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Mutations in mxc Tumor-Suppressor Gene Induce Chromosome Instability in Drosophila Male Meiosis

机译:MXC肿瘤抑制基因的突变诱导果蝇中的染色体不稳定性

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Drosophila Mxc protein is a component of the histone locus body (HLB), which is required for the expression of canonical histone genes, and severe mxc mutations generate tumors in larval hematopoietic tissues. A common characteristic of cancer cells is chromosomal instability (CIN), but whether mxc mutants exhibit this feature is unknown. Here, examination of post-meiotic spermatids created after male meiosis revealed that a fraction of the spermatids in hypomorphic mxcG46 mutants contained extra micronuclei or abnormally sized nuclei, corresponding to CIN. Moreover, we observed that the so-called lagging chromosomes retained between chromosomal masses separated toward spindle poles at telophase I. Time-lapse recordings show that micronuclei were generated from lagging chromosomes, and the abnormal chromosomes in mxcG46 mutants lacked centromeres. In normal spermatocyte nuclei, the HLB component FLASH colocalized with Mxc, whereas FLASH was dispersed in mxcG46 spermatocyte nuclei. Furthermore, we observed genetic interactions between Mxc and other HLB components in meiotic chromosome segregation, which suggests that inhibition of HLB formation is responsible for aberrant chromosome segregation in mxcG46. Quantitative real-time PCR revealed that canonical histone mRNA levels were decreased in mxcG46. Lastly, similar meiotic phenotypes appeared in the spermatids of histone H4 mutants and in the spermatids in testes depleted for chromosome-construction factors. Considering these genetic data, we propose that abnormal chromosome segregation leading to CIN development results from a loss of chromosome integrity caused by diminished canonical histone levels in mxc mutants.
机译:果蝇MXC蛋白是组蛋白基因座体(HLB)的组分,这是表达规范组蛋白基因的表达,并且严重的MXC突变在幼虫造血组织中产生肿瘤。癌细胞的常见特征是染色体不稳定性(CIN),但MXC突变体是否表现出该特征是未知的。在这里,在雄性减数症后产生的减少人生精子的检查表明,低晶体MXCG46突变体中的分数含有额外的微核或异常大小的核,对应于CIN。此外,我们观察到,在Telophase I的染色体质量之间保留的所谓的滞后染色体在Telophase I中分离出脊柱杆。延迟记录显示微核从滞后染色体产生,并且MXCG46突变体中的异常染色体缺乏焦点。在正常的精子细胞核中,HLB分量闪存与MXC分致,而闪光分散在MXCG46精子细胞核中。此外,我们观察了MXC和其他HLB组分之间的遗传相互作用在减数分子染色体偏析中,表明HLB形成的抑制是MXCG46中异常染色体偏析的原因。定量实时PCR显示,MXCG46中规范组蛋白mRNA水平降低。最后,在组蛋白H4突变体的精子中出现了类似的减少体表型,并且在染色体施工因子耗尽的睾丸中的精子中出现。考虑到这些遗传数据,我们提出了由于MXC突变体中的规范组蛋白水平减少而导致的染色体完整性丧失,导致CIN开发的异常染色体隔离。

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