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Application of a New Multiplexed Array for Rapid, Sensitive, Simultaneous and Quantitative Assessment of Spliced and Unspliced XBP1

机译:一种新的多路复用阵列在拼接和未换XBP1的快速,敏感,同时和定量评估中的应用

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Background:IRE1α-mediated unconventional splicing of XBP1 is emerging as a biomarker in several disease states and is indicative of activation of the unfolded protein response sensor IRE1. Splicing of XBP1 mRNA results in the translation of two distinct XBP1 protein isoforms (XBP1s and XBP1u) which, due to post-translational regulation, do not correlate with mRNA levels. As both XBP1 isoforms are implicated in pathogenic or disease progression mechanisms there is a need for a reliable, clinically applicable method to detect them.Methods:A multiplexed isoform-specific XBP1 array utilising Biochip array technology (BAT?) was assessed for specificity and suitability when using cell protein lysates. The array was applied to RIPA protein lysates from several relevant pre-clinical models with an aim to quantify XBP1 isoforms in comparison with RT-PCR or immunoblot reference methods.Results:A novel reliable, specific and sensitive XBP1 biochip was successfully utilised in pre-clinical research. Application of this biochip to detect XBP1 splicing at the protein level in relevant breast cancer models, under basal conditions as well as pharmacological inhibition and paclitaxel induction, confirmed the findings of previous studies. The biochip was also applied to non-adherent cells and used to quantify changes in the XBP1 isoforms upon activation of the NLRP3 inflammasome.Conclusions:The XBP1 biochip enables isoform specific quantification of protein level changes upon activation and inhibition of IRE1α RNase activity, using a routine clinical methodology. As such it provides a research tool and potential clinical tool with a quantified, simultaneous, rapid output that is not available from any other published method.? The Author(s). 2019.
机译:背景:XBP1的Ire1α介导的XBP1的非传统剪接作为几种疾病状态的生物标志物,并且是指展开蛋白响应传感器IS1的激活。 XBP1 mRNA的剪接导致两种不同的XbP1蛋白同种型(XBP1和XBP1U)的翻译,这是由于翻译后调节,与mRNA水平不相关。由于XBP1同种型均涉及致病或疾病进展机制,需要一种可靠的临床应用方法来检测它们。方法:利用Biochip阵列技术(BATα)的多路复用同种体特异性XBP1阵列进行特异性和适用性。使用细胞蛋白裂解物。将阵列从几个相关的前临床模型应用于RIPA蛋白质裂解物,其目的是与RT-PCR或免疫印迹的方法相比量化XBP1同种型。结果:预先使用新的可靠性,特异性和敏感的XBP1 Biochip临床研究。这种生物芯片在相关乳腺癌模型中检测蛋白质水平的XBP1拼接,基础条件以及药理抑制和紫杉醇诱导,证实了先前研究的结果。 Biochip也应用于非粘附细胞,并在激活NLRP3炎炎症后量化XBP1同种型的变化。结论:XBP1 Biochip使同种型蛋白质水平的蛋白质水平的定量变化,使用A.使用a常规临床方法。因此,它提供了一种研究工具和潜在的临床工具,其具有不可用的量化,同时,快速的输出,这些工具无法从任何其他公开的方法获得。作者。 2019年。

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