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作为一种研究人类运动纤毛疾病分子背景的模式生物。

as a Model Organism to Study the Molecular Background of Human Motile Ciliopathies.

机构信息

Institute of Human Genetics Polish Academy of Sciences, 32 Strzeszyńska Street, 60-479 Poznań, Poland.

出版信息

Int J Mol Sci. 2023 Feb 24;24(5):4472. doi: 10.3390/ijms24054472.

Abstract

Cilia and flagella are evolutionarily conserved organelles that form protrusions on the surface of many growth-arrested or differentiated eukaryotic cells. Due to the structural and functional differences, cilia can be roughly classified as motile and non-motile (primary). Genetically determined dysfunction of motile cilia is the basis of primary ciliary dyskinesia (PCD), a heterogeneous ciliopathy affecting respiratory airways, fertility, and laterality. In the face of the still incomplete knowledge of PCD genetics and phenotype-genotype relations in PCD and the spectrum of PCD-like diseases, a continuous search for new causative genes is required. The use of model organisms has been a great part of the advances in understanding molecular mechanisms and the genetic basis of human diseases; the PCD spectrum is not different in this respect. The planarian model () has been intensely used to study regeneration processes, and-in the context of cilia-their evolution, assembly, and role in cell signaling. However, relatively little attention has been paid to the use of this simple and accessible model for studying the genetics of PCD and related diseases. The recent rapid development of the available planarian databases with detailed genomic and functional annotations prompted us to review the potential of the model for studying human motile ciliopathies.

摘要

纤毛和鞭毛是进化上保守的细胞器,它们在许多生长停滞或分化的真核细胞表面形成突起。由于结构和功能的差异,纤毛可以大致分为运动和非运动(主要的)。运动纤毛的遗传功能障碍是原发性纤毛运动障碍(PCD)的基础,这是一种影响呼吸道、生育能力和侧性的异质性纤毛病。面对 PCD 遗传学和表型-基因型关系以及 PCD 样疾病谱中仍然不完全的知识,需要不断寻找新的致病基因。模式生物的使用是理解分子机制和人类疾病遗传基础的重大进展的一部分;在这方面,PCD 谱并没有什么不同。扁形虫模型()被广泛用于研究再生过程,以及纤毛在细胞信号转导中的进化、组装和作用。然而,对于利用这种简单易用的模型来研究 PCD 和相关疾病的遗传学,人们的关注相对较少。最近,随着详细基因组和功能注释的可用扁形虫数据库的快速发展,我们促使我们审查 模型在研究人类运动纤毛病中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc91/10002865/9572025496f2/ijms-24-04472-g001.jpg

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