A secreted endosymbiont protein essential for colonizing host cells

Секретируемый белок эндосимбионта, необходимый для колонизации клеток хозяина
Nancy A. Moran, Thomas E. Smith, Gerald P. Maeda, Allen Z. Xue, Ethan W. Yu, Aadhunik Sundar, J. Elijah Powell, Nancy A. Moran
2025-12-01

Buchnera endosymbiontSyeAactin polymerization / Rho1host cell colonizationsecreted effector
ABSTRACT Intracellular bacterial symbioses have arisen myriad times in eukaryotes, with dozens known from insects alone 1,2 . Beginning with Buchnera , the obligate endosymbiont of aphids, genomes of endosymbionts have illuminated their evolutionary origins and metabolic contributions to hosts 3,4 . However, the mechanisms by which nonculturable endosymbionts enter host cells and suppress cellular immune processes have remained unknown. We show that an uncharacterized Buchnera protein, here designated SyeA, was present in the Buchnera ancestor, is secreted and homologous to secreted effectors of bacterial pathogens and is essential for Buchnera transmission. Buchnera is transmitted via expulsion from specialized maternal cells and uptake by embryos 5 . Using immunofluorescence microscopy, we found that SyeA levels peak upon colonization, accompanied by actin accumulation at the entry site. SyeA localizes outside the host-derived membrane and actin layer surrounding each Buchnera cell and colocalizes in host cytoplasm with Rho1, which regulates actin polymerization. syeA knockdown disrupts colonization and embryonic development and elevates lysosomal activity, leading to Buchnera destruction 6 . Our findings provide rare insight into how an anciently associated, mutualistic endosymbiont achieves its intracellular existence. SyeA is a vestige of pathogenic origins followed by evolution of increased host control and erosion of the original, more complex pathogenicity machinery.
1
Buchnera encodes an uncharacterized, secreted protein designated SyeA that was present in the Buchnera ancestor and is homologous to secreted effectors of bacterial pathogens.
2
Loss of SyeA elevates lysosomal activity, leading to Buchnera destruction, implying SyeA suppresses host cellular immune processes during entry.
3
SyeA is essential for Buchnera transmission: syeA knockdown disrupts colonization and embryonic development.
4
SyeA levels peak during host cell colonization and are associated with actin accumulation at the bacterial entry site.
5
SyeA localizes outside the host-derived membrane and actin layer surrounding each Buchnera cell and colocalizes in host cytoplasm with Rho1, a regulator of actin polymerization.
6
SyeA represents a vestige of pathogenic origins, indicating evolution from pathogenic effectors toward mutualistic host control with erosion of other pathogenicity machinery.

Buchnera endosymbiont protein SyeA

SyeA's role in host-cell colonization, including secretion/localization, interaction with host actin/Rho1, necessity for transmission, and effects on lysosomal activity and embryonic development

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2025-12-01
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Nancy A. Moran
Thomas E. Smith
Gerald P. Maeda
Allen Z. Xue
Ethan W. Yu
Aadhunik Sundar
J. Elijah Powell
Nancy A. Moran
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