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Defective Neural Tube Closure and Anteroposterior Patterning in Mice Lacking the LIM Protein LMO4 or Its Interacting Partner Deaf-1

机译:缺乏LIM蛋白LMO4或它的相互作用伙伴聋1的小鼠的缺陷性神经管闭合和前后模式。

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摘要

LMO4 belongs to a family of transcriptional regulators that comprises two zinc-binding LIM domains. LIM-only (LMO) proteins appear to function as docking sites for other factors, leading to the assembly of multiprotein complexes. The transcription factor Deaf-1/NUDR has been identified as one partner protein of LMO4. We have disrupted the Lmo4 and Deaf-1 genes in mice to define their biological function in vivo. All Lmo4 mutants died shortly after birth and showed defects within the presphenoid bone, with 50% of mice also exhibiting exencephaly. Homeotic transformations were observed in Lmo4-null embryos and newborn mice, but with incomplete penetrance. These included skeletal defects in cervical vertebrae and the rib cage. Furthermore, fusions of cranial nerves IX and X and defects in cranial nerve V were apparent in some Lmo4−/− and Lmo4+/− mice. Remarkably, Deaf-1 mutants displayed phenotypic abnormalities similar to those observed in Lmo4 mutants. These included exencephaly, transformation of cervical segments, and rib cage abnormalities. In contrast to Lmo4 nullizygous mice, nonexencephalic Deaf-1 mutants remained healthy. No defects in the sphenoid bone or cranial nerves were apparent. Thus, Lmo4 and Deaf-1 mutant mice exhibit overlapping as well as distinct phenotypes. Our data indicate an important role for these two transcriptional regulators in pathways affecting neural tube closure and skeletal patterning, most likely reflecting their presence in a functional complex in vivo.
机译:LMO4属于转录调节剂家族,其包含两个锌结合的LIM结构域。仅LIM(LMO)蛋白质似乎充当其他因素的停靠位点,导致组装多蛋白复合物。转录因子Deaf-1 / NUDR已被鉴定为LMO4的一种伴侣蛋白。我们已经破坏了小鼠中的Lmo4和Deaf-1基因,以定义它们在体内的生物学功能。所有Lmo4突变体在出生后不久就死亡,并在蝶骨内显示出缺陷,其中50%的小鼠也表现出脑电图。在Lmo4无效的胚胎和新生小鼠中观察到同种异体转化,但渗透率不完全。其中包括颈椎和肋骨笼的骨骼缺损。此外,在某些Lmo4 -// 和Lmo4 +/- 小鼠中,颅神经IX和X融合以及颅神经V缺损很明显。值得注意的是,Deaf-1突变体表现出与Lmo4突变体相似的表型异常。这些包括运动过度,子宫颈节段的转变和肋骨笼畸形。与Lmo4无效的小鼠相反,非脑性的Deaf-1突变体保持健康。蝶骨或颅神经无明显缺陷。因此,Lmo4和Deaf-1突变小鼠表现出重叠以及不同的表型。我们的数据表明这两个转录调节因子在影响神经管闭合和骨骼形成的途径中起着重要作用,很可能反映出它们在体内功能复合物中的存在。

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