首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Argininosuccinate Synthetase 1 Loss in Invasive Bladder Cancer Regulates Survival through General Control Nonderepressible 2 Kinase-Mediated Eukaryotic Initiation Factor 2 alpha Activity and Is Targetable by Pegylated Arginine Deiminase
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Argininosuccinate Synthetase 1 Loss in Invasive Bladder Cancer Regulates Survival through General Control Nonderepressible 2 Kinase-Mediated Eukaryotic Initiation Factor 2 alpha Activity and Is Targetable by Pegylated Arginine Deiminase

机译:Agininosuccinate合成酶1侵袭性膀胱癌中的损失通过一般控制不可抗拒的2激酶介导的真核引发因子2α活性并通过聚乙二醇化精氨酸脱氨酶来调节存活

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摘要

Loss of argininosuccinate synthetase 1 (ASS1), a key enzyme for arginine synthesis, occurs in many cancers, making cells dependent on extracellular arginine and targetable by the arginine-degrading enzyme pegylated arginine deiminase (ADI-PEG 20). We evaluated ASS1 expression and effects of ASS1 loss in bladder cancer which, despite affecting >70,000 people in the United States annually, has limited therapies. ASS1 Loss was identified in conventional and micropapillary urothelial carcinoma, small cell, and squamous cell carcinoma subtypes of invasive bladder cancer, as well as in T24, J82, and UM-UC-3 but not in 5637, RT112, and RT4 cell lines. ASS1-deficient cells showed preferential sensitivity to ADI-PEG 20, evidenced by decreased colony formation, reduced cell viability, and increased sub-G1 fractions. ADI-PEG 20 induced general control nonderepressible 2-dependent eukaryotic initiation factor 2 alpha phosphorylation and activating transcription factor 4 and C/EBP homologous protein up-regulation, associated with caspase-independent apoptosis and autophagy. These effects were ablated with selective siRNA silencing of these proteins. ASS1 overexpression in UM-UC-3 or ASS1 silencing in RT112 cells reversed these effects. ADI-PEG 20 treatment of mice bearing contralateral flank UM-UC-3 and RT112 xenografts selectively arrested tumor growth in UM-UC-3 xenografts, which had reduced tumor size, reduced Ki-67, and increased terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling staining. This suggests that ASS1 Loss occurs in invasive bladder cancer and is targetable by ADI-PEG 20.
机译:丧失精华阳琥珀酸合成酶1(ASS1),一种用于精氨酸合成的关键酶,发生在许多癌症中,使得依赖于细胞外精氨酸的细胞并由精氨酸降解酶聚乙二醇化精氨酸测定酶(Adi-PEG 20)靶向。我们评估了ASS1损失在膀胱癌中的表达和效果,尽管每年在美国影响美国70,000人,但疗法有限。在常规和微自产儿尿路上皮癌,小细胞和鳞状细胞癌亚型中鉴定ESS1损失,以及T24,J82和UM-UC-3,但不在5637,RT112和RT4细胞系中。 ASS1缺陷细胞显示对ADI-PEG 20的优先敏感性,通过降低的菌落形成,降低细胞活力和增加的亚g1级分来证明。 ADI-PEG 20诱导一般控制不可抑制的2依赖性真核激素引发因子2α磷酸化和激活转录因子4和C / EBP同源蛋白质上调,与Caspase-usey凋亡和自噬相关。这些效果被这些蛋白质的选择性siRNA沉默烧蚀。在RT112细胞中UM-UC-3或ASS1沉默中的ASS1过表达逆转了这些效果。 Adi-peg 20对对侧侧翼UM-UC-3和RT112异种移植物的副PEG 20治疗在UM-UC-3异种移植物中选择性地阻止了肿瘤大小,降低的Ki-67和增加的末端脱氧核苷酸转移酶介导的DUTP缺口 - 铭牌染色。这表明ASS1损失发生在侵袭性膀胱癌中,并且可由ADI-PEG 20靶向。

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