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Items: 38

1.

Persistent colonization of non-lymphoid tissue-resident macrophages by Stenotrophomonas maltophilia.

Takahashi I, Hosomi K, Nagatake T, Tobou H, Yamamoto D, Hayashi I, Kurashima Y, Sato S, Shibata N, Goto Y, Maruyama F, Nakagawa I, Kuwae A, Abe A, Kunisawa J, Kiyono H.

Int Immunol. 2019 Oct 20. pii: dxz071. doi: 10.1093/intimm/dxz071. [Epub ahead of print]

PMID:
31630178
2.

Bordetella bronchiseptica Bcr4 antagonizes the negative regulatory function of BspR via its role in type III secretion.

Nishimura R, Abe A, Sakuma Y, Kuwae A.

Microbiol Immunol. 2018 Dec;62(12):743-754. doi: 10.1111/1348-0421.12659. Epub 2018 Dec 14.

PMID:
30407657
3.

Tandem tyrosine phosphosites in the Enteropathogenic Escherichia coli chaperone CesT are required for differential type III effector translocation and virulence.

Runte CS, Jain U, Getz LJ, Secord S, Kuwae A, Abe A, LeBlanc JJ, Stadnyk AW, Kaper JB, Hansen AM, Thomas NA.

Mol Microbiol. 2018 Jun;108(5):536-550. doi: 10.1111/mmi.13948. Epub 2018 Mar 30.

PMID:
29509331
4.

Correction: BteA Secreted from the Bordetella bronchiseptica Type III Secetion System Induces Necrosis through an Actin Cytoskeleton Signaling Pathway and Inhibits Phagocytosis by Macrophages.

Kuwae A, Momose F, Nagamatsu K, Suyama Y, Abe A.

PLoS One. 2017 Jun 22;12(6):e0180287. doi: 10.1371/journal.pone.0180287. eCollection 2017.

5.

Bordetella effector BopN is translocated into host cells via its N-terminal residues.

Abe A, Nishimura R, Kuwae A.

Microbiol Immunol. 2017 Jun;61(6):206-214. doi: 10.1111/1348-0421.12489.

6.

Neisseria meningitidis Polynucleotide Phosphorylase Affects Aggregation, Adhesion, and Virulence.

Engman J, Negrea A, Sigurlásdóttir S, Geörg M, Eriksson J, Eriksson OS, Kuwae A, Sjölinder H, Jonsson AB.

Infect Immun. 2016 Apr 22;84(5):1501-1513. doi: 10.1128/IAI.01463-15. Print 2016 May.

7.

BteA Secreted from the Bordetella bronchiseptica Type III Secetion System Induces Necrosis through an Actin Cytoskeleton Signaling Pathway and Inhibits Phagocytosis by Macrophages.

Kuwae A, Momose F, Nagamatsu K, Suyama Y, Abe A.

PLoS One. 2016 Feb 1;11(2):e0148387. doi: 10.1371/journal.pone.0148387. eCollection 2016. Erratum in: PLoS One. 2017 Jun 22;12 (6):e0180287.

8.

Dynamic niche-specific adaptations in Neisseria meningitidis during infection.

Liu Y, Zhang D, Engström Å, Merényi G, Hagner M, Yang H, Kuwae A, Wan Y, Sjölinder M, Sjölinder H.

Microbes Infect. 2016 Feb;18(2):109-17. doi: 10.1016/j.micinf.2015.09.025. Epub 2015 Oct 19.

PMID:
26482500
9.
10.

Complete Genome Sequence of Bordetella bronchiseptica S798, an Isolate from a Pig with Atrophic Rhinitis.

Okada K, Ogura Y, Hayashi T, Abe A, Kuwae A, Horiguchi Y, Abe H.

Genome Announc. 2014 May 15;2(3). pii: e00436-14. doi: 10.1128/genomeA.00436-14.

11.

The type III secreted protein BspR regulates the virulence genes in Bordetella bronchiseptica.

Kurushima J, Kuwae A, Abe A.

PLoS One. 2012;7(6):e38925. doi: 10.1371/journal.pone.0038925. Epub 2012 Jun 11.

12.

Btc22 chaperone is required for secretion and stability of the type III secreted protein Bsp22 in Bordetella bronchiseptica.

Kurushima J, Kuwae A, Abe A.

FEMS Microbiol Lett. 2012 Jun;331(2):144-51. doi: 10.1111/j.1574-6968.2012.02561.x. Epub 2012 Apr 17.

13.

Iron starvation regulates the type III secretion system in Bordetella bronchiseptica.

Kurushima J, Kuwae A, Abe A.

Microbiol Immunol. 2012 Jun;56(6):356-62. doi: 10.1111/j.1348-0421.2012.00442.x.

14.

NafA negatively controls Neisseria meningitidis piliation.

Kuwae A, Sjölinder H, Eriksson J, Eriksson S, Chen Y, Jonsson AB.

PLoS One. 2011;6(7):e21749. doi: 10.1371/journal.pone.0021749. Epub 2011 Jul 1.

15.

Differential expression of type III effector BteA protein due to IS481 insertion in Bordetella pertussis.

Han HJ, Kuwae A, Abe A, Arakawa Y, Kamachi K.

PLoS One. 2011 Mar 10;6(3):e17797. doi: 10.1371/journal.pone.0017797.

16.

Bordetella evades the host immune system by inducing IL-10 through a type III effector, BopN.

Nagamatsu K, Kuwae A, Konaka T, Nagai S, Yoshida S, Eguchi M, Watanabe M, Mimuro H, Koyasu S, Abe A.

J Exp Med. 2009 Dec 21;206(13):3073-88. doi: 10.1084/jem.20090494. Epub 2009 Dec 14.

17.

[Functional analysis of proteins secreted via type III secretion system in Bordetella].

Kuwae A.

Nihon Saikingaku Zasshi. 2007 May;62(2):241-6. Review. Japanese. No abstract available.

18.

Assembly of the type III secretion apparatus of enteropathogenic Escherichia coli.

Ogino T, Ohno R, Sekiya K, Kuwae A, Matsuzawa T, Nonaka T, Fukuda H, Imajoh-Ohmi S, Abe A.

J Bacteriol. 2006 Apr;188(8):2801-11.

19.

BopC is a novel type III effector secreted by Bordetella bronchiseptica and has a critical role in type III-dependent necrotic cell death.

Kuwae A, Matsuzawa T, Ishikawa N, Abe H, Nonaka T, Fukuda H, Imajoh-Ohmi S, Abe A.

J Biol Chem. 2006 Mar 10;281(10):6589-600. Epub 2006 Jan 4.

20.
21.

Type-III effectors: sophisticated bacterial virulence factors.

Abe A, Matsuzawa T, Kuwae A.

C R Biol. 2005 May;328(5):413-28. Review.

PMID:
15948631
22.

Isolation of a low-molecular-weight, multicopy plasmid, pNHK101, from Thermus sp. TK10 and its use as an expression vector for T. thermophilus HB27.

Kobayashi H, Kuwae A, Maseda H, Nakamura A, Hoshino T.

Plasmid. 2005 Jul;54(1):70-9. Epub 2005 Jan 28.

PMID:
15907540
23.

[Structure and function of the type III secretion system in pathogenic bacteria].

Kuwae A, Abe A.

Tanpakushitsu Kakusan Koso. 2005 Jan;50(1):20-8. Review. Japanese. No abstract available.

PMID:
15651413
24.

Structural analysis of human hair fibers under the ultra-high voltage electron microscope.

Koike K, Yoshida O, Mamada A, Watanabe T, Hasegawa T, Kuwae A, Takaoka A.

J Cosmet Sci. 2004;55 Suppl:S25-7.

PMID:
15645099
25.

Enteropathogenic Escherichia coli activates the RhoA signaling pathway via the stimulation of GEF-H1.

Matsuzawa T, Kuwae A, Yoshida S, Sasakawa C, Abe A.

EMBO J. 2004 Sep 1;23(17):3570-82. Epub 2004 Aug 19.

26.
27.

BopB is a type III secreted protein in Bordetella bronchiseptica and is required for cytotoxicity against cultured mammalian cells.

Kuwae A, Ohishi M, Watanabe M, Nagai M, Abe A.

Cell Microbiol. 2003 Dec;5(12):973-83.

PMID:
14641181
28.

Shigella-induced necrosis and apoptosis of U937 cells and J774 macrophages.

Nonaka T, Kuwabara T, Mimuro H, Kuwae A, Imajoh-Ohmi S.

Microbiology. 2003 Sep;149(Pt 9):2513-27.

PMID:
12949176
29.
30.

Crystal structure of o-(p-N,N-dimethylaminobenzoyl)benzoic acid.

Kitoh S, Matsushima T, Matsumoto N, Senda H, Kunimoto KK, Kuwae A, Noguchi A, Hanai K.

Anal Sci. 2002 Mar;18(3):371-2. No abstract available.

31.

Shigella protein IpaH(9.8) is secreted from bacteria within mammalian cells and transported to the nucleus.

Toyotome T, Suzuki T, Kuwae A, Nonaka T, Fukuda H, Imajoh-Ohmi S, Toyofuku T, Hori M, Sasakawa C.

J Biol Chem. 2001 Aug 24;276(34):32071-9. Epub 2001 Jun 20.

32.

Shigella invasion of macrophage requires the insertion of IpaC into the host plasma membrane. Functional analysis of IpaC.

Kuwae A, Yoshida S, Tamano K, Mimuro H, Suzuki T, Sasakawa C.

J Biol Chem. 2001 Aug 24;276(34):32230-9. Epub 2001 Jun 18.

33.

A comparative vibrational and NMR study of cis-cinnamic acid polymorphs and trans-cinnamic acid.

Hanai K, Kuwae A, Takai T, Senda H, Kunimoto KK.

Spectrochim Acta A Mol Biomol Spectrosc. 2001 Mar 1;57(3):513-9. Erratum in: Spectrochim Acta A Mol Biomol Spectrosc 2001 Jul;57(8):1693-4.

PMID:
11300563
34.

Molecular structure and vibrational spectra of phenolphthalein and its dianion.

Kunimoto KK, Sugiura H, Kato T, Senda H, Kuwae A, Hanai K.

Spectrochim Acta A Mol Biomol Spectrosc. 2001 Feb;57(2):265-71.

PMID:
11206560
35.

Supramolecular structure of the Shigella type III secretion machinery: the needle part is changeable in length and essential for delivery of effectors.

Tamano K, Aizawa S, Katayama E, Nonaka T, Imajoh-Ohmi S, Kuwae A, Nagai S, Sasakawa C.

EMBO J. 2000 Aug 1;19(15):3876-87.

36.
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38.

[Fundamental study and clinical application of SPAC cortisol kit (author's transl)].

Nakane T, Kuwae A, Watanabe M, Kanie N.

Horumon To Rinsho. 1980 Feb;28(2):193-7. Japanese. No abstract available.

PMID:
7379323

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