Inverse correlation of miR-196a and HOXB13 expression in Iraqi patients with prostate cancer.

Hiba Muneer Abd-Alhassan Al-Khafaji, Rehab M Khadum, Sara Mohammed Ouda, Maryam Qasim Mohammed
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Abstract

Prostate cancer (PCa), a significant health concern in aging men, is influenced by the HOXB13 gene, a key regulator of prostate development and cell differentiation. Dysregulation of HOXB13, including genetic variants and altered expression, is related to PCa risk and progression. Importantly, the expression of HOXB13 is modulated by microRNAs, particularly miR-196a. The miR-196a controls expression of genes via mRNA binding, causing degradation or inhibiting translation. It targets HOX genes, crucial for development, and exhibits variable activity in cancers, including PCa. Therefore, the interplay between PC, HOXB13, and miR-196a contributes to the understanding of the molecular basis of PCa and identifies potential therapeutic strategies. This study involved a case-control design, comprising 120 blood samples divided into 60 PCa patients and 60 controls. Molecular analyses were performed on these samples, involving total RNA extraction followed by purification via a commercial kit. Subsequently, complementary DNA was synthesized. A quantitative real-time polymerase chain reaction was used to measure the expression levels of the HOXB13 gene and miR-196a. Relative expression levels of both HOXB13 and miR-196a were determined using established quantification methodologies. Statistical analyses were conducted using SPSS and GraphPad Prism software. Our findings demonstrated a significant increase in HOXB13 gene expression (p≤0.01), specifically a fourfold elevation in PCa patients compared to healthy individuals. In contrast, miR-196a expression exhibited a significant decrease (p≤0.01), suggesting a potential inverse regulatory correlation with HOXB13. This study reveals a significant inverse correlation between HOXB13 and miR-196a expression in PCa patients. Specifically, the HOXB13 expression level was upregulated, while the miR-196a level was downregulated. These findings suggest that miR-196a may be used as a prospective tumor suppressor in PCa by negatively regulating HOXB13, thereby inhibiting cell proliferation and invasion. Consequently, miR-196a may emerge as a promising diagnostic molecular target for prostate cancer.

miR-196a与HOXB13在伊拉克前列腺癌患者中的表达呈负相关
前列腺癌(PCa)是老年男性的一个重要健康问题,受HOXB13基因的影响,HOXB13基因是前列腺发育和细胞分化的关键调节因子。HOXB13的失调,包括遗传变异和表达改变,与前列腺癌的风险和进展有关。重要的是,HOXB13的表达是由microrna调节的,尤其是miR-196a。miR-196a通过mRNA结合控制基因的表达,导致降解或抑制翻译。它靶向HOX基因,HOX基因对发育至关重要,并在包括PCa在内的癌症中表现出不同的活性。因此,PC、HOXB13和miR-196a之间的相互作用有助于了解PCa的分子基础,并确定潜在的治疗策略。本研究采用病例对照设计,包括120份血液样本,分为60例PCa患者和60例对照。对这些样品进行分子分析,包括总RNA提取,然后通过商业试剂盒纯化。随后,互补DNA被合成。采用实时定量聚合酶链反应检测HOXB13基因和miR-196a的表达水平。采用既定的定量方法测定HOXB13和miR-196a的相对表达水平。采用SPSS和GraphPad Prism软件进行统计分析。我们的研究结果显示HOXB13基因表达显著增加(p≤0.01),特别是与健康个体相比,PCa患者的HOXB13基因表达增加了四倍。相比之下,miR-196a的表达显著降低(p≤0.01),提示其与HOXB13可能存在负调控相关性。本研究揭示了HOXB13与miR-196a在PCa患者中的表达呈显著负相关。其中,HOXB13表达水平上调,miR-196a表达水平下调。这些发现提示miR-196a可能通过负调控HOXB13,从而抑制细胞增殖和侵袭,在PCa中作为一种潜在的抑癌因子。因此,miR-196a可能成为前列腺癌的一个有前景的诊断分子靶点。
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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