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Sall4 异构体在小鼠胚胎的近远轴和前后轴形成过程中发挥作用。

Sall4 isoforms act during proximal-distal and anterior-posterior axis formation in the mouse embryo.

作者信息

Uez Nikolas, Lickert Heiko, Kohlhase Jürgen, de Angelis Martin Hrabe, Kühn Ralf, Wurst Wolfgang, Floss Thomas

机构信息

Helmholtz Center Munich, Institute of Developmental Genetics, Ingolstaedter Landstrasse 1, Munich, Neuherberg, Germany.

出版信息

Genesis. 2008 Sep;46(9):463-77. doi: 10.1002/dvg.20421.

Abstract

Reciprocal signals from embryonic and extra-embryonic tissues pattern the embryo in proximal-distal (PD) and anterior-posterior (AP) fashion. Here we have analyzed three gene trap mutations of Sall4, of which one (Sall4-1a) led to a hypomorphic and recessive phenotype, demonstrating that Sall4-1a has yet undescribed extra-embryonic and embryonic functions in regulating PD and AP axis formation. In Sall4-1a mutants the self-maintaining autoregulatory interaction between Bmp4, Nodal and Wnt, which determines the PD axis was disrupted because of defects in the extra-embryonic visceral endoderm. More severely, two distinct Sall4 gene-trap mutants (Sall4-1a,b), resembling null mutants, failed to initiate Bmp4 expression in the extra-embryonic ectoderm and Nodal in the epiblast and were therefore unable to initiate PD axis formation. Tetraploid rescue underlined the extra-embryonic nature of the Sall4-1a phenotype and revealed a further embryonic function in Wnt/beta-catenin signaling to elongate the AP axis during gastrulation. This observation was supported through genetic interaction with beta-catenin mutants, since compound heterozygous mutants recapitulated the defects of Wnt3a mutants in posterior development.

摘要

来自胚胎组织和胚外组织的相互信号以近-远(PD)和前-后(AP)方式塑造胚胎。在此,我们分析了Sall4的三个基因陷阱突变,其中一个(Sall4-1a)导致了一个亚效和隐性表型,表明Sall4-1a在调节PD和AP轴形成方面具有尚未描述的胚外和胚胎功能。在Sall4-1a突变体中,由于胚外脏内胚层的缺陷,决定PD轴的Bmp4、Nodal和Wnt之间自我维持的自动调节相互作用被破坏。更严重的是,两个不同的Sall4基因陷阱突变体(Sall4-1a、b),类似于无效突变体,未能在胚外外胚层中启动Bmp4表达,在胚盘中启动Nodal表达,因此无法启动PD轴形成。四倍体拯救突出了Sall4-1a表型的胚外性质,并揭示了在原肠胚形成过程中Wnt/β-连环蛋白信号传导中延长AP轴的进一步胚胎功能。这一观察结果通过与β-连环蛋白突变体的遗传相互作用得到支持,因为复合杂合突变体重现了Wnt3a突变体在后侧发育中的缺陷。

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