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在出芽酵母中,通过多种途径适应高染色体不稳定性和非整倍性。

Adaptation to high rates of chromosomal instability and aneuploidy through multiple pathways in budding yeast.

机构信息

Department of Chromosome Biology, Max Perutz Labs, Vienna Biocenter (VBC), University of Vienna, Vienna, Austria.

出版信息

EMBO J. 2023 Apr 17;42(8):e111500. doi: 10.15252/embj.2022111500. Epub 2022 Dec 19.

Abstract

Both an increased frequency of chromosome missegregation (chromosomal instability, CIN) and the presence of an abnormal complement of chromosomes (aneuploidy) are hallmarks of cancer. To better understand how cells are able to adapt to high levels of chromosomal instability, we previously examined yeast cells that were deleted of the gene BIR1, a member of the chromosomal passenger complex (CPC). We found bir1Δ cells quickly adapted by acquiring specific combinations of beneficial aneuploidies. In this study, we monitored these yeast strains for longer periods of time to determine how cells adapt to high levels of both CIN and aneuploidy in the long term. We identify suppressor mutations that mitigate the chromosome missegregation phenotype. The mutated proteins fall into four main categories: outer kinetochore subunits, the SCF ubiquitin ligase complex, the mitotic kinase Mps1, and the CPC itself. The identified suppressor mutations functioned by reducing chromosomal instability rather than alleviating the negative effects of aneuploidy. Following the accumulation of suppressor point mutations, the number of beneficial aneuploidies decreased. These experiments demonstrate a time line of adaptation to high rates of CIN.

摘要

染色体错误分离(染色体不稳定性,CIN)频率的增加和染色体异常(非整倍体)的存在是癌症的标志。为了更好地理解细胞如何适应高水平的染色体不稳定性,我们之前研究了缺失基因 BIR1 的酵母细胞,BIR1 是染色体乘客复合物(CPC)的成员。我们发现 bir1Δ 细胞通过获得有益的非整倍体的特定组合,迅速适应。在这项研究中,我们监测了这些酵母菌株更长的时间,以确定细胞如何长期适应高水平的 CIN 和非整倍体。我们确定了减轻染色体错误分离表型的抑制突变。突变蛋白分为四大类:外着丝粒亚基、SCF 泛素连接酶复合物、有丝分裂激酶 Mps1 和 CPC 本身。鉴定出的抑制突变通过降低染色体不稳定性而不是减轻非整倍体的负面影响起作用。在积累抑制点突变后,有益的非整倍体数量减少。这些实验表明了对高 CIN 率的适应时间线。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0ea/10106982/f0faf3f4149c/EMBJ-42-e111500-g007.jpg

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