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The role of microtubule actin cross-linking factor 1 (MACF1) in the Wnt signaling pathway

机译:微管肌动蛋白交联因子1(MACF1)在Wnt信号通路中的作用

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摘要

MACF1 (microtubule actin cross-linking factor 1) is a multidomain protein that can associate with microfilaments and microtubules. We found that MACF1 was highly expressed in neuronal tissues and the foregut of embryonic day 8.5 (E8.5) embryos and the head fold and primitive streak of E7.5 embryos. MACF1−/− mice died at the gastrulation stage and displayed developmental retardation at E7.5 with defects in the formation of the primitive streak, node, and mesoderm. This phenotype was similar to Wnt-3−/− and LRP5/6 double-knockout embryos. In the absence of Wnt, MACF1 associated with a complex that contained Axin, β-catenin, GSK3β, and APC. Upon Wnt stimulation, MACF1 appeared to be involved in the translocation and subsequent binding of the Axin complex to LRP6 at the cell membrane. Reduction of MACF1 with small interfering RNA decreased the amount of β-catenin in the nucleus, and led to an inhibition of Wnt-induced TCF/β-catenin-dependent transcriptional activation. Similar results were obtained with a dominant-negative MACF1 construct that contained the Axin-binding region. Reduction of MACF1 in Wnt-1-expressing P19 cells resulted in decreased T (Brachyury) gene expression, a DNA-binding transcription factor that is a direct target of Wnt/β-catenin signaling and required for mesoderm formation. These results suggest a new role of MACF1 in the Wnt signaling pathway.
机译:MACF1(微管肌动蛋白交联因子1)是一种多域蛋白,可与微丝和微管结合。我们发现MACF1在神经元组织和胚胎第8.5天(E8.5)胚胎的前肠以及E7.5胚胎的头褶和原始条纹中高表达。 MACF1 -/-小鼠在胃形成阶段死亡,并在E7.5处表现出发育迟缓,原始条纹,节和中胚层的形成存在缺陷。此表型类似于Wnt-3 -/-和LRP5 / 6双敲除胚胎。在没有Wnt的情况下,MACF1与包含Axin,β-catenin,GSK3β和APC的复合物相关。在Wnt刺激后,MACF1似乎参与了Axin复合物在细胞膜上的转运和随后与LRP6的结合。用小的干扰RNA还原MACF1会减少细胞核中β-catenin的量,并导致Wnt诱导的TCF /β-catenin依赖性转录激活受到抑制。使用包含Axin结合区的显性阴性MACF1构建体也获得了相似的结果。在表达Wnt-1的P19细胞中MACF1的减少导致T(Brachyury)基因表达的减少,T是表达Wnt /β-catenin信号的直接靶点且为中胚层形成所必需的DNA结合转录因子。这些结果表明MACF1在Wnt信号通路中的新作用。

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