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Structure of Mycobacterium smegmatis Eis in complex with paromomycin

Authors
Kim, Kyoung HoonAn, Doo RiYoon, Hye JinYang, Jin KukSuh, Se Won
Issue Date
Sep-2014
Publisher
WILEY-BLACKWELL
Keywords
aminoglycoside; drug resistance; Mycobacterium smegmatis; Mycobacterium tuberculosis; paromomycin; tobramycin; tuberculosis
Citation
ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY AND CRYSTALLIZATION COMMUNICATIONS, v.70, pp.1173 - 1179
Journal Title
ACTA CRYSTALLOGRAPHICA SECTION F-STRUCTURAL BIOLOGY AND CRYSTALLIZATION COMMUNICATIONS
Volume
70
Start Page
1173
End Page
1179
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/9947
DOI
10.1107/S2053230X14017385
ISSN
1744-3091
Abstract
The Rv2416c gene of Mycobacterium tuberculosis (Mtb) encodes the enhanced intracellular survival (Eis) protein that enhances intracellular survival of the pathogen in host macrophages during infection. The Mtb Eis protein is released into the cytoplasm of the phagocyte during intracellular infection and modulates the host immune response. It also contributes to drug resistance by acetylating multiple amine groups of aminoglycosides. Interestingly, the nonpathogenic M. smegmatis (Msm) contains a homologous eis gene (MSMEG_3513). The overall structures of Mtb Eis and Msm Eis are highly similar to each other, reflecting the high level (58%) of amino-acid sequence identity between them. Both Mtb Eis and Msm Eis are active as aminoglycoside acetyltransferases, while only Mtb Eis functions as an N-epsilon-acetyltransferase to acetylate Lys55 of dual-specificity protein phosphatase 16 (DUSP16)/mitogen-activated protein kinase phosphatase 7 (MKP-7), leading to the suppression of host immune responses. Here, the crystal structure of Msm Eis in the paromomycin-bound form is reported, revealing detailed interactions between an aminoglycoside antibiotic and Msm Eis. The crystal structure of Msm Eis in the paromomycinbound form has been determined at 3.3 angstrom resolution. This work provides potentially useful information for structure-guided discovery of Eis inhibitors as a novel antituberculosis drug against drug-resistant Mtb.
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