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Kremen proteins interact with Dickkopf1 to regulate anteroposterior CNS patterning.

机译:Kremen蛋白与Dickkopf1相互作用以调节前后CNS的模式。

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A gradient of Wnt/beta-catenin signalling formed by posteriorising Wnts and anteriorising Wnt antagonists regulates anteroposterior (AP) patterning of the central nervous system (CNS) during Xenopus gastrulation. In this process, the secreted Wnt antagonist Dkk1 functions in the Spemann organiser and its anterior derivatives by blocking Wnt receptors of the lipoprotein receptor-related protein (LRP) 5 and 6 class. In addition to LRP6, Dkk1 interacts with another recently identified receptor class, the transmembrane proteins Kremen1 (Krm1) and Kremen2 (Krm2) to synergistically inhibit LRP6. We have investigated the role of Krm1 and Krm2 during early Xenopus embryogenesis. Consistent with a role in zygotic Wnt inhibition, overexpressed Krm anteriorises embryos and rescues embryos posteriorised by Wnt8. Antisense morpholino oligonucleotide (Mo) knockdown of Krm1 and Krm2 leads to deficiency of anterior neural development. In this process, Krm proteins functionally interact with Dkk1: (1) in axis duplication assays krm2 synergises with dkk1 in inhibiting Wnt/LRP6 signalling; (2) krm2 rescues microcephalic embryos induced by injection of inhibitory anti-Dkk1 antibodies; and (3) injection of krm1/2 antisense Mo enhances microcephaly induced by inhibitory anti-Dkk1 antibodies. The results indicate that Krm proteins function in a Wnt inhibition pathway regulating early AP patterning of the CNS.
机译:由先天性Wnts和先前的Wnt拮抗剂形成的Wnt /β-catenin信号传导梯度调节爪蟾胃化过程中中枢神经系统(CNS)的前后(AP)模式。在此过程中,分泌的Wnt拮抗剂Dkk1通过阻止脂蛋白受体相关蛋白(LRP)5和6类的Wnt受体在Spemann组织者及其前体衍生物中发挥作用。除LRP6外,Dkk1还与另一种最近确定的受体类别相互作用,即跨膜蛋白Kremen1(Krm1)和Kremen2(Krm2)协同抑制LRP6。我们调查了早期非洲爪蟾胚胎发生过程中Krm1和Krm2的作用。与合子Wnt抑制作用相一致,过表达的Krm使胚胎先兆化并拯救Wnt8后代的胚胎。 Krm1和Krm2的反义吗啉代寡核苷酸(Mo)敲低导致前神经发育不足。在此过程中,Krm蛋白在功能上与Dkk1相互作用:(1)在轴重复测定中,krm2与dkk1协同作用抑制Wnt / LRP6信号传导; (2)krm2挽救了注射抑制性Dkk1抗体诱导的小头胚胚胎; (3)注射krm1 / 2反义Mo增强了抑制性Dkk1抗体诱导的小头畸形。结果表明,Krm蛋白在Wnt抑制途径中起作用,调节CNS的早期AP模式。

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