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Genetic analysis of sorting nexins 1 and 2 reveals a redundant and essential function in mice

机译:排序神经毒素1和2的遗传分析揭示了小鼠的多余和基本功能

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Sorting nexins 1 (Snx1) and 2 (Snx2) are homologues of the yeast gene VPS5 that is required for proper endosome-to-Golgi trafficking. The prevailing thought is that Vps5p is a component of a retrograde trafficking complex called the retromer. Genetic and biochemical evidence suggest mammals may have similar complexes, but their biological role is unknown. Furthermore, if SNX1 and SNX2 belong to such complexes, it is not known whether they act together or separately. Herein, we show that mice lacking SNX1 or SNX2 are viable and fertile, whereas embryos deficient in both proteins arrest at midgestation. These results demonstrate that SNX1 and SNX2 have a highly redundant and necessary function in the mouse. The phenotype of Snx1(-/-);Snx2(-/-) embryos is very similar to that of embryos lacking another retromer homologue, Hbeta58. This finding suggests that SNX1/SNX2 and Hbeta58 function in the same genetic pathway, providing additional evidence for the existence of mammalian complexes that are structurally similar to the yeast retromer. Furthermore, the viability of Snxl(-/-) and Snx2(-/-) mice demonstrates that it is not necessary for SNX1 and SNX2 to act together. Electron microscopy indicates morphological alterations of apical intracellular compartments in the Snx1(-/-); Snx2(-/-) yolk-sac visceral endoderm, suggesting SNX1 and SNX2 may be required for proper cellular trafficking. However, tetraploid aggregation experiments suggest that yolk sac defects cannot fully account for Snx1(-/-); Snx2(-/-) embryonic lethality. Furthermore, endocytosis of transferrin and low-density lipoprotein is unaffected in mutant primary embryonic fibroblasts, indicating that SNX1 and SNX2 are not essential for endocytosis in all cells. Although the two proteins demonstrate functional redundancy, Snx2(-/-);Snx2(-/-) mice display abnormalities not observed in Snx1(-/-);Snx2(-/-) mice, revealing that SNX1 and SNX2, or their genetic regulation, are not equivalent. Significantly, these studies represent the first mutations in the mammalian sorting nexin gene family and indicate that sorting nexins perform essential functions in mammals. [References: 36]
机译:排序nexins 1(Snx1)和2(Snx2)是正确的内体向高尔基体贩运所必需的酵母基因VPS5的同源物。普遍认为,Vps5p是称为逆转录子的逆转录贩运综合体的组成部分。遗传和生化证据表明,哺乳动物可能具有类似的复合体,但其生物学作用尚不清楚。此外,如果SNX1和SNX2属于此类复合体,则不知道它们是一起起作用还是单独起作用。在这里,我们表明,缺少SNX1或SNX2的小鼠是有活力的,并且能繁殖,而缺乏这两种蛋白的胚胎会在妊娠中期停滞。这些结果表明,SNX1和SNX2在鼠标中具有高度冗余和必要的功能。 Snx1(-/-); Snx2(-/-)胚胎的表型与缺乏另一种同源异构体Hbeta58的胚胎的表型非常相似。这一发现表明,SNX1 / SNX2和Hbeta58在相同的遗传途径中发挥作用,为存在与酵母改良剂结构相似的哺乳动物复合物提供了更多证据。此外,Snxl(-/-)和Snx2(-/-)小鼠的生存能力表明SNX1和SNX2不必共同行动。电子显微镜显示Snx1(-/-)中的顶端细胞内区室的形态学改变; Snx2(-/-)卵黄囊内脏内胚层,表明适当的细胞运输可能需要SNX1和SNX2。然而,四倍体聚集实验表明卵黄囊缺损不能完全解决Snx1(-/-)。 Snx2(-/-)胚胎致死率。此外,转铁蛋白和低密度脂蛋白的内吞作用在突变的初级胚胎成纤维细胞中不受影响,这表明SNX1和SNX2并不是所有细胞内吞作用必不可少的。尽管这两种蛋白显示出功能冗余,但Snx2(-/-); Snx2(-/-)小鼠显示出在Snx1(-/-); Snx2(-/-)小鼠中未观察到的异常,表明SNX1和SNX2或它们的基因调节,并不等同。重要的是,这些研究代表了哺乳动物分选nexin基因家族中的第一个突变,并表明分选nexin在哺乳动物中起着重要的作用。 [参考:36]

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