1.Identification of Outer Membrane Vesicles Derived from Orientia tsutsugamushi.
Sun Myoung LEE ; Hea Yoon KWON ; Jae Hyong IM ; Ji Hyeon BAEK ; Jae Seung KANG ; Jin Soo LEE
Journal of Korean Medical Science 2015;30(7):866-870
Orientia tsutsugamushi, a causative pathogen of Scrub typhus, is a gram-negative intracellular bacterium. Outer membrane vesicles (OMVs) are produced from the membrane of bacteria and play many roles related to the survival of the pathogen. However, there have been no reports confirming whether O. tsutsugamushi indeed produce OMVs. O. tsutsugamushi boryong was cultured in ECV-304 cells for the purification of OMVs. Western blot analysis and immunoenrichment using anti-O. tsutsugamushi monoclonal antibody and electron microscopy were employed for identification and characterization of OMVs. We confirm the presence of OMVs derived from O. tsutsugamushi, and also found that those OMVs contain a major surface antigen of 56-kDa protein and variant immunogenic antigens.
Antibodies, Monoclonal/*immunology
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Antigens, Bacterial/*immunology
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Antigens, Surface/*immunology
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Cell Line
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Cell Membrane/immunology
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Humans
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Microscopy, Electron
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Orientia tsutsugamushi/*immunology/metabolism
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Scrub Typhus/diagnosis/microbiology
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Secretory Vesicles/*immunology
2.beta PAK-interacting exchange factor may regulate actin cytoskeleton through interaction with actin.
Chan Soo LEE ; Kyung Yong KIM ; Jae Bin IM ; Jae Woon CHOI ; Hyong Kyu KIM ; Jeong Soo PARK ; Eun Young SHIN ; Seung Ryul KIM ; Eung Gook KIM
Experimental & Molecular Medicine 2004;36(6):582-587
p21-activated kinase (PAK)-interacting exchange factor (PIX) is known to be involved in regulation of Cdc42/Rac GTPases and PAK activity. PIX binds to the proline-rich region of PAK, and regulates biological events through activation of Cdc42/Rac GTPase. To further investigate the role of PIX we produced monoclonal antibodies (Mab) against beta PAK. Three clones; N-C6 against N-terminal half and C-A3 and C-B7 against C- terminal half of beta PAK were generated and characterized. N-C6 Mab detected beta PAK as a major band in most cell lines. C-A3 Mab recognizes GIT-binding domain (GBD), but it does not interfere with GIT binding to beta PAK. Using C-A3 Mab possible beta PAK interaction with actin in PC12 cells was examined. beta PAK Mab (C-A3) specifically precipitated actin of the PC12 cell lysates whereas actin Mab failed to immunoprecpitate beta PAK. Co-sedimentation of PC12 cell lysates with the polymerized F-actin resulted in the recovery of most of beta PAK in the cell lysates. These results suggest that beta PAK may not interact with soluble actin but with polymerized F-actin and revealed that beta PAK constitutes a functional complex with actin. These data indicate real usefulness of the beta PAK Mab in the study of beta PAK role(s) in regulation of actin cyoskeleton.
Actins/*metabolism
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Animals
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Antibodies, Monoclonal/immunology
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Cell Cycle Proteins/immunology/metabolism/*physiology
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Cell Line, Tumor
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Cytoskeletal Proteins/metabolism
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Epitope Mapping
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Guanine Nucleotide Exchange Factors/immunology/metabolism/*physiology
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Immunoprecipitation
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Mice
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Microfilaments/*physiology
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Protein Structure, Tertiary
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Rats
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Research Support, Non-U.S. Gov't