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肺神经内分泌细胞和小细胞癌中神经内分泌分化的机制

Mechanisms of neuroendocrine differentiation in pulmonary neuroendocrine cells and small cell carcinoma.

作者信息

Ito Takaaki, Udaka Naoko, Okudela Kohji, Yazawa Takuya, Kitamura Hitoshi

机构信息

Department of Pathology, Yokohama City University School of Medicine, Yokohama, Japan.

出版信息

Endocr Pathol. 2003 Summer;14(2):133-9. doi: 10.1385/ep:14:2:133.

Abstract

We review the significance of a network of proneural basic helix-loop-helix (bHLH) factors. Immunohistochemically, pulmonary neuroendocrine cells (PNECs) are positive for Mash1, one of the activator bHLHs, and non-PNECs such as Clara cells are positive for Hes1, one of the repressor bHLHs. Since mice deficient for the Mash1 gene do not possess PNEC and mice deficient for the Hes1 gene have many PNECs, it is suggested that a network of bHLHs work in cell fate determination of lung epithelium. Moreover, the Notch pathway could play a role in cell differentiation mechanisms in the lung because this signaling pathway has been reported to work in various tissues. PNECs have been reported to modulate various nonneoplastic human lung diseases. We demonstrate that PNECs in usual interstitial pneumonia and hASH1 (human homolog of Mash1) are upregulated in diseased lung tissues. Moreover, studies of small cell carcinoma and non- small cell carcinoma suggest that neuroendocrine differentiation could be regulated by hASH1. In non-small cell carcinoma, Hes1 and Notch signaling may have roles in maintaining cell differentiation. Thus, a network of bHLHs and Notch signaling are important in cell differentiation of normal and pathologic lung epithelial cells.

摘要

我们综述了神经源性碱性螺旋-环-螺旋(bHLH)因子网络的重要性。免疫组织化学研究表明,肺神经内分泌细胞(PNECs)对激活型bHLH之一的Mash1呈阳性反应,而诸如克拉拉细胞等非PNECs对抑制型bHLH之一的Hes1呈阳性反应。由于Mash1基因缺陷的小鼠不具备PNECs,而Hes1基因缺陷的小鼠有许多PNECs,这表明bHLH网络在肺上皮细胞命运决定中发挥作用。此外,Notch信号通路可能在肺细胞分化机制中起作用,因为据报道该信号通路在各种组织中发挥作用。据报道,PNECs可调节多种非肿瘤性人类肺部疾病。我们证明,在寻常型间质性肺炎中,PNECs和hASH1(Mash1的人类同源物)在病变肺组织中上调。此外,对小细胞癌和非小细胞癌的研究表明,神经内分泌分化可能受hASH1调节。在非小细胞癌中,Hes1和Notch信号可能在维持细胞分化中起作用。因此,bHLH网络和Notch信号在正常和病理性肺上皮细胞的分化中很重要。

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