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ZP结构域的PLAC1同源区域足以实现蛋白质聚合。

The PLAC1-homology region of the ZP domain is sufficient for protein polymerisation.

作者信息

Jovine Luca, Janssen William G, Litscher Eveline S, Wassarman Paul M

机构信息

Brookdale Department of Molecular, Cell and Developmental Biology, Mount Sinai School of Medicine, One Gustave L, Levy Place, New York, NY 10029-6574, USA.

出版信息

BMC Biochem. 2006 Apr 6;7:11. doi: 10.1186/1471-2091-7-11.

Abstract

BACKGROUND

Hundreds of extracellular proteins polymerise into filaments and matrices by using zona pellucida (ZP) domains. ZP domain proteins perform highly diverse functions, ranging from structural to receptorial, and mutations in their genes are responsible for a number of severe human diseases. Recently, PLAC1, Oosp1-3, Papillote and CG16798 proteins were identified that share sequence homology with the N-terminal half of the ZP domain (ZP-N), but not with its C-terminal half (ZP-C). The functional significance of this partial conservation is unknown.

RESULTS

By exploiting a highly engineered bacterial strain, we expressed in soluble form the PLAC1-homology region of mammalian sperm receptor ZP3 as a fusion to maltose binding protein. Mass spectrometry showed that the 4 conserved Cys residues within the ZP-N moiety of the fusion protein adopt the same disulfide bond connectivity as in full-length native ZP3, indicating that it is correctly folded, and electron microscopy and biochemical analyses revealed that it assembles into filaments.

CONCLUSION

These findings provide a function for PLAC1-like proteins and, by showing that ZP-N is a biologically active folding unit, prompt a re-evaluation of the architecture of the ZP domain and its polymers. Furthermore, they suggest that ZP-C might play a regulatory role in the assembly of ZP domain protein complexes.

摘要

背景

数百种细胞外蛋白质通过使用透明带(ZP)结构域聚合成细丝和基质。ZP结构域蛋白具有高度多样的功能,从结构功能到受体功能不等,其基因突变会导致多种严重的人类疾病。最近,人们鉴定出了PLAC1、Oosp1 - 3、Papillote和CG16798蛋白,它们与ZP结构域的N端(ZP - N)具有序列同源性,但与C端(ZP - C)没有同源性。这种部分保守的功能意义尚不清楚。

结果

通过利用一种经过高度改造的细菌菌株,我们以可溶性形式表达了哺乳动物精子受体ZP3的PLAC1同源区域,并将其与麦芽糖结合蛋白融合。质谱分析表明,融合蛋白ZP - N部分内的4个保守半胱氨酸残基形成的二硫键连接方式与全长天然ZP3相同,这表明它折叠正确,电子显微镜和生化分析显示它能组装成细丝。

结论

这些发现为PLAC1样蛋白赋予了功能,并且通过表明ZP - N是一个具有生物活性的折叠单元,促使人们重新评估ZP结构域及其聚合物的结构。此外,它们还表明ZP - C可能在ZP结构域蛋白复合物的组装中发挥调节作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/294d/1479692/9d03e3a7a742/1471-2091-7-11-1.jpg

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