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慢钙波介导早期斑马鱼胚胎中沟微管的重组和生殖质的浓缩。

Slow calcium waves mediate furrow microtubule reorganization and germ plasm compaction in the early zebrafish embryo.

机构信息

Laboratory of Genetics, University of Wisconsin - Madison, Madison, WI 53706, USA.

Department of Neuroscience, University of Wisconsin - Madison, Madison, WI 53705, USA.

出版信息

Development. 2018 May 17;145(10):dev156604. doi: 10.1242/dev.156604.

Abstract

Zebrafish germ plasm ribonucleoparticles (RNPs) become recruited to furrows of early zebrafish embryos through their association with astral microtubules ends. During the initiation of cytokinesis, microtubules are remodeled into a furrow microtubule array (FMA), which is thought to be analogous to the mammalian midbody involved in membrane abscission. During furrow maturation, RNPs and FMA tubules transition from their original distribution along the furrow to enrichments at the furrow distal ends, which facilitates germ plasm mass compaction. We show that mutants exhibit reduced furrow-associated slow calcium waves (SCWs), caused at least in part by defective enrichment of calcium stores. RNP and FMA distal enrichment mirrors the medial-to-distal polarity of SCWs, and inhibition of calcium release or downstream mediators such as Calmodulin affects RNP and FMA distal enrichment. Blastomeres with reduced or lacking SCWs, such as early blastomeres in mutants and wild-type blastomeres at later stages, exhibit medially bundling microtubules similar to midbodies in other cell types. Our data indicate that SCWs provide medial-to-distal directionality along the furrow to facilitate germ plasm RNP enrichment at the furrow ends.

摘要

斑马鱼胚胎原核核糖核蛋白(RNP)通过与星体微管末端的结合,招募到早期斑马鱼胚胎的沟中。在胞质分裂开始时,微管被重塑为沟微管阵列(FMA),这被认为类似于哺乳动物的中体,参与膜分离。在沟道成熟过程中,RNP 和 FMA 管从原来沿沟道的分布过渡到沟道远端的富集,这有利于原核物质的紧密压缩。我们发现, 突变体表现出减少的与沟道相关的缓慢钙波(SCW),这至少部分是由于钙库的富集缺陷所致。RNP 和 FMA 远端的富集反映了 SCW 的中-远极性,而钙释放或下游介质如钙调蛋白的抑制作用会影响 RNP 和 FMA 远端的富集。具有减少或缺乏 SCW 的分裂球,如 突变体中的早期分裂球和晚期的野生型分裂球,表现出类似于其他细胞类型中的中体的微管向中部聚集。我们的数据表明,SCW 沿着沟道提供从中部到远部的方向性,以促进 RNP 在沟道末端的富集。

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