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Out-of-frame start codons prevent translation of truncated nucleo-cytosolic cathepsin Lin vivo

机译:框外起始密码子可在体内阻止截短的核糖胞蛋白酶L 的翻译

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The lysosomal protease cathepsin L has been reported to cleave various functionally important cytosolic or nuclear proteins. To explain nucleo-cytosolic localization of cathepsin L , it has been hypothesized that skipping of the first start codon during translation initiation results in an N-terminally truncated protein lacking the endoplasmic reticulum-import signal. Here we demonstrate that out-of-frame AUGs prevent translation of truncated cathepsin L in cell culture as well as in a new knock-in mouse model. We further evaluate potential roles of nuclear cathepsin L during early embryonic development. Our analysis reveals normal epiblast development of cathepsin L -deficient embryos, but uncovers a pronounced lysosomal storage phenotype in the extra-embryonic tissue of the visceral endoderm. In conclusion, the phenotypes of cathepsin L deficiency can be fully assigned to lack of canonically targeted cathepsin L , while the biogenesis and functionality of nucleo-cytosolic cathepsin L remain elusive.
机译:据报道,溶酶体蛋白酶组织蛋白酶L可裂解各种功能重要的胞质或核蛋白。为了解释组织蛋白酶L的胞质定位,已经假设在翻译起始过程中跳过第一个起始密码子会导致N末端截短的蛋白缺少内质网导入信号。在这里,我们证明框架外AUG可以阻止细胞培养以及新的敲入小鼠模型中组织蛋白酶L的翻译。我们进一步评估早期胚胎发育过程中核组织蛋白酶L的潜在作用。我们的分析揭示了组织蛋白酶L缺陷型胚胎的正常外胚层发育,但在内脏内胚层的胚外组织中发现了明显的溶酶体贮藏表型。总之,组织蛋白酶L缺乏症的表型可以完全归因于缺乏典型的靶向组织蛋白酶L,而核胞质组织蛋白酶L的生物发生和功能仍然难以捉摸。

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