞特异性蛋白之一,这些蛋白储存在海胆皮质颗粒中,在皮质反应期间释放,并整合到新形成的受精膜中。卵过氧化物酶在这个过程中起着特别重要的作用,它将受精膜交联成一个对生化和机械挑战不敏感的硬化基质,从而为多精受精提供永久性的阻断。在这里,我们展示了从紫海胆(AF035380)和杂色海胆(AF035381)克隆的cDNA预测的两种卵过氧化物酶的一级结构。我们还基于cDNA和蛋白质结构之间的比较,并考虑到先前发表的报告,提出了一种卵过氧化物酶翻译后加工的方案。海胆卵过氧化物酶序列符合血红素依赖性动物过氧化物酶家族成员共有的特征,包括哺乳动物的髓过氧化物酶、乳过氧化物酶、嗜酸性粒细胞过氧化物酶和甲状腺过氧化物酶。通过原位RNA杂交,我们表明紫海胆卵过氧化物酶(4 kb)的mRNA仅存在于卵母细胞中,并且在生发泡破裂后迅速周转。考虑到我们的免疫印迹和N端测序数据以及类似过氧化物酶的报告,我们提出卵过氧化物酶以前体形式合成,并经过蛋白水解加工,产生在受精膜中发现的70 kDa和50 kDa形式。这里展示的序列和结构数据将有助于我们继续研究皮质颗粒和受精膜的生物发生。此外,由于在广泛的动物中都报道了卵过氧化物酶活性,这些cDNA将有助于揭示其他后生动物卵受精反应中使用的类似过氧化物酶。

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