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PIK3CA基因的哪些突变在先天性疾病中具有致病性,以及这些突变发生的时间和位置。

When, where and which PIK3CA mutations are pathogenic in congenital disorders.

作者信息

Angulo-Urarte Ana, Graupera Mariona

机构信息

Endothelial Pathobiology and Microenvironment Group, Josep Carreras Leukaemia Research Institute (IJC), Barcelona, Spain.

Centro de Investigación Biomédica en Red de Cáncer (CIBERONC), Instituto de Salud Carlos III, Madrid, Spain.

出版信息

Nat Cardiovasc Res. 2022 Aug;1(8):700-714. doi: 10.1038/s44161-022-00107-8. Epub 2022 Aug 8.

Abstract

PIK3CA encodes the class I PI3Kα isoform and is frequently mutated in cancer. Activating mutations in PIK3CA also cause a range of congenital disorders featuring asymmetric tissue overgrowth, known as the PIK3CA-related overgrowth spectrum (PROS), with frequent vascular involvement. In PROS, PIK3CA mutations arise postzygotically, during embryonic development, leading to a mosaic body pattern distribution resulting in a variety of phenotypic features. A clear skewed pattern of overgrowth favoring some mesoderm-derived and ectoderm-derived tissues is observed but not understood. Here, we summarize our current knowledge of the determinants of PIK3CA-related pathogenesis in PROS, including intrinsic factors such as cell lineage susceptibility and PIK3CA variant bias, and extrinsic factors, which refers to environmental modifiers. We also include a section on PIK3CA-related vascular malformations given that the vasculature is frequently affected in PROS. Increasing our biological understanding of PIK3CA mutations in PROS will contribute toward unraveling the onset and progression of these conditions and ultimately impact on their treatment. Given that PIK3CA mutations are similar in PROS and cancer, deeper insights into one will also inform about the other.

摘要

PIK3CA编码I类PI3Kα亚型,在癌症中经常发生突变。PIK3CA的激活突变还会导致一系列以不对称组织过度生长为特征的先天性疾病,称为PIK3CA相关过度生长谱系(PROS),常伴有血管受累。在PROS中,PIK3CA突变发生在胚胎发育期间的合子后阶段,导致镶嵌体模式分布,从而产生各种表型特征。观察到一种明显的偏向某些中胚层衍生和外胚层衍生组织的过度生长模式,但尚不清楚其原因。在这里,我们总结了目前对PROS中PIK3CA相关发病机制决定因素的认识,包括内在因素,如细胞谱系易感性和PIK3CA变异偏向,以及外在因素,即环境修饰因子。鉴于PROS中脉管系统经常受到影响,我们还专门设置了一节关于PIK3CA相关血管畸形的内容。加强我们对PROS中PIK3CA突变的生物学理解将有助于揭示这些疾病的发病和进展,并最终影响其治疗。鉴于PROS和癌症中的PIK3CA突变相似,对其中一个的深入了解也将为另一个提供信息。

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