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小鼠胃体中活性 Kras 诱导的发育不良谱系的异质性和动态

Heterogeneity and dynamics of active Kras-induced dysplastic lineages from mouse corpus stomach.

机构信息

Department of Surgery, Vanderbilt University School of Medicine, Nashville, TN, 37232, USA.

Epithelial Biology Center, Vanderbilt University School of Medicine, Nashville, TN, 37232, USA.

出版信息

Nat Commun. 2019 Dec 5;10(1):5549. doi: 10.1038/s41467-019-13479-6.

Abstract

Dysplasia is considered a key transition state between pre-cancer and cancer in gastric carcinogenesis. However, the cellular or phenotypic heterogeneity and mechanisms of dysplasia progression have not been elucidated. We have established metaplastic and dysplastic organoid lines, derived from Mist1-Kras(G12D) mouse stomach corpus and studied distinct cellular behaviors and characteristics of metaplastic and dysplastic organoids. We also examined functional roles for Kras activation in dysplasia progression using Selumetinib, a MEK inhibitor, which is a downstream mediator of Kras signaling. Here, we report that dysplastic organoids die or show altered cellular behaviors and diminished aggressive behavior in response to MEK inhibition. However, the organoids surviving after MEK inhibition maintain cellular heterogeneity. Two dysplastic stem cell (DSC) populations are also identified in dysplastic cells, which exhibited different clonogenic potentials. Therefore, Kras activation controls cellular dynamics and progression to dysplasia, and DSCs might contribute to cellular heterogeneity in dysplastic cell lineages.

摘要

发育异常被认为是胃癌发生过程中癌前病变和癌症之间的关键过渡状态。然而,发育异常进展的细胞或表型异质性和机制尚不清楚。我们已经建立了化生和发育异常类器官系,源自 Mist1-Kras(G12D) 小鼠胃体,并研究了化生和发育异常类器官的不同细胞行为和特征。我们还使用 Selumetinib(一种 MEK 抑制剂)检查了 Kras 激活在发育异常进展中的功能作用,Selumetinib 是 Kras 信号的下游介质。在这里,我们报告发育异常类器官在 MEK 抑制后死亡或表现出改变的细胞行为和侵袭性行为减少。然而,在 MEK 抑制后存活的类器官保持细胞异质性。在发育异常细胞中还鉴定出两种发育异常干细胞 (DSC) 群体,它们表现出不同的克隆形成潜力。因此,Kras 激活控制细胞动力学和向发育异常的进展,而 DSCs 可能有助于发育异常细胞谱系中的细胞异质性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/826b/6895174/ae3fb954e757/41467_2019_13479_Fig1_HTML.jpg

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