MicroRNA-125b regulates vitamin D resistance by targeting CYP24A1 in the progression of gestational diabetes mellitus

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
K.L. Milan , Ravichandran Jayasuriya , Kannan Harithpriya , M. Anuradha , Kunka Mohanram Ramkumar
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Abstract

Vitamin D deficiency is prevalent in pregnancy and has been associated with increased occurrences of preeclampsia, cesarean delivery, neonatal bacterial vaginosis, and gestational diabetes. CYP24A1, recognized as a key factor in vitamin D metabolism homeostasis, encodes 24-hydroxylase responsible for converting 25(OH)D3 and 1,25(OH)2D3 into inactive metabolites. Recently, we have reported CYP24A1 overexpression in patients with gestational diabetes mellitus (GDM) and trophoblast cells exposed to hyperglycemia. In this study, we explored miRNA-mediated regulation of CYP24A1 in GDM progression, validating our findings through silencing experiments in a trophoblast cell line. In silico tools identified miR-125b-5p as a putative target of CYP24A1. Expression analysis revealed downregulation of miR-125b-5p in blood samples from early GDM and GDM compared to healthy pregnant women, positively correlating with vitamin D levels. Hyperglycemic exposure in human trophoblastic cell lines (BeWo) decreased miR-125b-5p expression, concomitant with an increase in CYP24A1. To confirm the regulatory role of miR-125b on CYP24A1, we transfected BeWo cells with antimiR-125b or miR-125b mimic. AntimiR-125b transfection heightened CYP24A1 levels, while miR-125b mimic overexpression resulted in decreased CYP24A1 expression. These findings establish miR-125b as a regulator of CYP24A1. To explore the influence of miR-125b on vitamin D metabolism, trophoblast cells overexpressing miR-125b were treated with 0.1 and 1 µM calcitriol. Hyperglycemic conditions exhibited a reduction in CYP24A1 levels. Collectively, our results indicate that miR-125b may regulate vitamin D metabolism by targeting CYP24A1, contributing to GDM progression. These findings may pave the way for understanding vitamin D resistance in concurrent GDM development and identifying novel miRNAs targeting CYP24A1.

微RNA-125b通过靶向CYP24A1在妊娠糖尿病进展过程中调节维生素D抗性。
维生素 D 缺乏在妊娠期很普遍,与子痫前期、剖宫产、新生儿细菌性阴道病和妊娠糖尿病的发病率增加有关。CYP24A1 被认为是维生素 D 代谢平衡的关键因素,它编码 24- 羟化酶,负责将 25(OH)D3 和 1,25(OH)2D3 转化为非活性代谢物。最近,我们报道了 CYP24A1 在妊娠糖尿病(GDM)患者和暴露于高血糖的滋养层细胞中的过度表达。在本研究中,我们探讨了 miRNA 介导的 CYP24A1 在 GDM 进展过程中的调控,并通过滋养层细胞系的沉默实验验证了我们的发现。硅学工具发现 miR-125b-5p 是 CYP24A1 的假定靶点。表达分析表明,与健康孕妇相比,早期 GDM 和 GDM 孕妇血液样本中 miR-125b-5p 的下调与维生素 D 水平呈正相关。人滋养细胞株(BeWo)中的高血糖暴露降低了 miR-125b-5p 的表达,同时 CYP24A1 增加。为了证实 miR-125b 对 CYP24A1 的调控作用,我们用抗 miR-125b 或 miR-125b 模拟物转染 BeWo 细胞。抗miR-125b转染提高了CYP24A1的水平,而miR-125b模拟物过表达则导致CYP24A1表达下降。这些发现确定了 miR-125b 是 CYP24A1 的调节因子。为了探索 miR-125b 对维生素 D 代谢的影响,用 0.1 和 1µM 降钙三醇处理过表达 miR-125b 的滋养层细胞。高血糖条件下,CYP24A1 水平下降。总之,我们的研究结果表明,miR-125b 可能通过靶向 CYP24A1 来调节维生素 D 的代谢,从而导致 GDM 的发生。这些发现可能为了解 GDM 并发过程中的维生素 D 抗性以及鉴定靶向 CYP24A1 的新型 miRNA 铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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