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小鼠和人类ZP3中表达的保守结构域的差异性O-糖基化

Differential O-glycosylation of a conserved domain expressed in murine and human ZP3.

作者信息

Chalabi Sara, Panico Maria, Sutton-Smith Mark, Haslam Stuart M, Patankar Manish S, Lattanzio Frank A, Morris Howard R, Clark Gary F, Dell Anne

机构信息

Division of Molecular Biosciences, Imperial College London, London SW7 2AZ, UK.

出版信息

Biochemistry. 2006 Jan 17;45(2):637-47. doi: 10.1021/bi0512804.

Abstract

Murine sperm initiate fertilization by binding to the zona pellucida (mZP), the specialized extracellular matrix of their homologous eggs. O-Glycans occupying two highly conserved vicinal glycosylation sites (Ser-332 and Ser-334) on the mZP glycoprotein designated mZP3 were previously implicated in this interaction. However, recent biophysical analyses confirm that neither site is occupied, implying that an alternate O-glycosylation domain may be operational in native mZP3. Since human ZP3 (huZP3) can substitute for mZP3 in rescue mice to mediate sperm binding, the site specificity of O-glycosylation in both native mZP3 and huZP3 was analyzed using ultrasensitive mass spectrometric techniques. Two O-glycosylation sites in native mZP3, one at Thr-155 and the other within the glycopeptide at positions 161-168 (ATVSSEEK), are conserved in huZP3 derived from transgenic mice. Thus, there is a specific O-glycosylation domain within native mZP3 expressing two closely spaced O-glycans that is very well conserved in an evolutionarily related glycoprotein. In native mZP3, core 2 O-glycans predominate at both sites. However, in huZP3 derived from rescue mice, the O-glycans associated with Thr-156 (analogous to Thr-155 in mZP3) are exclusively core 1 and related Tn sequences, whereas core 2 O-glycans predominate at the other conserved site. This unique restriction of O-glycan expression suggests that sequence differences in the conserved O-glycosylation domains of mZP3 and huZP3 affect the ability of core 2 N-acetylglucosaminyltransferase(s) to extend the core 1 sequence. However, this difference in O-glycosylation at Thr-156 does not affect the fertility or the sperm binding phenotype of eggs derived from female huZP3 rescue mice.

摘要

小鼠精子通过与透明带(mZP)结合来启动受精过程,透明带是其同源卵子的特殊细胞外基质。占据mZP糖蛋白mZP3上两个高度保守的相邻糖基化位点(Ser-332和Ser-334)的O-聚糖先前被认为参与了这种相互作用。然而,最近的生物物理分析证实这两个位点都未被占据,这意味着一个替代的O-糖基化结构域可能在天然mZP3中起作用。由于人ZP3(huZP3)可以在拯救小鼠中替代mZP3来介导精子结合,因此使用超灵敏质谱技术分析了天然mZP3和huZP3中O-糖基化的位点特异性。天然mZP3中的两个O-糖基化位点,一个在Thr-155处,另一个在糖肽的161-168位(ATVSSEEK)内,在源自转基因小鼠的huZP3中是保守的。因此,在天然mZP3中存在一个表达两个紧密间隔的O-聚糖的特定O-糖基化结构域,该结构域在进化相关的糖蛋白中非常保守。在天然mZP3中,核心2 O-聚糖在两个位点都占主导地位。然而,在源自拯救小鼠的huZP3中,与Thr-156(类似于mZP3中的Thr-155)相关的O-聚糖完全是核心1和相关的Tn序列,而核心2 O-聚糖在另一个保守位点占主导地位。这种O-聚糖表达的独特限制表明,mZP3和huZP3保守O-糖基化结构域中的序列差异会影响核心2 N-乙酰葡糖胺转移酶扩展核心1序列的能力。然而,Thr-156处O-糖基化的这种差异并不影响源自雌性huZP3拯救小鼠的卵子的生育能力或精子结合表型。

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