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通过邻近标记鉴定的高尔基相关蛋白的特性和功能分析。

Characterization and functional analysis of Golgi-associated proteins identified by proximity labeling.

机构信息

Molecular Biology Institute, University of California, Los Angeles, California, USA.

Department of Microbiology, Immunology, and Molecular Genetics, University of California, Los Angeles, California, USA.

出版信息

mBio. 2024 Nov 13;15(11):e0238024. doi: 10.1128/mbio.02380-24. Epub 2024 Sep 30.

Abstract

UNLABELLED

possesses a highly polarized secretory pathway that contains both broadly conserved eukaryotic organelles and unique apicomplexan organelles, which play essential roles in the parasite's lytic cycle. As in other eukaryotes, the Golgi apparatus sorts and modifies proteins prior to their distribution to downstream organelles. Many of the typical trafficking factors found involved in these processes are missing from apicomplexan genomes, suggesting that these parasites have evolved unique proteins to fill these roles. Here, we identify a Golgi-localizing protein (ULP1), which is structurally similar to the eukaryotic trafficking factor p115/Uso1. We demonstrate that depletion of ULP1 leads to a dramatic reduction in parasite fitness that is the result of defects in microneme secretion, invasion, replication, and egress. Using ULP1 as bait for TurboID proximity labeling and immunoprecipitation, we identify 11 more Golgi-associated proteins and demonstrate that ULP1 interacts with the -conserved oligomeric Golgi (COG) complex. These proteins include both conserved trafficking factors and parasite-specific proteins. Using a conditional knockdown approach, we assess the effect of each of these 11 proteins on parasite fitness. Together, this work reveals a diverse set of Golgi-associated proteins that play distinct roles in the secretory pathway. As several of these proteins are absent outside of the Apicomplexa, they represent potential targets for the development of novel therapeutics against these parasites.

IMPORTANCE

Apicomplexan parasites such as infect a large percentage of the world's population and cause substantial human disease. These widespread pathogens use specialized secretory organelles to infect their host cells, modulate host cell functions, and cause disease. While the functions of the secretory organelles are now better understood, the Golgi apparatus of the parasite remains largely unexplored, particularly regarding parasite-specific innovations that may help direct traffic intracellularly. In this work, we characterize ULP1, a protein that is unique to parasites but shares structural similarity to the eukaryotic trafficking factor p115/Uso1. We show that ULP1 plays an important role in parasite fitness and demonstrate that it interacts with the conserved oligomeric Golgi (COG) complex. We then use ULP1 proximity labeling to identify 11 additional Golgi-associated proteins, which we functionally analyze via conditional knockdown. This work expands our knowledge of the Golgi apparatus and identifies potential targets for therapeutic intervention.

摘要

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拥有一个高度极化的分泌途径,其中包含广泛保守的真核细胞器和独特的顶复门细胞器,这些细胞器在寄生虫的裂解周期中起着至关重要的作用。与其他真核生物一样,高尔基体在蛋白质分配到下游细胞器之前对其进行分类和修饰。在顶复门生物的基因组中发现了许多参与这些过程的典型运输因子缺失,这表明这些寄生虫已经进化出独特的蛋白质来填补这些角色。在这里,我们鉴定了一种高尔基体定位蛋白(ULP1),它的结构类似于真核运输因子 p115/Uso1。我们证明,ULP1 的耗尽会导致寄生虫适应性显著降低,这是由于微线体分泌、入侵、复制和逸出缺陷所致。使用 ULP1 作为 TurboID 邻近标记和免疫沉淀的诱饵,我们鉴定了 11 种更多的高尔基体相关蛋白,并证明 ULP1 与 -保守的寡聚高尔基体(COG)复合物相互作用。这些蛋白包括保守的运输因子和寄生虫特异性蛋白。使用条件性敲低方法,我们评估了这 11 种蛋白中的每一种对寄生虫适应性的影响。总的来说,这项工作揭示了一组多样化的高尔基体相关蛋白,它们在分泌途径中发挥着不同的作用。由于其中一些蛋白在顶复门生物之外不存在,因此它们代表了针对这些寄生虫开发新型治疗方法的潜在靶点。

重要性

等顶复门寄生虫感染了世界上很大一部分人口,并导致了大量的人类疾病。这些广泛存在的病原体利用专门的分泌细胞器感染宿主细胞,调节宿主细胞功能,并引起疾病。尽管分泌细胞器的功能现在已经得到更好的理解,但寄生虫的高尔基体仍然在很大程度上未被探索,特别是关于可能有助于指导细胞内运输的寄生虫特异性创新。在这项工作中,我们描述了 ULP1,一种独特于寄生虫但与真核运输因子 p115/Uso1 具有结构相似性的蛋白。我们表明 ULP1 在寄生虫适应性中起着重要作用,并证明它与保守的寡聚高尔基体(COG)复合物相互作用。然后,我们使用 ULP1 邻近标记来鉴定 11 种额外的高尔基体相关蛋白,并通过条件性敲低来对其进行功能分析。这项工作扩展了我们对 高尔基体的认识,并确定了潜在的治疗干预靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af5a/11559087/2b9421f9b692/mbio.02380-24.f001.jpg

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