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Activation of mTORC1 in chondrocytes does not affect proliferation or differentiation but causes the resting zone of the growth plate to become disordered

机译:软骨细胞中mTORC1的激活不影响增殖或分化但会导致生长板的静息区变得紊乱

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摘要

There are several pitfalls associated with research based on transgenic mice. Here, we describe our interpretation and analysis of mTORC1 activation in growth plate chondrocytes and compare these to a recent publication (Yan et al., Nature Communications 2016, 7:11151). Both laboratories employed TSC1-floxed mice crossed with collagen type 2-driven Cre (Col2-Cre), but drew substantially different conclusions. It was reported that activation of mechanistic target of rapamycin complex 1 (mTORC1) via Tsc1 ablation promotes the hypertrophy of growth plate chondrocytes, whereas we observe only disorganization in the resting zone, with no effect on chondrocyte hypertrophy or proliferation. Here, we present our data and discuss the differences in comparison to the earlier phenotypic characterization of TSC1 ablation in cartilage. Importantly, we detect Col2-Cre activity in non-cartilaginous tissues (including the brain) and discuss it in relation to other studies reporting non-cartilaginous expression of collagen alpha(1) II. Altogether, we conclude that mouse phenotypes following genetic ablation using Col2-Cre should be interpreted with care. We also conclude that activation of mTORC1 by TSC1 ablation in postnatal chondrocytes with inducible Col2-Cre (Col2-CreERt) leads to disorganization of the resting zone but causes no changes in chondrocyte proliferation or differentiation.
机译:基于转基因小鼠的研究存在一些陷阱。在这里,我们描述了我们对生长板软骨细胞中mTORC1激活的解释和分析,并将其与最新出版物进行比较(Yan等人,Nature Communications 2016,7:11151)。这两个实验室都使用了TSC1固定的小鼠与2型胶原蛋白驱动的Cre(Col2-Cre)杂交,但得出的结论却大不相同。据报道,通过Tsc1消融激活雷帕霉素复合物1(mTORC1)的机械目标促进了生长板软骨细胞的肥大,而我们仅观察到静息区的组织紊乱,而对软骨细胞肥大或增殖没有影响。在这里,我们介绍我们的数据,并讨论与TSC1消融在软骨中的早期表型表征相比的差异。重要的是,我们检测到非软骨组织(包括大脑)中的Col2-Cre活性,并与其他报告胶原α(1)II非软骨表达的研究进行了讨论。总而言之,我们得出的结论是,使用Col2-Cre进行基因消融后的小鼠表型应谨慎解释。我们还得出结论,在产后软骨细胞中诱导型Col2-Cre(Col2-CreERt)通过TSC1消融激活mTORC1会导致静息区混乱,但不会导致软骨细胞增殖或分化变化。

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