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首页> 外文期刊>Molecular & cellular proteomics: MCP >Quantitative protein and mRNA profiling shows selective post-transcriptional control of protein expression by vasopressin in kidney cells.
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Quantitative protein and mRNA profiling shows selective post-transcriptional control of protein expression by vasopressin in kidney cells.

机译:定量的蛋白质和mRNA表达谱显示了加压素在肾脏细胞中对蛋白质表达的选择性转录后控制。

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摘要

Previous studies in yeast have supported the view that post-transcriptional regulation of protein abundances may be more important than previously believed. Here we ask the question: "In a physiological regulatory process (the response of mammalian kidney cells to the hormone vasopressin), what fraction of the expressed proteome undergoes a change in abundance and what fraction of the regulated proteins have corresponding changes in mRNA levels?" In humans and other mammals, vasopressin fulfills a vital homeostatic role (viz. regulation of renal water excretion) by regulating the water channel aquaporin-2 in collecting duct cells. To address the question posed, we utilized large-scale quantitative protein mass spectrometry (LC-MS/MS) employing stable isotopic labeling in cultured mpkCCD cells ('SILAC') coupled with transcriptomic profiling using oligonucleotide expression arrays (Affymetrix). Preliminary studies analyzing two nominally identical control samples by SILAC LC-MS/MS yielded a relative S.D. of 13% (for ratios), establishing the precision of the SILAC approach in our hands. We quantified nearly 3000 proteins with nontargeted SILAC LC-MS/MS, comparing vasopressin- versus vehicle-treated samples. Of these proteins 786 of them were quantified in each of 3 experiments, allowing statistical analysis and 188 of these showed significant vasopressin-induced changes in abundance, including aquaporin-2 (20-fold increase). Among the proteins with statistically significant abundance changes, a large fraction (at least one-third) was found to lack changes in the corresponding mRNA species (despite sufficient statistical power), indicating that post-transcriptional regulation of protein abundance plays an important role in the vasopressin response. Bioinformatic analysis of the regulated proteins (versus all transcripts) shows enrichment of glutathione S-transferase isoforms as well as proteins involved in organization of the actin cytoskeleton. The latter suggests that long-term regulatory processes may contribute to actomyosin-dependent trafficking of the water channel aquaporin-2. The results provide impetus for increased focus on translational regulation and regulation of protein degradation in physiological control in mammalian epithelial cells.
机译:以前的酵母研究支持以下观点:蛋白质丰度的转录后调控可能比以前认为的更为重要。在这里,我们提出一个问题:“在生理调节过程中(哺乳动物肾细胞对激素加压素的反应),表达的蛋白质组中有多少部分经历了丰度变化,而受调节的蛋白质中有哪些部分在mRNA水平上有相应的变化? ”在人类和其他哺乳动物中,加压素通过调节收集导管细胞中的水通道aquaporin-2来发挥重要的稳态作用(即调节肾水排泄)。为了解决提出的问题,我们利用大规模定量蛋白质质谱(LC-MS / MS),在培养的mpkCCD细胞(SILAC)中采用稳定的同位素标记,并使用寡核苷酸表达阵列(Affymetrix)进行转录组谱分析。通过SILAC LC-MS / MS分析两个名义上相同的对照样品的初步研究得出相对标准偏差。 (比率)的13%,这使我们掌握了SILAC方法的精度。我们使用非靶向SILAC LC-MS / MS定量了近3000种蛋白质,比较了血管加压素和媒介物处理过的样品。在3个实验中的每个实验中,对其中的786个蛋白进行了定量分析,从而进行了统计分析,其中188个蛋白显示了加压素诱导的丰度变化,包括aquaporin-2(增加20倍)。在具有统计上显着的丰度变化的蛋白质中,很大一部分(至少三分之一)被发现缺乏相应的mRNA种类的变化(尽管具有足够的统计能力),这表明转录后蛋白质丰度的调节在蛋白质中起着重要的作用。加压素反应。对受调节蛋白(相对于所有转录本)的生物信息学分析表明,谷胱甘肽S-转移酶同工型以及与肌动蛋白细胞骨架组成有关的蛋白的富集。后者表明长期的调节过程可能有助于依赖肌动球蛋白的水通道水通道蛋白2的运输。该结果提供了动力,使人们更加关注翻译调控和哺乳动物上皮细胞生理控制中蛋白质降解的调控。

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