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自噬协调斑马鱼软骨细胞发育和早期关节形成。

Autophagy coordinates chondrocyte development and early joint formation in zebrafish.

机构信息

School of Biochemistry, University of Bristol, Bristol, UK.

School of Physiology, Pharmacology and Neuroscience, University of Bristol, Bristol, UK.

出版信息

FASEB J. 2021 Nov;35(11):e22002. doi: 10.1096/fj.202101167R.

Abstract

Autophagy is a catabolic process responsible for the removal of waste and damaged cellular components by lysosomal degradation. It plays a key role in fundamental cell processes, including ER stress mitigation, control of cell metabolism, and cell differentiation and proliferation, all of which are essential for cartilage cell (chondrocyte) development and survival, and for the formation of cartilage. Correspondingly, autophagy dysregulation has been implicated in several skeletal disorders such as osteoarthritis and osteoporosis. To test the requirement for autophagy during skeletal development in zebrafish, we generated an atg13 CRISPR knockout zebrafish line. This line showed a complete loss of atg13 expression, and restricted autophagic activity in vivo. In the absence of autophagy, chondrocyte maturation was accelerated, with chondrocytes exhibiting signs of premature hypertrophy. Focussing on the jaw element, autophagy disruption affected joint articulation causing restricted mouth opening. This gross behavioural phenotype corresponded with a failure to thrive, and death in homozygote atg13 nulls within 17 days. Taken together, our results are consistent with autophagy contributing to the timely regulation of chondrocyte maturation and for extracellular matrix formation.

摘要

自噬是一种分解代谢过程,负责通过溶酶体降解清除废物和受损的细胞成分。它在基本的细胞过程中起着关键作用,包括 ER 应激缓解、细胞代谢控制以及细胞分化和增殖,所有这些对于软骨细胞(软骨细胞)的发育和存活以及软骨的形成都是必不可少的。相应地,自噬失调与几种骨骼疾病有关,如骨关节炎和骨质疏松症。为了测试自噬在斑马鱼骨骼发育过程中的需求,我们生成了一个 atg13 CRISPR 敲除斑马鱼系。该系表现出 atg13 表达完全缺失,并在体内限制了自噬活性。在没有自噬的情况下,软骨细胞成熟加速,软骨细胞表现出过早肥大的迹象。专注于颌骨元素,自噬破坏会影响关节连接,导致张口受限。这种明显的行为表型与生长不良相对应,纯合 atg13 缺失的鱼在 17 天内死亡。总之,我们的结果表明自噬有助于软骨细胞成熟和细胞外基质形成的适时调节。

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