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脊椎动物矿化中心在斑马鱼β糖蛋白缺失突变体中延迟。

Chordacentrum mineralization is delayed in zebrafish betaglycan-null mutants.

机构信息

Department of Cellular and Developmental Biology, Institute of Cellular Physiology, UNAM, México City, Mexico.

Division of Neurosciences, Department of Neural Development and Physiology, Institute of Cellular Physiology, UNAM, México City, Mexico.

出版信息

Dev Dyn. 2022 Jan;251(1):213-225. doi: 10.1002/dvdy.393. Epub 2021 Jul 17.

Abstract

BACKGROUND

The Transforming Growth Factor β (TGFβ) family is a group of related proteins that signal through a type I and type II receptors. Betaglycan, also known as the type III receptor (Tgfbr3), is a coreceptor for various ligands of the TGFβ family that participates in heart, liver and kidney development as revealed by the tgfbr3-null mouse, as well as in angiogenesis as revealed by Tgfbr3 downregulation in morphant zebrafish.

RESULTS

Here, we present CRISPR/Cas9-derived zebrafish Tgfbr3-null mutants, which exhibited unaltered embryonic angiogenesis and developed into fertile adults. One reproducible phenotype displayed by these Tgfbr3-null mutants is delayed chordacentra mineralization, which nonetheless does not result in vertebral abnormalities in the adult fishes. We also report that the canonical TGFβ signaling pathway is needed for proper chordacentra mineralization and that Tgfbr3 absence decreases this signal in the notochordal cells responsible for this process.

CONCLUSION

Betaglycan's "ligand presentation" function contributes to the optimal TGFβ signaling required for zebrafish chordacentra mineralization.

摘要

背景

转化生长因子β(TGFβ)家族是一组相关蛋白,通过 I 型和 II 型受体传递信号。β糖蛋白,也称为 III 型受体(Tgfbr3),是 TGFβ 家族各种配体的共受体,在 tgfbr3 基因敲除小鼠中参与心脏、肝脏和肾脏发育,在形态发生斑马鱼中 Tgfbr3 下调中参与血管生成。

结果

在这里,我们提供了 CRISPR/Cas9 衍生的斑马鱼 Tgfbr3 基因敲除突变体,这些突变体表现出未改变的胚胎血管生成,并发育成有生育能力的成年个体。这些 Tgfbr3 基因敲除突变体表现出一种可重复的表型,即脊索中心矿化延迟,但这并不会导致成年鱼类的椎骨异常。我们还报告说,经典的 TGFβ 信号通路是脊索中心矿化所必需的,而 Tgfbr3 的缺失会降低负责这一过程的脊索细胞中的这一信号。

结论

β糖蛋白的“配体呈递”功能有助于斑马鱼脊索中心矿化所需的最佳 TGFβ 信号传递。

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