首页> 外文期刊>G3: Genes, Genomes, Genetics >Loss of a 20S Proteasome Activator in Saccharomyces cerevisiae Downregulates Genes Important for Genomic Integrity, Increases DNA Damage, and Selectively Sensitizes Cells to Agents With Diverse Mechanisms of Action
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Loss of a 20S Proteasome Activator in Saccharomyces cerevisiae Downregulates Genes Important for Genomic Integrity, Increases DNA Damage, and Selectively Sensitizes Cells to Agents With Diverse Mechanisms of Action

机译:啤酒酵母中20S蛋白酶体激活剂的缺失下调了基因组完整性重要的基因,增加了DNA损伤,并选择性地使细胞对具有多种作用机制的药物敏感

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pCytoprotective functions of a 20S proteasome activator were investigated. iSaccharomyces cerevisiae/iBlm10 and human 20S proteasome activator 200 (PA200) are homologs. Comparative genome-wide analyses of untreated diploid cells lacking Blm10 and growing at steady state at defined growth rates revealed downregulation of numerous genes required for accurate chromosome structure, assembly and repair, and upregulation of a specific subset of genes encoding protein-folding chaperones. Blm10 loss or truncation of the Ubp3/Blm3 deubiquitinating enzyme caused massive chromosomal damage and cell death in homozygous diploids after phleomycin treatments, indicating that Blm10 and Ubp3/Blm3 function to stabilize the genome and protect against cell death. Diploids lacking Blm10 also were sensitized to doxorubicin, hydroxyurea, 5-fluorouracil, rapamycin, hydrogen peroxide, methyl methanesulfonate, and calcofluor. Fluorescently tagged Blm10 localized in nuclei, with enhanced fluorescence after DNA replication. After DNA damage that caused a classic G2/M arrest, fluorescence remained diffuse, with evidence of nuclear fragmentation in some cells. Protective functions of Blm10 did not require the carboxyl-terminal region that makes close contact with 20S proteasomes, indicating that protection does not require this contact or the truncated Blm10 can interact with the proteasome apart from this region. Without its carboxyl-terminus, Blm10sub(a?’339aa)/sub localized to nuclei in untreated, nonproliferating (Gsub0/sub) cells, but not during Gsub1/sub S, Gsub2/sub, and M. The results indicate Blm10 functions in protective mechanisms that include the machinery that assures proper assembly of chromosomes. These essential guardian functions have implications for ubiquitin-independent targeting in anticancer therapy. Targeting Blm10/PA200 together with one or more of the upregulated chaperones or a conventional treatment could be efficacious./p
机译:研究了20S蛋白酶体活化剂的细胞保护功能。酿酒酵母Blm10和人20S蛋白酶体活化剂200(PA200)是同源物。对未经处理的二倍体细胞缺乏Blm10并在确定的生长速率下稳定生长的全基因组比较分析表明,精确染色体结构,组装和修复所需的许多基因下调,而编码蛋白质折叠伴侣的特定基因子集上调。 Blph10丢失或截断Ubp3 / Blm3去泛素化酶后,经过纯霉素二倍体处理后,造成了巨大的染色体损伤和细胞死亡,表明Blm10和Ubp3 / Blm3起到稳定基因组和防止细胞死亡的作用。缺乏Blm10的二倍体也对阿霉素,羟基脲,5-氟尿嘧啶,雷帕霉素,过氧化氢,甲磺酸甲酯和氟化钙致敏。荧光标记的Blm10位于细胞核中,DNA复制后荧光增强。 DNA损伤导致经典的G2 / M阻滞后,荧光仍然弥漫,某些细胞核破裂。 Blm10的保护功能不需要与20S蛋白酶体紧密接触的羧基末端区域,这表明保护不需要此接触,或者截短的Blm10可以与蛋白酶体相互作用,而该区域除外。没有其羧基末端,Blm10 (a?'339aa)在未经处理的,未增殖的(G 0 )细胞中定位于细胞核,但在G 1 期间不存在。 sub> S,G 2 和M。结果表明Blm10在保护机制中起作用,其中包括确保染色体正确装配的机制。这些基本的监护功能对抗癌治疗中非泛素依赖性靶向具有影响。将Blm10 / PA200与一种或多种上调的伴侣蛋白一起靶向或常规治疗可能是有效的。

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