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The tetraspanin CD82 is specifically recruited to fungal and bacterial phagosomes prior to acidification.

Artavanis-Tsakonas K, Kasperkovitz PV, Papa E, Cardenas ML, Khan NS, Van der Veen AG, Ploegh HL, Vyas JM.

Infect Immun. 2011 Mar;79(3):1098-106. doi: 10.1128/IAI.01135-10. Epub 2010 Dec 13.


Recruitment of CD63 to Cryptococcus neoformans phagosomes requires acidification.

Artavanis-Tsakonas K, Love JC, Ploegh HL, Vyas JM.

Proc Natl Acad Sci U S A. 2006 Oct 24;103(43):15945-50. Epub 2006 Oct 16.


Dynamics within tetraspanin pairs affect MHC class II expression.

Hoorn Tv, Paul P, Janssen L, Janssen H, Neefjes J.

J Cell Sci. 2012 Jan 15;125(Pt 2):328-39. doi: 10.1242/jcs.088047. Epub 2012 Feb 2.


TLR9 is actively recruited to Aspergillus fumigatus phagosomes and requires the N-terminal proteolytic cleavage domain for proper intracellular trafficking.

Kasperkovitz PV, Cardenas ML, Vyas JM.

J Immunol. 2010 Dec 15;185(12):7614-22. doi: 10.4049/jimmunol.1002760. Epub 2010 Nov 8.


The tetraspan protein CD82 is a resident of MHC class II compartments where it associates with HLA-DR, -DM, and -DO molecules.

Hammond C, Denzin LK, Pan M, Griffith JM, Geuze HJ, Cresswell P.

J Immunol. 1998 Oct 1;161(7):3282-91.


CD63 tetraspanin slows down cell migration and translocates to the endosomal-lysosomal-MIICs route after extracellular stimuli in human immature dendritic cells.

Mantegazza AR, Barrio MM, Moutel S, Bover L, Weck M, Brossart P, Teillaud JL, Mordoh J.

Blood. 2004 Aug 15;104(4):1183-90. Epub 2004 May 6.


Adaptor protein-3 in dendritic cells facilitates phagosomal toll-like receptor signaling and antigen presentation to CD4(+) T cells.

Mantegazza AR, Guttentag SH, El-Benna J, Sasai M, Iwasaki A, Shen H, Laufer TM, Marks MS.

Immunity. 2012 May 25;36(5):782-94. doi: 10.1016/j.immuni.2012.02.018. Epub 2012 May 3.


Phagocytosis and phagosome acidification are required for pathogen processing and MyD88-dependent responses to Staphylococcus aureus.

Ip WK, Sokolovska A, Charriere GM, Boyer L, Dejardin S, Cappillino MP, Yantosca LM, Takahashi K, Moore KJ, Lacy-Hulbert A, Stuart LM.

J Immunol. 2010 Jun 15;184(12):7071-81. doi: 10.4049/jimmunol.1000110. Epub 2010 May 17.


Interaction of Mycobacterium avium-containing phagosomes with the antigen presentation pathway.

Ullrich HJ, Beatty WL, Russell DG.

J Immunol. 2000 Dec 1;165(11):6073-80.


Regulation of c-Met signaling by the tetraspanin KAI-1/CD82 affects cancer cell migration.

Takahashi M, Sugiura T, Abe M, Ishii K, Shirasuna K.

Int J Cancer. 2007 Nov 1;121(9):1919-29.


The tumour-associated antigen L6 (L6-Ag) is recruited to the tetraspanin-enriched microdomains: implication for tumour cell motility.

Lekishvili T, Fromm E, Mujoomdar M, Berditchevski F.

J Cell Sci. 2008 Mar 1;121(Pt 5):685-94. doi: 10.1242/jcs.020347. Epub 2008 Feb 12.


Rab27a regulates phagosomal pH and NADPH oxidase recruitment to dendritic cell phagosomes.

Jancic C, Savina A, Wasmeier C, Tolmachova T, El-Benna J, Dang PM, Pascolo S, Gougerot-Pocidalo MA, Raposo G, Seabra MC, Amigorena S.

Nat Cell Biol. 2007 Apr;9(4):367-78. Epub 2007 Mar 11.


Phagocytic processing of antigens for presentation by class II major histocompatibility complex molecules.

Ramachandra L, Noss E, Boom WH, Harding CV.

Cell Microbiol. 1999 Nov;1(3):205-14. Review.


Vacuolar ATPase in phagosome-lysosome fusion.

Kissing S, Hermsen C, Repnik U, Nesset CK, von Bargen K, Griffiths G, Ichihara A, Lee BS, Schwake M, De Brabander J, Haas A, Saftig P.

J Biol Chem. 2015 May 29;290(22):14166-80. doi: 10.1074/jbc.M114.628891. Epub 2015 Apr 22.


HTLV-1 Gag protein associates with CD82 tetraspanin microdomains at the plasma membrane.

Mazurov D, Heidecker G, Derse D.

Virology. 2006 Mar 1;346(1):194-204. Epub 2005 Dec 1.


TLR signals induce phagosomal MHC-I delivery from the endosomal recycling compartment to allow cross-presentation.

Nair-Gupta P, Baccarini A, Tung N, Seyffer F, Florey O, Huang Y, Banerjee M, Overholtzer M, Roche PA, Tampé R, Brown BD, Amsen D, Whiteheart SW, Blander JM.

Cell. 2014 Jul 31;158(3):506-21. doi: 10.1016/j.cell.2014.04.054.

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