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核糖体生物合成因子Nol11是非洲爪蟾最佳rDNA转录和颅面发育所必需的。

The ribosome biogenesis factor Nol11 is required for optimal rDNA transcription and craniofacial development in Xenopus.

作者信息

Griffin John N, Sondalle Samuel B, Del Viso Florencia, Baserga Susan J, Khokha Mustafa K

机构信息

Program in Vertebrate Developmental Biology, Departments of Pediatrics and Genetics, Yale University School of Medicine, New Haven, Connecticut, United States of America.

Departments of Genetics, Molecular Biophysics and Biochemistry, and Therapeutic Radiology, Yale University School of Medicine, New Haven, Connecticut, United States of America.

出版信息

PLoS Genet. 2015 Mar 10;11(3):e1005018. doi: 10.1371/journal.pgen.1005018. eCollection 2015 Mar.

Abstract

The production of ribosomes is ubiquitous and fundamental to life. As such, it is surprising that defects in ribosome biogenesis underlie a growing number of symptomatically distinct inherited disorders, collectively called ribosomopathies. We previously determined that the nucleolar protein, NOL11, is essential for optimal pre-rRNA transcription and processing in human tissue culture cells. However, the role of NOL11 in the development of a multicellular organism remains unknown. Here, we reveal a critical function for NOL11 in vertebrate ribosome biogenesis and craniofacial development. Nol11 is strongly expressed in the developing cranial neural crest (CNC) of both amphibians and mammals, and knockdown of Xenopus nol11 results in impaired pre-rRNA transcription and processing, increased apoptosis, and abnormal development of the craniofacial cartilages. Inhibition of p53 rescues this skeletal phenotype, but not the underlying ribosome biogenesis defect, demonstrating an evolutionarily conserved control mechanism through which ribosome-impaired craniofacial cells are removed. Excessive activation of this mechanism impairs craniofacial development. Together, our findings reveal a novel requirement for Nol11 in craniofacial development, present the first frog model of a ribosomopathy, and provide further insight into the clinically important relationship between specific ribosome biogenesis proteins and craniofacial cell survival.

摘要

核糖体的产生普遍存在且对生命至关重要。因此,核糖体生物合成缺陷是越来越多症状明显不同的遗传性疾病(统称为核糖体病)的基础,这一点令人惊讶。我们之前确定核仁蛋白NOL11对人类组织培养细胞中最佳的前体rRNA转录和加工至关重要。然而,NOL11在多细胞生物体发育中的作用仍然未知。在这里,我们揭示了NOL11在脊椎动物核糖体生物合成和颅面发育中的关键功能。Nol11在两栖动物和哺乳动物发育中的颅神经嵴(CNC)中强烈表达,敲低非洲爪蟾的nol11会导致前体rRNA转录和加工受损、细胞凋亡增加以及颅面软骨发育异常。抑制p53可挽救这种骨骼表型,但不能挽救潜在的核糖体生物合成缺陷,这表明存在一种进化上保守的控制机制,通过该机制可清除核糖体受损的颅面细胞。过度激活该机制会损害颅面发育。总之,我们的研究结果揭示了Nol11在颅面发育中的新需求,展示了第一个核糖体病的青蛙模型,并进一步深入了解了特定核糖体生物合成蛋白与颅面细胞存活之间临床上重要的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36d0/4354908/bcde20a92e5b/pgen.1005018.g001.jpg

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