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Ca2+ release via two-pore channel type 2 (TPC2) is required for slow muscle cell myofibrillogenesis and myotomal patterning in intact zebrafish embryos

机译:完整的斑马鱼胚胎中缓慢的肌肉细胞肌原纤维形成和肌组织模式需要通过2孔通道2型(TPC2)释放Ca2 +

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摘要

We recently demonstrated a critical role for two-pore channel type 2 (TPC2)-mediated Ca2+ release during the differentiation of slow (skeletal) muscle cells (SMC) in intact zebrafish embryos, via the introduction of a translational-blocking morpholino antisense oligonucleotide (MO). Here, we extend our study and demonstrate that knockdown of TPC2 with a non-overlapping splice-blocking MO, knockout of TPC2 (via the generation of a tpcn2dhkz1a mutant line of zebrafish using CRISPR/Cas9 gene-editing), or the pharmacological inhibition of TPC2 action with bafilomycin A1 or trans-ned-19, also lead to a significant attenuation of SMC differentiation, characterized by a disruption of SMC myofibrillogenesis and gross morphological changes in the trunk musculature. When the morphants were injected with tpcn2-mRNA or were treated with IP3/BM or caffeine (agonists of the inositol 1,4,5-trisphosphate receptor (IP3R) and ryanodine receptor (RyR), respectively), many aspects of myofibrillogenesis and myotomal patterning (and in the case of the pharmacological treatments, the Ca2+ signals generated in the SMCs), were rescued. STED super-resolution microscopy revealed a close physical relationship between clusters of RyR in the terminal cisternae of the sarcoplasmic reticulum (SR), and TPC2 in lysosomes, with a mean estimated separation of ~52–87 nm. Our data therefore add to the increasing body of evidence, which indicate that localized Ca2+ release via TPC2 might trigger the generation of more global Ca2+ release from the SR via Ca2+-induced Ca2+ release.
机译:通过引入,我们最近证明了在完整的斑马鱼胚胎中慢(骨骼)肌细胞(SMC)分化过程中,两孔通道2型(TPC2)介导的Ca 2 + 释放的关键作用。阻断翻译吗啉代反义寡核苷酸(MO)。在这里,我们扩大了研究范围,并证明了使用不重叠的剪接阻断MO敲除TPC2,敲除TPC2(通过使用CRISPR / Cas9基因的斑马鱼tpcn2 dhkz1a 突变株的产生,编辑),或用bafilomycin A1或trans-ned-19抑制TPC2的药理作用,也导致SMC分化的显着减弱,其特征是SMC肌纤维生成的破坏和躯干肌肉组织的总体形态变化。当用tpcn2-mRNA注射吗啡或用IP3 / BM或咖啡因(分别是肌醇1,4,5-三磷酸受体(IP3R)和ryanodine受体(RyR)的激动剂)处理吗啡时,肌原纤维形成和肌源模式化(在药物治疗的情况下,SMC中产生的Ca 2 + 信号)得以挽救。 STED超高分辨率显微镜检查显示,肌浆网(SR)末端池中的RyR簇与溶酶体中的TPC2之间存在紧密的物理关系,估计的平均间隔约为52-87 nm。因此,我们的数据增加了越来越多的证据,这表明通过TPC2局部释放的Ca 2 + 可能触发通过SR从SR释放更多的整体Ca 2 + Ca 2 + 诱导的Ca 2 + 释放。

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