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Widespread diversity in the transcriptomes of functionally divergent limb tendons

机译:功能性不同的肢体肌腱的转录组中的广泛多样性

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Key points Tendon is a hypocellular, matrix‐rich tissue that has been excluded from comparative transcriptional atlases. These atlases have provided important knowledge about biological heterogeneity between tissues, and our study addresses this important gap. We performed measures on four of the most studied tendons, the Achilles, forepaw flexor, patellar and supraspinatus tendons of both mice and rats. These tendons are functionally distinct and are also among the most commonly injured, and therefore of important translational interest. Approximately one‐third of the filtered transcriptome was differentially regulated between Achilles, forepaw flexor, patellar and supraspinatus tendons within either mice or rats. Nearly two‐thirds of the transcripts that are expressed in anatomically similar tendons were different between mice and rats. The overall findings from this study identified that although tendons across the body share a common anatomical definition based on their physical location between skeletal muscle and bone, tendon is a surprisingly genetically heterogeneous tissue. Abstract Tendon is a functionally important connective tissue that transmits force between skeletal muscle and bone. Previous studies have evaluated the architectural designs and mechanical properties of different tendons throughout the body. However, less is known about the underlying transcriptional differences between tendons that may dictate their designs and properties. Therefore, our objective was to develop a comprehensive atlas of the transcriptome of limb tendons in adult mice and rats using systems biology techniques. We selected the Achilles, forepaw digit flexor, patellar, and supraspinatus tendons due to their divergent functions and high rates of injury and tendinopathies in patients. Using RNA sequencing data, we generated the Comparative Tendon Transcriptional Database (CTTDb) that identified substantial diversity in the transcriptomes of tendons both within and across species. Approximately 30% of filtered transcripts were differentially regulated between tendons of a given species, and nearly 60% of the filtered transcripts present in anatomically similar tendons were different between species. Many of the genes that differed between tendons and across species are important in tissue specification and limb morphogenesis, tendon cell biology and tenogenesis, growth factor signalling, and production and maintenance of the extracellular matrix. This study indicates that tendon is a surprisingly heterogenous tissue with substantial genetic variation based on anatomical location and species.
机译:关键点肌腱是一种富含细胞的基质富含组织,其被排除在比较转录地图集之外。这些地图集已经为组织之间的生物异质性提供了重要了解,我们的研究解决了这一重要差距。我们对四个最多学习的肌腱,achilles,前爪屈肌,髌骨和穗子肌腱肌腱的措施进行了措施。这些肌腱在功能上独特,也是最常见的伤害,因此是重要的翻译权益。大约三分之一的过滤的转录组在大鼠或大鼠内的甲壳菌,前爪屈曲,髌骨和穗子痫肌腱之间差异调节。在解剖学上类似的肌腱中表达的近三分之二的转录物在小鼠和大鼠之间是不同的。本研究的整体结果确定了虽然身体上的肌腱在骨骼肌和骨骼之间的物理位置共享常见的解剖定义,但肌腱是一个令人惊讶的基因上异质组织。摘要肌腱是一种功能性重要的结缔组织,可在骨骼肌和骨之间传递力。以前的研究已经评估了整个身体不同肌腱的建筑设计和机械性能。然而,较少的是关于可以决定其设计和性质的肌腱之间的潜在转录差异。因此,我们的目标是在使用系统生物学技术中制定成人小鼠和大鼠的肢体肌腱转录组的全面地图集。我们选择了Achilles,前爪位数屈肌,髌骨和冈上肌腱,患者的发病功能和高损伤和患者患者。使用RNA测序数据,我们生成了对比较肌腱转录数据库(CTTDB)确定了在物种内部和跨越肌腱的转录组中的大量多样性。在给定物种的肌腱之间,大约30%的过滤转录物在肌腱之间差异调节,并且在原子学上类似的肌腱中存在的近60%的过滤转录物在物种之间存在差异。肌腱和跨物种之间不同的许多基因在组织规范和肢体形态发生,肌腱细胞生物学和初组,生长因子信号传导以及细胞外基质的生产和维持中重要。该研究表明肌腱是一种令人惊讶的异因组织,基于解剖学位置和物种具有大量遗传变异。

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