Department of Cell Biology and Biophysics, Faculty of Biology, University of Athens, Panepistimiopolis, Athens, Greece.
PLoS One. 2013 Sep 12;8(9):e73258. doi: 10.1371/journal.pone.0073258. eCollection 2013.
Zona pellucida (ZP) is an extracellular matrix surrounding and protecting mammalian and fish oocytes, which is responsible for sperm binding. Mammalian ZP consists of three to four glycoproteins, called ZP1, ZP2, ZP3, ZP4. These proteins polymerize into long interconnected filaments, through a common structural unit, known as the ZP domain, which consists of two domains, ZP-N and ZP-C. ZP is related in function to silkmoth chorion and in an evolutionary fashion to the teleostean fish chorion, also fibrous structures protecting the oocyte and embryo, that both have been proven to be functional amyloids. Two peptides were predicted as 'aggregation-prone' by our prediction tool, AMYLPRED, from the sequence of the human ZP1-N domain. Here, we present results from transmission electron microscopy, X-ray diffraction, Congo red staining and attenuated total reflectance Fourier-transform infrared spectroscopy (ATR FT-IR), of two synthetic peptide-analogues of these predicted 'aggregation-prone' parts of the human ZP1-N domain, that we consider crucial for ZP protein polymerization, showing that they both self-assemble into amyloid-like fibrils. Based on our experimental data, we propose that human ZP (hZP) might be considered as a novel, putative, natural protective amyloid, in close analogy to silkmoth and teleostean fish chorions. Experiments are in progress to verify this proposal. We also attempt to provide insights into ZP formation, proposing a possible model for hZP1-N domain polymerization.
透明带(ZP)是哺乳动物和鱼类卵母细胞周围的细胞外基质,负责与精子结合。哺乳动物的 ZP 由三种或四种糖蛋白组成,分别称为 ZP1、ZP2、ZP3、ZP4。这些蛋白质通过一个共同的结构单元,即 ZP 结构域,聚合成长而相互连接的纤维,该结构域由两个结构域 ZP-N 和 ZP-C 组成。ZP 在功能上与蚕卵壳质有关,在进化上与硬骨鱼卵壳质有关,后者也是保护卵母细胞和胚胎的纤维结构,两者都被证明是具有功能的淀粉样蛋白。我们的预测工具 AMYLPRED 从人 ZP1-N 结构域的序列中预测出两个肽段具有“易于聚集”的特性。在这里,我们通过透射电子显微镜、X 射线衍射、刚果红染色和衰减全反射傅里叶变换红外光谱(ATR FT-IR),展示了这两个预测的“易于聚集”的人 ZP1-N 结构域肽段的两种合成肽类似物的结果,我们认为这些肽段对于 ZP 蛋白聚合至关重要,表明它们都能自组装成类似淀粉样的纤维。基于我们的实验数据,我们提出人 ZP(hZP)可能被认为是一种新的、假定的天然保护性淀粉样蛋白,与蚕卵壳质和硬骨鱼卵壳质非常相似。正在进行实验以验证这一假设。我们还试图深入了解 ZP 的形成,提出了一种可能的 hZP1-N 结构域聚合模型。