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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Identification of a novel trafficking pathway exporting a replication protein, Orc2 to nucleus via classical secretory pathway in &ITPlasmodium falciparum&IT
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Identification of a novel trafficking pathway exporting a replication protein, Orc2 to nucleus via classical secretory pathway in &ITPlasmodium falciparum&IT

机译:通过经典的分泌途径和ItPlasmodium falciparum识别将复制蛋白的新型贩运途径出口复制蛋白,ORC2探测到核

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Malaria parasites use an extensive secretory pathway to traffic a number of proteins within itself and beyond. In higher eukaryotes, Endoplasmic Reticulum (ER) membrane bound transcription factors such as SREBP are reported to get processed en route and migrate to nucleus under the influence of specific cues. However, a protein constitutively trafficked to the nucleus via classical secretory pathway has not been reported. Herein, we report the presence of a novel trafficking pathway in an apicomplexan, Plasmodium falciparum where a homologue of an Origin Recognition Complex 2 (Orc2) goes to the nucleus following its association with the ER. Our work highlights the unconventional role of ER in protein trafficking and reports for the first time an ORC homologue getting trafficked through such a pathway to the nucleus where it may be involved in DNA replication and other ancillary functions. Such trafficking pathways may have a profound impact on the cell biology of a malaria parasite and have significant implications in strategizing new antimalarials.
机译:疟疾寄生虫使用广泛的分泌途径来交通许多蛋白质自身和超越。在较高的真核时,据报道,内质网(ER)膜结合转录因子如Srebp,以在特定提示的影响下被加工到途径和迁移到核。然而,尚未报道通过经典分泌途径被组成的蛋白质归于核心核心。在此,我们报告了APICOMPLANAN中新型贩运途径的存在,其中原始识别复合物2(ORC2)的同源物在其与ER相关后进入核。我们的工作突出了ER在蛋白质贩运中的非传统作用,并在第一次通过这种通向核的途径被贩运的兽人同源物中的报告中的报告中的报告中的报告。这种贩运途径可能对疟疾寄生虫的细胞生物学产生深远的影响,并且对战略抗疟药具有重大影响。

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