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The Salmonella effector PipB2 affects late endosome/lysosome distribution to mediate sif extension

机译:沙门氏菌效应物PipB2影响晚期内体/溶酶体分布以介导sif延伸

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摘要

After internalization into mammalian cells, the bacterial pathogen Salmonella enterica resides within a membrane-bound compartment, the Salmonella-containing vacuole (SCV). During its maturation process, the SCV interacts extensively with host cell endocytic compartments, especially late endosomes/lysosomes (LE/Lys) at later stages. These interactions are mediated by the activities of multiple bacterial and host cell proteins. Here, we show that the Salmonella type III effector PipB2 reorganizes LE/Lys compartments in mammalian cells. This activity results in the centrifugal extension of lysosomal glycoprotein-rich membrane tubules, known as Salmonella-induced filaments, away from the SCV along microtubules. Salmonella overexpressing pipB2 induce the peripheral accumulation of LE/Lys compartments, reducing the frequency of LE/Lys tubulation. Furthermore, ectopic expression of pipB2 redistributes LE/Lys, but not other cellular organelles, to the cell periphery. In coexpression studies, PipB2 can overcome the effects of dominant-active Rab7 or Rab34 on LE/Lys positioning. Deletion of a C-terminal pentapeptide motif of PipB2, LFNEF, prevents its peripheral targeting and effect on organelle positioning. The PipB2 homologue PipB does not possess this motif or the same biological activity as PipB2. Therefore, it seems that a divergence in the biological functions of these two effectors can be accounted for by sequence divergence in their C termini.
机译:内化进入哺乳动物细胞后,细菌病原体小肠沙门氏菌驻留在膜结合的隔室内,即含沙门氏菌的液泡(SCV)。在其成熟过程中,SCV与宿主细胞内吞区室(尤其是后期的内体/溶酶体(LE / Lys))在后期广泛地相互作用。这些相互作用是由多种细菌和宿主细胞蛋白的活性介导的。在这里,我们显示沙门氏菌III型效应子PipB2重组了哺乳动物细胞中的LE / Lys间隔。这种活性导致富含溶酶体糖蛋白的膜小管(称为沙门氏菌诱导的细丝)沿着微管从离心分离延伸。沙门氏菌过表达的pipB2诱导LE / Lys隔室的周围积累,从而降低LE / Lys输卵管的频率。此外,pipB2的异位表达将LE / Lys(而非其他细胞器)重新分布到细胞周围。在共表达研究中,PipB2可以克服显性活性Rab7或Rab34对LE / Lys定位的影响。 PipB2的C端五肽基序(LFNEF)的缺失会阻止其外围靶向和对细胞器定位的影响。 PipB2同源物PipB不具有此基序或与PipB2相同的生物活性。因此,似乎这两个效应子在生物学功能上的差异可以通过其C末端的序列差异来解释。

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