PO.MCB10.02 · 分子与细胞生物学
癌症进展背景下前列腺来源glycoRNA的表征
Characterization of prostate-derived glycoRNA in the context of cancer progression
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
非编码RNA携带一系列对RNA折叠、稳定性、转运和定位重要的转录后修饰(m6A、假尿苷、尿苷加尾)。这些RNA修饰的失调与人类疾病相关,如癌症、炎症、纤维化和病毒感染。近期在利用通常用于糖基化蛋白富集的生物正交化学方法进行代谢标记的培养人细胞中,注意到携带一类新型糖基化修饰的非编码RNA。关于glycoRNA在前列腺癌(PCa)中的临床意义尚一无所知。由于高级别形式的PCa常导致预后不良,改进患者分层筛查工具和治疗选择以提高患者生存率至关重要。我们假设RNA需要碳水化合物修饰以维持器官稳态和适当的免疫监视,并预测RNA的糖基化状态可作为与前列腺疾病进展和患者预后相关的生物标志物。更清晰地理解PCa相关glycoRNA在疾病进展中如何受调控,将为其在前列腺中的功能提供宝贵见解。我们使用一组在雄激素反应和转移状态上不同的人前列腺细胞系确认了前列腺glycoRNA的存在。我们采用严格的RNA分离流程,并使用两种独立方法验证碳水化合物修饰RNA的存在:使用叠氮点击化学进行代谢标记以检测生物素标签,以及凝集素Northern印迹分析。发现小(<200核苷酸)非编码RNA同时携带N-连接和O-连接的糖,对RNase、内切糖苷酶(PNGase F、O-糖苷酶)和糖基化抑制剂敏感。如预测,glycoRNA表达与PCa进展相关。相比转移性PCa细胞系,glycoRNA优先富集于无/低恶性度的人前列腺细胞系和同基因细胞panel中。亚细胞分离研究显示glycoRNA定位于前列腺细胞的质膜,提示其具有信号传导作用。LC-MS/MS分析显示糖链含有核心岩藻糖基化和α2-3/α2-6唾液酸化。若干糖链呈现LacNAc和GalNAc延伸,提示凝集素结合和生物学功能。我们已在前列腺细胞系中分析了大量糖基化相关酶,以深入了解glycoRNA的调控。这项工作将为RNA修饰如何影响PCa进展提供新见解,并鉴定同类首创的临床工具以改善患者结局。
查看英文原文 English abstract
Noncoding RNA harbors a range of post-transcriptional modifications (m6A, pseudouridine, uridine tailing) important for RNA folding, stability, transport, and localization. Dysregulation of these RNA modifications is associated with human diseases, ex., cancer, inflammation, fibrosis, and viral infection. Noncoding RNA carrying a new class of glycosylation modifications was recently noted in cultured human cells metabolically labeled using bioorthogonal chemistry methods normally employed for glycosylated protein enrichment. Nothing is known about the clinical significance of glycoRNA in prostate cancer (PCa). As high-grade forms of PCa often lead to poor prognoses, it is imperative to improve patient stratification screening tools and treatment options to increase patient survivorship. We hypothesize that RNA requires carbohydrate modifications to maintain organ homeostasis and proper immune surveillance, and we predicted that the glycosylated state of RNA could serve as a biomarker correlating with prostate disease progression and patient prognosis. A clearer understanding of how PCa-associated glycoRNA is regulated during disease progression will provide valuable insight into its function in the prostate. We confirmed that prostate glycoRNA exists using a panel of human prostate cell lines that differed in androgen response and metastatic status. We employed a stringent RNA isolation workflow and validated the existence of carbohydrate-modified RNA using two independent approaches: metabolic labeling using azide click chemistry for biotin-tag detection & lectin northern blot analysis. Small (<200 nucleotide) noncoding RNA were found to carry both N-linked and O-linked sugars, with sensitivity to RNase, endoglycosidases (PNGase F, O-glycosidase) and glycosylation inhibitors. As predicted, glycoRNA expression correlated with PCa progression. GlycoRNA was preferentially enriched in human prostate cell lines and syngeneic panels with no/low malignancy compared to metastatic PCa lines. Subcellular fractionation studies showed glycoRNA localization at the plasma membrane of prostate cells, indicating a signaling role. LC-MS/MS analysis showed glycans containing core-fucosylation and alpha2-3/alpha2-6 sialylation. Several glycans displayed LacNAc and GalNAc extensions, suggesting lectin binding and biological function. We have profiled a large panel of glycosylation-associated enzymes in prostate cell lines to gain insight into glycoRNA regulation. This work will provide novel insight into how RNA modifications impact PCa progression and identify first-in-class clinical tools to improve patient outcomes.
利益披露 Disclosure
E. Jones, None..
S. McGuire, None..
S. Moen, None..
J. Nyalwidhe, None..
A. E. Kerscher, None.