RHOA/ROCK 通路在整个孕期调节子宫肌层阶段中的作用

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引用次数: 0

摘要

背景控制子宫收缩活动对调节妊娠持续时间至关重要。在妊娠的大部分时间里,子宫不收缩(即子宫肌静止)。子宫肌层在 36 周左右通过几种机制恢复其收缩表型(即子宫肌层激活)。RHOA/ROCK 通路在通过钙敏化促进人体肌肉收缩方面发挥着重要作用。我们的目的是研究 RHOA/ROCK 通路在整个孕期不同子宫肌层阶段的调控作用。具体而言,我们假设抑制 RHOA/ROCK 通路的成分在维持子宫静止中发挥重要作用。研究设计从接受剖宫产的孕妇身上获取子宫样本。研究对象包括未分娩的早产儿(子宫肌层静止)、分娩的早产儿(非生理性子宫肌层刺激)、未分娩的足月儿(激活)和分娩的足月儿(生理性子宫肌层刺激)。评估了 RHOA、ROCK I、ROCK II、RND1-3 的 mRNA 和蛋白表达,以及通过 pMYTP1 表达的 ROCK 活性。在静止期,RHOA/ROCK 通路成分没有发生变化。此外,分娩时子宫肌层中的 RHOA 蛋白和 ROCK 活性增加,支持了这一途径参与维持子宫肌层收缩活性的假设。这项研究有助于深入了解 RHOA/ROCK 通路在妊娠期控制子宫肌收缩活动中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of the RHOA/ROCK pathway in the regulation of myometrial stages throughout pregnancy

Background

Controlling uterine contractile activity is essential to regulate the duration of pregnancy. During most of the pregnancy, the uterus does not contract (i.e., myometrial quiescence). The myometrium recovers its contractile phenotype at around 36 weeks (i.e., myometrial activation) through several mechanisms. The RHOA/ROCK pathway plays a vital role in facilitating muscular contractions by calcium sensitization in humans. Yet, the role of this pathway during different myometrial stages, including quiescence, has not been elucidated.

Objective

we aimed to study the role of the RHOA/ROCK pathway in the regulation of the different myometrial stages throughout pregnancy. Specifically, we hypothesized that the inhibition of the components of the RHOA/ROCK pathway play an important role in maintaining uterine quiescence.

Study design

Myometrial samples were obtained from pregnant individuals who underwent cesarean section. Pregnant individuals who delivered preterm without labor (myometrial quiescence), preterm with labor (nonphysiological myometrial stimulation), term not in labor (activation), and term in labor (physiological myometrial stimulation) were included. The mRNA and protein expression of RHOA, ROCK I, ROCK II, RND1-3, and ROCK activity through pMYTP1 were evaluated.

Results

We found that the human myometrium constitutively expressed RHOA/ROCK pathway components throughout pregnancy. No changes in the components of the RHOA/ROCK pathway were found during quiescence. Moreover, the RHOA protein and ROCK activity increased in the myometrium during labor, supporting the hypothesis that this pathway participates in maintaining the contractile activity of the myometrium. This study provides insight into the role of the RHOA/ROCK pathway in controlling myometrial contractile activity during pregnancy.
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来源期刊
AJOG global reports
AJOG global reports Endocrinology, Diabetes and Metabolism, Obstetrics, Gynecology and Women's Health, Perinatology, Pediatrics and Child Health, Urology
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