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Non-oncogenic roles of TAp73: from multiciliogenesis to metabolism

机译:TAp73的非致癌作用:从多纤毛发生到代谢

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摘要

The p53 family of transcription factors (p53, p63 and p73) covers a wide range of functions critical for development, homeostasis and health of mammals across their lifespan. Beside the well-established tumor suppressor role, recent evidence has highlighted novel non-oncogenic functions exerted by p73. In particular, p73 is required for multiciliated cell (MCC) differentiation; MCCs have critical roles in brain and airways to move fluids across epithelial surfaces and to transport germ cells in the reproductive tract. This novel function of p73 provides a unifying cellular mechanism for the disparate inflammatory and immunological phenotypes of p73-deficient mice. Indeed, mice with Trp73 deficiency suffer from hydrocephalus, sterility and chronic respiratory tract infections due to profound defects in ciliogenesis and complete loss of mucociliary clearance since MCCs are essential for cleaning airways from inhaled pollutants, pathogens and allergens. Cross-species genomic analyses and functional rescue experiments identify TAp73 as the master transcriptional integrator of ciliogenesis, upstream of previously known central nodes. In addition, TAp73 shows a significant ability to regulate cellular metabolism and energy production through direct transcriptional regulation of several metabolic enzymes, such as glutaminase-2 and glucose-6 phosphate dehydrogenase. This recently uncovered role of TAp73 in the regulation of cellular metabolism strongly affects oxidative balance, thus potentially influencing all the biological aspects associated with p73 function, including development, homeostasis and cancer. Although through different mechanisms, p63 isoforms also contribute to regulation of cellular metabolism, thus indicating a common route used by all family members to control cell fate. At the structural level, the complexity of p73's function is further enhanced by its ability to form heterotetramers with some p63 isoforms, thus indicating the existence of an intrafamily crosstalk that determines the global outcome of p53 family function. In this review, we have tried to summarize all the recent evidence that have emerged on the novel non-oncogenic roles of p73, in an attempt to provide a unified view of the complex function of this gene within its family.
机译:p53转录因子家族(p53,p63和p73)涵盖了在哺乳动物的整个生命周期中对哺乳动物的发育,体内平衡和健康至关重要的各种功能。除了已确立的抑癌作用外,最近的证据还强调了p73发挥的新型非致癌功能。尤其是p73是多纤毛细胞(MCC)分化所必需的; MCC在大脑和气道中起着至关重要的作用,以使液体流过上皮表面并在生殖道中运输生殖细胞。 p73的这一新功能为p73缺陷小鼠的不同炎症和免疫表型提供了统一的细胞机制。的确,由于MCC对于清除呼吸道中的污染物,病原体和过敏原至关重要,因此T纤73缺陷的小鼠由于纤毛发生严重缺陷和粘膜纤毛清除能力的丧失而患有脑积水,不育和慢性呼吸道感染。跨物种基因组分析和功能拯救实验将TAp73识别为纤毛发生的主要转录整合子,位于先前已知的中央结点的上游。另外,TAp73显示出通过直接转录调节几种代谢酶(如谷氨酰胺酶2和葡萄糖6磷酸脱氢酶)来调节细胞代谢和能量产生的显着能力。最近发现的TAp73在细胞代谢调节中的作用强烈影响氧化平衡,从而潜在地影响与p73功能相关的所有生物学方面,包括发育,体内稳态和癌症。尽管通过不同的机制,p63亚型也有助于调节细胞的新陈代谢,从而表明所有家族成员用来控制细胞命运的共同途径。在结构水平上,p73与某些p63亚型形成异源四聚体的能力进一步增强了p73功能的复杂性,因此表明存在家族内串扰,该串扰决定了p53家族功能的整体结果。在这篇综述中,我们试图总结关于p73的新型非致癌作用的所有最新证据,以期对该基因在其家族中的复杂功能提供统一的看法。

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