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TGFβ1‐induced leucine limitation uncovered by differential ribosome codon reading

机译:差异核糖体密码子阅读未发现TGFβ1诱导的亮氨酸限制

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摘要

Cancer cells modulate their metabolic networks to support cell proliferation and a higher demand of building blocks. These changes may restrict the availability of certain amino acids for protein synthesis, which can be utilized for cancer therapy. However, little is known about the amino acid demand changes occurring during aggressive and invasive stages of cancer. Recently, we developed diricore, an approach based on ribosome profiling that can uncover amino acid limitations. Here, we applied diricore to a cellular model in which epithelial breast cells respond rapidly to TGFβ1, a cytokine essential for cancer progression and metastasis, and uncovered shortage of leucine. Further analyses indicated that TGFβ1 treatment of human breast epithelial cells reduces the expression of SLC3A2, a subunit of the leucine transporter, which diminishes leucine uptake and inhibits cell proliferation. Thus, we identified a specific amino acid limitation associated with the TGFβ1 response, a vulnerability that might be associated with aggressiveness in cancer.
机译:癌细胞调节其代谢网络以支持细胞增殖和对构件的更高要求。这些变化可能会限制某些氨基酸可用于蛋白质合成,而这些蛋白质可用于癌症治疗。然而,人们对在癌症的侵袭性和侵袭性阶段发生的氨基酸需求变化知之甚少。最近,我们开发了diricore,这是一种基于核糖体分析的方法,可以揭示氨基酸的局限性。在这里,我们将diricore应用于细胞模型,其中上皮乳腺细胞对TGFβ1快速反应,TGFβ1是癌症进展和转移所必需的细胞因子,并且未发现亮氨酸的短缺。进一步的分析表明,TGFβ1处理人乳腺上皮细胞可降低SLC3A2的表达,SLC3A2是亮氨酸转运蛋白的亚基,可减少亮氨酸的摄取并抑制细胞增殖。因此,我们确定了与TGFβ1反应相关的特定氨基酸限制,这一脆弱性可能与癌症的侵袭性有关。

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