HoxA10 and HoxA11 Regulate the Expression of Contraction-Associated Proteins and Contribute to Regionalized Myometrium Phenotypes in Women

In: Reproductive Sciences · 2017 · vol. 25(1) , pp. 44–50 · doi:10.1177/1933719117699706 · PMID:28372536 · W2604241285
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HoxA10 and HoxA11 are highly expressed in the relaxed fundus and suppress contraction-associated protein genes, contributing to regional myometrium phenotypes in women.

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The paper studied how HOXA genes regulate regional differences in human myometrium contractility by comparing fundus (FUN) and lower uterine segment (LUS) tissues and primary myocytes, focusing on the transcriptional roles of HoxA10 and HoxA11 relative to previously reported HoxA13. HoxA10 and HoxA11 were expressed at higher levels in FUN than in LUS, and when overexpressed in a human myometrial cell line they suppressed mRNA and protein levels of multiple contraction-associated proteins, including IL-1β, IL-6, connexin 43 (Cx43), and Cox2. Primary myocytes from FUN likewise showed lower expression of these CAP genes compared with LUS, consistent with the regional HoxA10/HoxA11 expression pattern. The work is limited by reliance on exogenous HoxA10/HoxA11 introduction in a myometrial cell line rather than directly testing endogenous regulation mechanisms in primary cells. This paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.

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Abstract

A relaxed fundus (FUN) and a contracted lower uterine segment (LUS) of human myometrium are required for maintaining pregnancy. How this regional myometrium function is regulated remains unclear. We have previously reported that the homeobox protein A13 (HoxA13) is highly expressed in the LUS and can enhance the expression of contraction-associated proteins (CAPs). Here, we show that in contrast to HoxA13, HoxA10 and HoxA11 genes are expressed at significantly higher levels in myometrium tissues and primary myocytes from the FUN. When introduced exogenously into a human myometrial cell line, HoxA10 and HoxA11 suppress the messenger RNA (mRNA) levels of several CAP genes including interleukin-1 beta (IL-1β), IL-6, connexin 43 (Cx43), and cyclooxygenase 2 (Cox2). Consistently, enhanced HoxA10 and HoxA11 expressions strongly inhibited IL-1β and Cx43 protein levels. We further confirmed that higher expression of HoxA10 and HoxA11 genes in primary myocytes from the FUN compared to that from the LUS was associated with lower expression of IL-1β, IL-6, Cox2, and Cx43 genes. We conclude that the expression patterns of HoxA10, HoxA11, and HoxA13 and their actions in regulating CAP genes in FUN and LUS create regionalized myometrium phenotypes in women that may be important to control regionalized myometrium contractility for maintaining pregnancy.
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Abstract

A relaxed fundus (FUN) and a contracted lower uterine segment (LUS) of human myometrium are required for maintaining pregnancy. How this regional myometrium function is regulated remains unclear. We have previously reported that the homeobox protein A13 (HoxA13) is highly expressed in the LUS and can enhance the expression of contraction-associated proteins (CAPs). Here, we show that in contrast to HoxA13, HoxA10 and HoxA11 genes are expressed at significantly higher levels in myometrium tissues and primary myocytes from the FUN. When introduced exogenously into a human myometrial cell line, HoxA10 and HoxA11 suppress the messenger RNA (mRNA) levels of several CAP genes including interleukin-1 beta (IL-1β), IL-6, connexin 43 (Cx43), and cyclooxygenase 2 (Cox2). Consistently, enhanced HoxA10 and HoxA11 expressions strongly inhibited IL-1β and Cx43 protein levels. We further confirmed that higher expression of HoxA10 and HoxA11 genes in primary myocytes from the FUN compared to that from the LUS was associated with lower expression of IL-1β, IL-6, Cox2, and Cx43 genes. We conclude that the expression patterns of HoxA10, HoxA11, and HoxA13 and their actions in regulating CAP genes in FUN and LUS create regionalized myometrium phenotypes in women that may be important to control regionalized myometrium contractility for maintaining pregnancy. Similar content being viewed by others

References

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Sci. 25, 44–50 (2018). https://doi.org/10.1177/1933719117699706 Published: Version of record: Issue date: DOI: https://doi.org/10.1177/1933719117699706

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