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体外敲低Hes1后耳蜗细胞特异性标志物的表达

Cochlea cell-specific marker expression upon in vitro Hes1 knockdown.

作者信息

Batissoco A C, Lezirovitz K, Zanatta D B, Hemza C R M L, Vasques L R, Strauss B E, Mingroni-Netto R C, Haddad L A, Bento R F, Oiticica J

机构信息

Otorrinolaringologia/LIM32, Hospital das Clínicas, Faculdade de Medicina, Universidade de São Paulo, São Paulo, SP, Brasil.

Departamento de Otorrinolaringologia, Faculdade de Medicina, Universidade de São Paulo, São Paulo, SP, Brasil.

出版信息

Braz J Med Biol Res. 2021 May 17;54(7):e10579. doi: 10.1590/1414-431X2020e10579. eCollection 2021.

Abstract

NOTCH pathway proteins, including the transcriptional factor HES1, play crucial roles in the development of the inner ear by means of the lateral inhibition mechanism, in which supporting cells have their phenotype preserved while they are prevented from becoming hair cells. Genetic manipulation of this pathway has been demonstrated to increase hair cell number. The present study aimed to investigate gene expression effects in hair cells and supporting cells after Hes1-shRNA lentivirus transduction in organotypic cultures of the organ of Corti from postnatal-day-3 mice. Forty-eight hours after in vitro knockdown, Hes1 gene expression was reduced at both mRNA and protein levels. Myo7a (hair cell marker) and Sox2 (progenitor cell marker) mRNA levels also significantly increased. The modulation of gene expression in the organ of Corti upon Hes1 knockdown is consistent with cell phenotypes related to lateral inhibition mechanism interference in the inner ear. The lentivirus-based expression of Hes1-shRNA is a valuable strategy for genetic interference in the organ of Corti and for future evaluation of its efficacy in protocols aiming at the regeneration of hair cells in vivo.

摘要

NOTCH信号通路蛋白,包括转录因子HES1,通过侧向抑制机制在内耳发育中发挥关键作用,在该机制中,支持细胞的表型得以保留,同时它们被阻止分化为毛细胞。已证明对该信号通路进行基因操作可增加毛细胞数量。本研究旨在探讨在出生后3天小鼠的柯蒂氏器器官型培养物中,Hes1-shRNA慢病毒转导后对毛细胞和支持细胞中基因表达的影响。体外敲低48小时后,Hes1基因在mRNA和蛋白质水平上的表达均降低。Myo7a(毛细胞标记物)和Sox2(祖细胞标记物)的mRNA水平也显著增加。Hes1敲低后柯蒂氏器中基因表达的调节与内耳中与侧向抑制机制干扰相关的细胞表型一致。基于慢病毒的Hes1-shRNA表达是一种用于柯蒂氏器基因干扰以及未来评估其在旨在体内毛细胞再生方案中的功效的有价值策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0dd/8130059/10816617aa33/1414-431X-bjmbr-54-7-e10579-gf001.jpg

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