Loss of PRICKLE1 leads to subfertility, aberrant extracellular matrix, and abnormal myometrial architecture in mice.

IF 3.7 3区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Reproduction Pub Date : 2024-12-01 DOI:10.1530/REP-24-0344
Emily R Roberts, Sornakala Ganeshkumar, Sumedha Gunewardena, Vargheese Chennathukuzhi
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引用次数: 0

Abstract

Uterine leiomyomas (UL) are the most prevalent benign tumors of the female reproductive tract, originating from the myometrium and affecting over 75% of reproductive-age women. Symptoms of UL include pelvic pain, pressure, dysmenorrhea, menorrhagia, anemia, and reproductive dysfunction. Currently, there is no effective long-term pharmacotherapy for UL, making them the leading cause of hysterectomies in the United States. The lack of treatment options is attributed to the absence of accurate animal models and a limited understanding of UL pathogenesis. Previous research has shown the loss of repressor of element 1 silencing transcription factor/neuron-restrictive silencing factor (REST/NRSF) within the myometrium promotes UL pathogenesis. In addition, deletion of Rest in the mouse myometrium leads to a UL phenotype. PRICKLE1, also known as Rest-interacting LIM-domain Protein (RILP), is required for nuclear localization of REST and Wnt/planar cell polarity (PCP) signaling, making it a critical target for UL studies. In the context of PCP, smooth muscle cells in UL show abnormal organization, aberrant ECM structure, and expression levels, potentially influenced by PRICKLE1 loss. The exact role of PRICKLE1 and Wnt/PCP in UL pathogenesis remains unclear. To explore PRICKLE1's role in UL, we deleted Prickle1 using our myometrial-specific icre. Our findings demonstrate that Prickle1 loss in the myometrium results in a UL phenotype characterized by altered collagen expression, excessive extracellular matrix (ECM) deposition, aberrant smooth muscle cell organization, increased Esr1 and Pgr expression, and dysregulated Wnt/PCP signaling. This novel mouse model serves as a valuable preclinical tool for understanding UL pathogenesis and developing future pharmacotherapies.

在小鼠中,失去PRICKLE1会导致生育能力低下、细胞外基质异常和肌层结构异常。
子宫平滑肌瘤(UL)是女性生殖道最常见的良性肿瘤,起源于子宫肌层,影响超过75%的育龄妇女。UL的症状包括盆腔疼痛、压力、痛经、月经过多、贫血和生殖功能障碍。目前尚无有效的长期药物治疗方法,使其成为美国子宫切除术的主要原因。缺乏治疗选择归因于缺乏准确的动物模型和对UL发病机制的有限理解。先前的研究表明,肌层中抑制因子1沉默转录因子/神经元限制性沉默因子(REST/NRSF)的缺失促进了UL的发病。此外,小鼠肌层中Rest的缺失导致UL表型。PRICKLE1也被称为REST -interacting LIM-domain Protein (RILP),是REST和Wnt/planar cell polarity (PCP)信号的核定位所必需的,是UL研究的重要靶点。在PCP的情况下,UL的平滑肌细胞表现出异常的组织,异常的ECM结构和表达水平,可能受到PRICKLE1缺失的影响。针刺1和Wnt/PCP在UL发病机制中的确切作用尚不清楚。为了探索PRICKLE1在UL中的作用,我们使用我们的肌痛特异性icre删除了PRICKLE1。我们的研究结果表明,肌层中的皮刺1缺失导致UL表型,其特征是胶原表达改变,细胞外基质(ECM)沉积过多,平滑肌细胞组织异常,Esr1和Pgr表达增加,Wnt/PCP信号失调。这种新的小鼠模型为了解UL的发病机制和开发未来的药物治疗提供了有价值的临床前工具。
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来源期刊
Reproduction
Reproduction 生物-发育生物学
CiteScore
7.40
自引率
2.60%
发文量
199
审稿时长
4-8 weeks
期刊介绍: Reproduction is the official journal of the Society of Reproduction and Fertility (SRF). It was formed in 2001 when the Society merged its two journals, the Journal of Reproduction and Fertility and Reviews of Reproduction. Reproduction publishes original research articles and topical reviews on the subject of reproductive and developmental biology, and reproductive medicine. The journal will consider publication of high-quality meta-analyses; these should be submitted to the research papers category. The journal considers studies in humans and all animal species, and will publish clinical studies if they advance our understanding of the underlying causes and/or mechanisms of disease. Scientific excellence and broad interest to our readership are the most important criteria during the peer review process. The journal publishes articles that make a clear advance in the field, whether of mechanistic, descriptive or technical focus. Articles that substantiate new or controversial reports are welcomed if they are noteworthy and advance the field. Topics include, but are not limited to, reproductive immunology, reproductive toxicology, stem cells, environmental effects on reproductive potential and health (eg obesity), extracellular vesicles, fertility preservation and epigenetic effects on reproductive and developmental processes.
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