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Structure and Function of the Autolysin SagA in the Type IV Secretion System of Brucella abortus.


ABSTRACT: A recent genetic study with Brucella abortus revealed the secretion activator gene A (SagA) as an autolysin component creating pores in the peptidoglycan (PGN) layer for the type IV secretion system (T4SS) and peptidoglycan hydrolase inhibitor A (PhiA) as an inhibitor of SagA. In this study, we determined the crystal structures of both SagA and PhiA. Notably, the SagA structure contained a PGN fragment in a space between the N- and C-terminal domains, showing the substrate-dependent hinge motion of the domains. The purified SagA fully hydrolyzed the meso-diaminopimelic acid (DAP)-type PGN, showing a higher activity than hen egg-white lysozyme. The PhiA protein exhibiting tetrameric assembly failed to inhibit SagA activity in our experiments. Our findings provide implications for the molecular basis of the SagA-PhiA system of B. abortus. The development of inhibitors of SagA would further contribute to controlling brucellosis by attenuating the function of T4SS, the major virulence factor of Brucella.

SUBMITTER: Hyun Y 

PROVIDER: S-EPMC8334348 | biostudies-literature | 2021 Jul

REPOSITORIES: biostudies-literature

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Structure and Function of the Autolysin SagA in the Type IV Secretion System of <i>Brucella abortus</i>.

Hyun Yongseong Y   Baek Yeongjin Y   Lee Chanyoung C   Ki Nayeon N   Ahn Jinsook J   Ryu Sangryeol S   Ha Nam-Chul NC  

Molecules and cells 20210701 7


A recent genetic study with <i>Brucella abortus</i> revealed the secretion activator gene A (SagA) as an autolysin component creating pores in the peptidoglycan (PGN) layer for the type IV secretion system (T4SS) and peptidoglycan hydrolase inhibitor A (PhiA) as an inhibitor of SagA. In this study, we determined the crystal structures of both SagA and PhiA. Notably, the SagA structure contained a PGN fragment in a space between the N- and C-terminal domains, showing the substrate-dependent hinge  ...[more]

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