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Culture dimensionality controls CD44 alternative splicing

机译:文化维度控制CD44选择性剪接

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CD44 and its alternative spliced variants have been broadly associated with cancer, from resistance to oxidative stress to metastatic behavior. In the context of gastric cancer (GC) we have previously shown that de novo expression of CD44 variant 6 (CD44v6) accompanies malignant progression. Two-dimensional (2D) cell culture is commonly used to study cancer in vitro, but fails to mimic key architectural and physical features of the tumor microenvironment. This study determined how more physiologically relevant three-dimensional (3D) culture impacts CD44 alternative splicing in epithelial GC cells. In 3D culture, GC cells gradually lost expression of the standard CD44 isoform (CD44s), while simultaneously gaining CD44v6 expression that was virtually absent in 2D monolayers. This switch in CD44 spliced isoforms was reversible, accelerated by nutrient shortage and delayed with lower initial cell densities, suggesting that it is a stress-induced response. Loss of CD44s in 3D culture was further shown to be dependent on the matrix mechanical properties and accompanied by the upregulation of key epithelial-mesenchymal transition (EMT) markers, such as SNAIL and ZEB1, along with several genes involved in aberrant metabolic pathways, cellular stress, angiogenesis and antisenescense cellular programs. Human gastric premalignant and malignant lesions revealed that 3D cultures, but not 2D monolayers, were able to capture aberrant CD44 splicing patterns observed in vivo. Altogether, these findings suggest that cells modulate CD44 expression in response to culture dimensionality and physical cues, and could translate into clinical strategies to locally modulate CD44 expression in GC, the 4th most common cancer in the world.
机译:从抗氧化抗性到转移行为,CD44及其替代剪接变体已广泛与癌症相关。在胃癌(GC)的背景下,我们先前已证明CD44变体6(CD44v6)的从头表达伴随着恶性进展。二维(2D)细胞培养通常用于体外研究癌症,但无法模仿肿瘤微环境的关键构造和物理特征。这项研究确定了更多生理相关的三维(3D)培养如何影响上皮GC细胞中的CD44选择性剪接。在3D培养中,GC细胞逐渐失去了标准CD44同种型(CD44s)的表达,而同时获得了在2D单层中几乎不存在的CD44v6表达。 CD44剪接的同工型的这种转换是可逆的,由于营养缺乏而加速,并且由于较低的初始细胞密度而延迟,这表明它是应激诱导的反应。进一步显示3D培养物中CD44的丢失取决于基质的机械特性,并伴随着关键的上皮-间质转化(EMT)标记(如SNAIL和ZEB1)的上调,以及涉及异常代谢途径,细胞的几个基因应激,血管生成和反义细胞程序。人胃癌前病变和恶性病变显示3D培养物(而非2D单层细胞)能够捕获体内观察到的异常CD44剪接模式。总而言之,这些发现表明细胞可根据培养物的大小和物理提示调节CD44的表达,并可转化为临床策略来局部调节GC(世界上第四大常见癌症)中CD44的表达。

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