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鹌鹑钙化蛋壳基质的蛋白质组学分析:与鸡和火鸡蛋壳蛋白质组的比较。

Proteomic analysis of quail calcified eggshell matrix: a comparison to chicken and turkey eggshell proteomes.

作者信息

Mann Karlheinz, Mann Matthias

机构信息

Max-Planck-Institut für Biochemie, Abteilung Proteomics und Signaltransduktion, Am Klopferspitz 18, D-82152 Martinsried, Germany.

出版信息

Proteome Sci. 2015 Aug 27;13:22. doi: 10.1186/s12953-015-0078-1. eCollection 2015.

Abstract

BACKGROUND

Eggshell mineralization in commercially important species such as chicken, turkey or quail is of interest as a general model of calcium carbonate biomineralization. Knowledge of proteins and molecular mechanisms in eggshell assembly may also pave the way to manipulation of thickness of the calcified layer or other features. Comparison of eggshell matrix proteomes of different species may contribute to a better understanding of the mineralization process. The recent publication of the quail genome sequence now enables the proteomic analysis of the quail shell matrix and this comparison with those of chicken and turkey.

RESULTS

The quail eggshell proteome comprised 622 identified proteins, 311 of which were shared with chicken and turkey eggshell proteomes. Forty-eight major proteins (iBAQ-derived abundance higher than 0.1 % of total identified proteome) together covered 94 % of total proteome mass. Fifteen of these are also among the most abundant proteins in chicken and turkey eggshell matrix. Only three proteins with a percentage higher than 1.0 % of the total had not previously been identified as eggshell matrix proteins. These were an uncharacterized member of the latexin family, an uncharacterized protease inhibitor containing a Kunitz domain, and gastric intrinsic factor. The most abundant proteins were ovocleidin-116, ovalbumin and ovocalyxin-36 representing approximately 31, 13 and 8 % of the total identified proteome, respectively. The major phosphoproteins were ovocleidin-116 and osteopontin. While osteopontin phosphorylation sites were predominantly conserved between chicken and quail sequences, conservation was less in ovocleidin-116.

CONCLUSIONS

Ovocleidin-116 and ovocalyxin-36 are among the most abundant eggshell matrix proteins in all three species of the family Phasianidae analyzed so far, indicating that their presently unknown function is essential for eggshell mineralization. Evidence for other chicken eggshell-specific proteins in quail was inconclusive. Therefore measurement of additional eggshell proteomes, especially from species of different families and preferentially from outside the order Galliformes, will be necessary.

摘要

背景

鸡、火鸡或鹌鹑等具有商业重要性的物种的蛋壳矿化作为碳酸钙生物矿化的一般模型备受关注。了解蛋壳组装中的蛋白质和分子机制也可能为操纵钙化层的厚度或其他特征铺平道路。比较不同物种的蛋壳基质蛋白质组可能有助于更好地理解矿化过程。鹌鹑基因组序列的近期公布现在使得能够对鹌鹑蛋壳基质进行蛋白质组分析,并与鸡和火鸡的进行比较。

结果

鹌鹑蛋壳蛋白质组包含622种已鉴定蛋白质,其中311种与鸡和火鸡蛋壳蛋白质组共有。48种主要蛋白质(基于iBAQ得出的丰度高于已鉴定蛋白质组总量的0.1%)共同覆盖了蛋白质组总质量的94%。其中15种也是鸡和火鸡蛋壳基质中最丰富的蛋白质。只有三种蛋白质占总量的百分比高于1.0%,此前未被鉴定为蛋壳基质蛋白质。它们分别是乳光蛋白家族的一个未表征成员、一种含有库尼茨结构域的未表征蛋白酶抑制剂以及胃内因子。最丰富的蛋白质是卵壳蛋白-116、卵清蛋白和卵壳粘连蛋白-36,分别约占已鉴定蛋白质组总量的31%、13%和8%。主要的磷蛋白是卵壳蛋白-116和骨桥蛋白。虽然鸡和鹌鹑序列之间骨桥蛋白的磷酸化位点主要保守,但卵壳蛋白-116的保守性较低。

结论

卵壳蛋白-116和卵壳粘连蛋白-36是迄今为止分析的雉科所有三个物种中最丰富的蛋壳基质蛋白质之一,表明它们目前未知的功能对于蛋壳矿化至关重要。鹌鹑中其他鸡特异性蛋壳蛋白的证据尚无定论。因此,有必要测量更多的蛋壳蛋白质组,特别是来自不同科的物种,最好是鸡形目以外的物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0235/4550075/41f63f515d45/12953_2015_78_Fig1_HTML.jpg

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