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比较人类和食蟹猕猴的宫颈粘液蛋白质组。

Comparing endocervical mucus proteome of humans and rhesus macaques.

机构信息

Oregon Health & Science University, Department of Obstetrics and Gynecology, Portland, Oregon, USA.

Oregon National Primate Research Center, Division of Reproductive and Developmental Sciences, Portland, Oregon, USA.

出版信息

Proteomics Clin Appl. 2021 Jul;15(4):e2100023. doi: 10.1002/prca.202100023. Epub 2021 May 26.

Abstract

PURPOSE

Endocervical mucus changes play a key role in regulating fertility throughout the menstrual cycle and in response to hormonal contraceptives. Non-human primates (NHP) provide the most translational animal model for reproductive tract studies, as they have hormonally-regulated menstrual cycles and mucus changes, similar to women.

EXPERIMENTAL DESIGN

We used TMT labelling and LC-LC/MS to compare the proteins found in the mucus of the rhesus macaque to the mucus of the human endocervix. Data are available via ProteomeXchange with identifier PXD021710.

RESULTS

We found 3048 total proteins present in both rhesus mucus and human mucus, and of these, 57% showed a similar expression pattern. An even higher similarity occurred in the top 500 most prevalent proteins, with overlap in 341 (68%) proteins. Mucin MUC5B was the most highly expressed mucin protein (top 10 expressed proteins in both) but other key proteins related to mucus structure were present in both samples.

CONCLUSIONS AND CLINICAL RELEVANCE

We find that the mucus proteome of the endocervical mucus is highly conserved in NHP and women. This supports use of the NHP model system for studies of the endocervix and trials of novel fertility treatments targeting the cervix.

摘要

目的

宫颈黏液的变化在调节整个月经周期的生育能力以及对激素避孕药的反应方面起着关键作用。非人类灵长类动物(NHP)是生殖道研究最具转化性的动物模型,因为它们的月经周期和黏液变化受到激素调节,与女性相似。

实验设计

我们使用 TMT 标记和 LC-LC/MS 比较恒河猴黏液和人宫颈黏液中的蛋白质。数据可通过 ProteomeXchange 以标识符 PXD021710 获得。

结果

我们在恒河猴黏液和人黏液中发现了 3048 种总蛋白,其中 57%表现出相似的表达模式。在最常见的前 500 种蛋白质中,相似性更高,有 341 种(68%)蛋白质重叠。黏蛋白 MUC5B 是表达最丰富的黏蛋白(在两种黏液中均为前 10 种表达蛋白),但其他与黏液结构相关的关键蛋白也存在于两种样本中。

结论和临床相关性

我们发现,NHP 和女性的宫颈黏液的黏液蛋白质组高度保守。这支持使用 NHP 模型系统来研究宫颈和试验新型针对宫颈的生育治疗方法。

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