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单细胞功能基因组学揭示了线粒体在细胞间表型变异中的重要性。

Single cell functional genomics reveals the importance of mitochondria in cell-to-cell phenotypic variation.

机构信息

Systems Biology Program, Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology, Barcelona, Spain.

Universitat Pompeu Fabra, Barcelona, Spain.

出版信息

Elife. 2019 Jan 14;8:e38904. doi: 10.7554/eLife.38904.

Abstract

Mutations frequently have outcomes that differ across individuals, even when these individuals are genetically identical and share a common environment. Moreover, individual microbial and mammalian cells can vary substantially in their proliferation rates, stress tolerance, and drug resistance, with important implications for the treatment of infections and cancer. To investigate the causes of cell-to-cell variation in proliferation, we used a high-throughput automated microscopy assay to quantify the impact of deleting >1500 genes in yeast. Mutations affecting mitochondria were particularly variable in their outcome. In both mutant and wild-type cells mitochondrial membrane potential - but not amount - varied substantially across individual cells and predicted cell-to-cell variation in proliferation, mutation outcome, stress tolerance, and resistance to a clinically used anti-fungal drug. These results suggest an important role for cell-to-cell variation in the state of an organelle in single cell phenotypic variation.

摘要

突变的结果在不同个体之间经常存在差异,即使这些个体在遗传上完全相同并且共享相同的环境。此外,个体微生物和哺乳动物细胞在增殖率、应激耐受性和耐药性方面可能有很大差异,这对感染和癌症的治疗有重要影响。为了研究增殖过程中细胞间变异的原因,我们使用高通量自动化显微镜检测法来定量分析酵母中 >1500 个基因缺失的影响。影响线粒体的突变在结果上特别具有变异性。在突变体和野生型细胞中,线粒体膜电位——而不是数量——在单个细胞之间有很大差异,并且可以预测增殖、突变结果、应激耐受性以及对一种临床使用的抗真菌药物的耐药性方面的细胞间变异。这些结果表明,细胞器状态的细胞间变异在单细胞表型变异中起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5f8/6366901/6264cec39450/elife-38904-fig1.jpg

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