A Role for Two-Pore Channel Type 2 (TPC2)-Mediated Regulation of Membrane Contact Sites During Zebrafish Notochord Biogenesis?

Contact Pub Date : 2023-01-01 DOI:10.1177/25152564231211409
Keira L. Rice, Ching Man Chan, Jeffrey J. Kelu, Andrew L. Miller, Sarah E. Webb
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Abstract

We have previously shown that in the developing trunk of zebrafish embryos, two-pore channel type 2 (TPC2)-mediated Ca 2+ release from endolysosomes plays a role in the formation of the skeletal slow muscle. In addition, TPC2-mediated Ca 2+ signaling is required for axon extension and the establishment of synchronized activity in the primary motor neurons. Here, we report that TPC2 might also play a role in the development of the notochord of zebrafish embryos. For example, when tpcn2 was knocked down or out, increased numbers of small vacuoles were formed in the inner notochord cells, compared with the single large vacuole in the notochord of control embryos. This abnormal vacuolation was associated with embryos displaying attenuated body axis straightening. We also showed that TPC2 has a distinct pattern of localization in the notochord in embryos at ∼24 hpf. Finally, we conducted RNAseq to identify differentially expressed genes in tpcn2 mutants compared to wild-type controls, and found that those involved in actin filament severing, cellular component morphogenesis, Ca 2+ binding, and structural constituent of cytoskeleton were downregulated in the mutants. Together, our data suggest that TPC2 activity plays a key role in notochord biogenesis in zebrafish embryos.
双孔通道2型(TPC2)介导的膜接触位点调控在斑马鱼脊索生物发生中的作用?
我们之前已经证明,在斑马鱼胚胎发育的躯干中,两孔通道2型(TPC2)介导的ca2 +内溶酶体释放在骨骼慢肌的形成中起作用。此外,tpc2介导的ca2 +信号是轴突延伸和初级运动神经元同步活动建立所必需的。在这里,我们报道TPC2也可能在斑马鱼胚胎脊索的发育中发挥作用。例如,当tpcn2被敲除或敲除时,与对照胚胎脊索细胞中的单个大液泡相比,脊索细胞内形成的小液泡数量增加。这种异常的液泡化与胚胎显示体轴变弱有关。我们还发现,在~ 24 hpf时,TPC2在胚胎脊索中具有明显的定位模式。最后,我们通过RNAseq方法鉴定了tpcn2突变体与野生型对照的差异表达基因,发现与肌动蛋白丝切断、细胞组分形态发生、ca2 +结合和细胞骨架结构成分相关的基因在突变体中下调。总之,我们的数据表明TPC2活性在斑马鱼胚胎脊索生物发生中起着关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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