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Chronic Contractile Dysfunction without Hypertrophy Does Not Provoke a Compensatory Transcriptional Response in Mouse Hearts

机译:没有肥大的慢性收缩功能障碍不会在小鼠心脏中引起代偿性转录反应。

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摘要

Diseased myocardium from humans and experimental animal models shows heightened expression and activity of a specific subtype of phospholipase C (PLC), the splice variant PLCβ1b. Previous studies from our group showed that increasing PLCβ1b expression in adult mouse hearts by viral transduction was sufficient to cause sustained contractile dysfunction of rapid onset, which was maintained indefinitely in the absence of other pathological changes in the myocardium. We hypothesized that impaired contractility alone would be sufficient to induce a compensatory transcriptional response. Unbiased, comprehensive mRNA-sequencing was performed on 6 biological replicates of rAAV6-treated blank, PLCβ1b and PLCβ1a (closely related but inactive splice variant) hearts 8 weeks after injection, when reduced contractility was manifest in PLCβ1b hearts without evidence of induced hypertrophy. Expression of PLCβ1b resulted in expression changes in only 9 genes at FDR<0.1 when compared with control and these genes appeared unrelated to contractility. Importantly, PLCβ1a caused similar mild expression changes to PLCβ1b, despite a complete lack of effect of this isoform on cardiac contractility. We conclude that contractile depression caused by PLCβ1b activation is largely independent of changes in the transcriptome, and thus that lowered contractility is not sufficient in itself to provoke measurable transcriptomic alterations. In addition, our data stress the importance of a stringent control group to filter out transcriptional changes unrelated to cardiac function.
机译:来自人类和实验动物模型的患病心肌显示出磷脂酶C(PLC)的特定亚型-剪接变体PLCβ1b的表达和活性增强。我们小组以前的研究表明,通过病毒转导增加成年小鼠心脏中PLCβ1b的表达足以引起快速起病的持续收缩功能障碍,在心肌无其他病理变化的情况下可以无限期维持这种功能。我们假设仅受损的收缩能力就足以诱导代偿性转录反应。注射后8周,对经过rAAV6处理的空白,PLCβ1b和PLCβ1a(紧密相关但无活性的剪接变体)心脏的6个生物学复制品进行了无偏倚的全面mRNA测序,当时PLCβ1b心脏表现出收缩力降低,而没有诱发肥大的迹象。与对照相比,PLCβ1b的表达在FDR <0.1时仅导致9个基因的表达变化,并且这些基因似乎与收缩力无关。重要的是,尽管完全缺乏这种同工型对心脏收缩力的影响,PLCβ1a引起与PLCβ1b类似的轻度表达变化。我们得出的结论是,由PLCβ1b激活引起的收缩性抑郁在很大程度上与转录组的变化无关,因此,降低的收缩性本身不足以引起可测量的转录组改变。另外,我们的数据强调了严格对照组过滤掉与心脏功能无关的转录变化的重要性。

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