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The ABCF gene family facilitates disaggregation during animal development

机译:ABCF基因家族促进动物发展期间的分解

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Protein aggregation, once believed to be a harbinger and/or consequence of stress, age, and pathological conditions, is emerging as a novel concept in cellular regulation. Normal versus pathological aggregation may be distinguished by the capacity of cells to regulate the formation, modification, and dissolution of aggregates. We find that Caenorhabditis elegans aggregates are observed in large cells/blastomeres (oocytes, embryos) and in smaller, further differentiated cells (primordial germ cells), and their analysis using cell biological and genetic tools is straightforward. These observations are consistent with the hypothesis that aggregates are involved in normal development. Using cross-platform analysis in Saccharomyces cerevisiae, C. elegans, and Xenopus laevis, we present studies identifying a novel disaggregase family encoded by animal genomes and expressed embryonically. Our initial analysis of yeast Arb1/Abcf2 in disaggregation and animal ABCF proteins in embryogenesis is consistent with the possibility that members of the ABCF gene family may encode disaggregases needed for aggregate processing during the earliest stages of animal development.
机译:蛋白质聚集,曾经被认为是胰头植物,或应激,年龄和病理条件的后果,作为细胞调节的新概念。可以通过细胞的能力来区分正常的病理聚集来调节聚集体的形成,改性和溶解。我们发现,在大细胞/卵泡(卵母细胞,胚胎)和较小的进一步分化细胞(原始生殖细胞)中观察到Caenorhabditis elegbars骨料,并使用细胞生物和遗传工具的分析是简单的。这些观察结果与聚集体涉及正常发展的假设一致。在酿酒酵母中使用跨平台分析,C.秀丽隐杆线和Xenopus Laevis,我们展示了鉴定动物基因组织编码的新型分类族家族并表达胚胎的研究。我们对胚胎发生中的酵母ARB1 / ABCF2的初步分析胚胎发生中的ABCF蛋白质是一致的,即ABCF基因家族的成员可以编码在动物发育最早阶段期间聚集过程所需的分解酶。

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