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首页> 外文期刊>The journal of clinical investigation >Cell-specific translational profiling in acute kidney injury
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Cell-specific translational profiling in acute kidney injury

机译:急性肾脏损伤中的细胞特异性翻译谱

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Acute kidney injury (AKI) promotes an abrupt loss of kidney function that results in substantial morbidity and mortality. Considerable effort has gone toward identification of diagnostic biomarkers and analysis of AKI-associated molecular events; however, most studies have adopted organ-wide approaches and have not elucidated the interplay among different cell types involved in AKI pathophysiology. To better characterize AKI-associated molecular and cellular events, we developed a mouse line that enables the identification of translational profiles in specific cell types. This strategy relies on CRE recombinase–dependent activation of an EGFP-tagged L10a ribosomal protein subunit, which allows translating ribosome affinity purification (TRAP) of mRNA populations in CRE-expressing cells. Combining this mouse line with cell type–specific CRE-driver lines, we identified distinct cellular responses in an ischemia reperfusion injury (IRI) model of AKI. Twenty-four hours following IRI, distinct translational signatures were identified in the nephron, kidney interstitial cell populations, vascular endothelium, and macrophages/monocytes. Furthermore, TRAP captured known IRI-associated markers, validating this approach. Biological function annotation, canonical pathway analysis, and in situ analysis of identified response genes provided insight into cell-specific injury signatures. Our study provides a deep, cell-based view of early injury-associated molecular events in AKI and documents a versatile, genetic tool to monitor cell-specific and temporal-specific biological processes in disease modeling.
机译:急性肾损伤(AKI)会导致肾功能突然丧失,从而导致大量发病和死亡。在诊断性生物标志物的鉴定和与AKI相关的分子事件的分析方面已付出了巨大的努力。然而,大多数研究都采用了器官范围内的方法,但并未阐明涉及AKI病理生理学的不同细胞类型之间的相互作用。为了更好地表征与AKI相关的分子和细胞事件,我们开发了一种小鼠系,能够鉴定特定细胞类型中的翻译谱。该策略依赖于CRE重组酶依赖性的EGFP标记的L10a核糖体蛋白亚基的激活,该激活可翻译表达CRE的细胞中mRNA群体的核糖体亲和纯化(TRAP)。将该小鼠品系与特定于细胞类型的CRE驱动器品系相结合,我们在AKI缺血再灌注损伤(IRI)模型中鉴定出不同的细胞反应。 IRI后二十四小时,在肾单位,肾间质细胞群,血管内皮和巨噬细胞/单核细胞中发现了明显的翻译特征。此外,TRAP捕获了与IRI相关的已知标记,从而验证了这种方法。生物学功能注释,规范通路分析和已识别反应基因的原位分析提供了对细胞特异性损伤特征的了解。我们的研究提供了基于细胞的AKI早期损伤相关分子事件的深刻观点,并记录了一种多功能的遗传工具来监测疾病建模中的细胞特异性和时间特异性生物学过程。

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