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沃罗宁体搭乘早期内涵体并不需要在 中进行隔膜定位。

Woronin body hitchhiking on early endosomes is dispensable for septal localization in .

机构信息

Department of Cell and Developmental Biology, University of California, San Diego, La Jolla, CA 92093.

Department of Cellular and Molecular Medicine, University of California, San Diego, La Jolla, CA 92093.

出版信息

Mol Biol Cell. 2023 Jun 1;34(7):br9. doi: 10.1091/mbc.E23-01-0025. Epub 2023 Apr 5.

Abstract

The proper functioning of organelles depends on their intracellular localization, mediated by motor protein-dependent transport on cytoskeletal tracks. Rather than directly associating with a motor protein, peroxisomes move by hitchhiking on motile early endosomes in the filamentous fungus . However, the physiological role of peroxisome hitchhiking is unclear. Peroxisome hitchhiking requires the protein PxdA, which is conserved within the fungal subphylum Pezizomycotina but absent from other fungal clades. Woronin bodies are specialized peroxisomes that are also unique to the Pezizomycotina. In these fungi, multinucleate hyphal segments are separated by incomplete cell walls called septa that possess a central pore enabling cytoplasmic exchange. Upon damage to a hyphal segment, Woronin bodies plug septal pores to prevent widespread leakage. Here, we tested whether peroxisome hitchhiking is important for Woronin body motility, distribution, and function in . We show that Woronin body proteins are present within all motile peroxisomes and hitchhike on PxdA-labeled early endosomes during bidirectional, long-distance movements. Loss of peroxisome hitchhiking significantly affected Woronin body distribution and motility in the cytoplasm, but Woronin body hitchhiking is ultimately dispensable for septal localization and plugging.

摘要

细胞器的正常功能依赖于其在细胞内的定位,这是通过依赖于马达蛋白的在细胞骨架轨道上的运输来介导的。而过氧化物酶体并不是直接与马达蛋白结合,而是通过搭乘丝状真菌中运动的早期内体的便车来移动。然而,过氧化物酶体搭乘的生理作用尚不清楚。过氧化物酶体搭乘需要蛋白 PxdA,该蛋白在真菌子囊菌亚门中保守,但在其他真菌类群中不存在。Woronin 体是专门的过氧化物酶体,也只存在于子囊菌亚门中。在这些真菌中,多核菌丝体段被称为隔膜的不完全细胞壁隔开,隔膜上有一个中心孔,允许细胞质交换。当菌丝体段受损时,Woronin 体堵塞隔膜孔以防止广泛泄漏。在这里,我们测试了过氧化物酶体搭乘是否对 中的 Woronin 体的运动、分布和功能很重要。我们表明,Woronin 体蛋白存在于所有运动的过氧化物酶体中,并在双向、长距离运动期间搭乘 PxdA 标记的早期内体。过氧化物酶体搭乘的缺失显著影响了细胞质中 Woronin 体的分布和运动,但 Woronin 体搭乘最终对于隔膜的定位和堵塞是可有可无的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ec2/10295486/bd34e7597b9b/mbc-34-br9-g001.jpg

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