Differential gene expression in paired SMC vs. Non-SMC
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https://www.ncbi.nlm.nih.gov/sra/SRP284260
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Poor prognosis of small cell lung cancer (SCLC) is mainly attributed to its highly metastatic capability. Here we identify the SMC and Non-SMC from Rb1L/L/Trp53 L/L mouse model through FACS with NE and mensenchymal markers. In order to identify functions of these two subpopulations during SCLC malignant progression, we compared their metastatic capability by allograft experiment. In addition, we find that the SMC is progressively transited from the Non-SCLC during mouse SCLC malignant progression. Further investigation reveals that genetic disruption of the SWI/SNF chromatin-remodeling complex, in RP model abrogates SMC phenotype maintenance and SCLC metastasis. In search of important downstream regulators, we find that TAZ, the core transcription cofactor of the Hippo pathway, is epigenetically silenced by SWI/SNF complex during this process. Collectively, our data link phenotypic transition to cancer metastasis and identify TAZ as a critical molecular switch that controls SCLC plasticity. Overall design: Paired SMC and Non-SMC were derived from Rb1L/L, Trp53L/L mouse model through FACS. RNA-seq was performed to compare the gene expression profile between paired SMC and Non-SMC. Two paired SMC and Non-SMC were used for the RNA-seq. Three replicates for each sample were included.
创建时间:
2022-08-26



