Claudin-4 remodeling of nucleus-cell cycle crosstalk maintains ovarian tumor genome stability and drives resistance to genomic instability-inducing agents.

Benjamin G Bitler, Fabian R. Villagomez, Julie Lang, Daniel Nunez-Avellaneda, Kian Behbakht, Hannah L. Dimmick, Patricia Webb, Kenneth P. Nephew, Margaret Neville, Elizabeth R. Woodruff
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Abstract

During cancer development, the interplay between the nucleus and the cell cycle leads to a state of genomic instability, often accompanied by observable morphological aberrations. These aberrations can be controlled by tumor cells to evade cell death, either by preventing or eliminating genomic instability. In epithelial ovarian cancer (EOC), overexpression of the multifunctional protein claudin-4 is a key contributor to therapy resistance through mechanisms associated with genomic instability. However, the molecular mechanisms underlying claudin-4 overexpression in EOC remain poorly understood. Here, we altered claudin-4 expression and employed a unique claudin-4 targeting peptide (CMP) to manipulate the function of claudin-4. We found that claudin-4 facilitates genome maintenance by linking the nuclear envelope and cytoskeleton dynamics with cell cycle progression. Claudin-4 caused nuclei constriction by excluding lamin B1 and promoting perinuclear F-actin accumulation, associated with remodeling nuclear architecture, thus altering nuclear envelope dynamics. Consequently, cell cycle modifications due to claudin-4 overexpression resulted in fewer cells entering the S-phase and reduced genomic instability. Importantly, disrupting biological interactions of claudin-4 using CMP and forskolin altered oxidative stress cellular response and increased the efficacy of PARP inhibitor treatment. Our data indicate that claudin-4 protects tumor genome integrity by remodeling the crosstalk between the nuclei and the cell cycle, leading to resistance to genomic instability formation and the effects of genomic instability-inducing agents.
Claudin-4对细胞核-细胞周期串扰的重塑可维持卵巢肿瘤基因组的稳定性,并驱动对基因组不稳定性诱导剂的抗性。
在癌症的发展过程中,细胞核和细胞周期之间的相互作用导致了基因组的不稳定状态,并往往伴随着可观察到的形态畸变。肿瘤细胞可以通过防止或消除基因组不稳定性来控制这些畸变,以避免细胞死亡。在上皮性卵巢癌(EOC)中,多功能蛋白 claudin-4 的过度表达是通过与基因组不稳定性相关的机制导致耐药性的一个关键因素。然而,人们对EOC中Claudin-4过表达的分子机制仍然知之甚少。在这里,我们改变了claudin-4的表达,并采用独特的claudin-4靶向肽(CMP)来操纵claudin-4的功能。我们发现,Claudin-4通过将核包膜和细胞骨架动态与细胞周期进展联系起来,促进了基因组的维护。Claudin-4通过排除层粘连蛋白B1和促进核周F-肌动蛋白的积累而导致细胞核收缩,这与核结构的重塑有关,从而改变了核包膜动力学。因此,Claudin-4过表达导致的细胞周期改变使进入S期的细胞数量减少,并降低了基因组的不稳定性。重要的是,使用CMP和福斯克林干扰laudin-4的生物相互作用可改变氧化应激细胞反应,并提高PARP抑制剂的疗效。我们的数据表明,claudin-4 通过重塑细胞核与细胞周期之间的串联来保护肿瘤基因组的完整性,从而抵御基因组不稳定性的形成和基因组不稳定性诱导剂的影响。
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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