#PAGE_PARAMS# #ADS_HEAD_SCRIPTS# #MICRODATA#

UNC93B1 Mediates Host Resistance to Infection with


UNC93B1 associates with Toll-Like Receptor (TLR) 3, TLR7 and TLR9, mediating their translocation from the endoplasmic reticulum to the endolysosome, hence allowing proper activation by nucleic acid ligands. We found that the triple deficient ‘3d’ mice, which lack functional UNC93B1, are hyper-susceptible to infection with Toxoplasma gondii. We established that while mounting a normal systemic pro-inflammatory response, i.e. producing abundant MCP-1, IL-6, TNFα and IFNγ, the 3d mice were unable to control parasite replication. Nevertheless, infection of reciprocal bone marrow chimeras between wild-type and 3d mice with T. gondii demonstrated a primary role of hemopoietic cell lineages in the enhanced susceptibility of UNC93B1 mutant mice. The protective role mediated by UNC93B1 to T. gondii infection was associated with impaired IL-12 responses and delayed IFNγ by spleen cells. Notably, in macrophages infected with T. gondii, UNC93B1 accumulates on the parasitophorous vacuole. Furthermore, upon in vitro infection the rate of tachyzoite replication was enhanced in non-activated macrophages carrying mutant UNC93B1 as compared to wild type gene. Strikingly, the role of UNC93B1 on intracellular parasite growth appears to be independent of TLR function. Altogether, our results reveal a critical role for UNC93B1 on induction of IL-12/IFNγ production as well as autonomous control of Toxoplasma replication by macrophages.


Vyšlo v časopise: UNC93B1 Mediates Host Resistance to Infection with. PLoS Pathog 6(8): e32767. doi:10.1371/journal.ppat.1001071
Kategorie: Research Article
prolekare.web.journal.doi_sk: https://doi.org/10.1371/journal.ppat.1001071

Souhrn

UNC93B1 associates with Toll-Like Receptor (TLR) 3, TLR7 and TLR9, mediating their translocation from the endoplasmic reticulum to the endolysosome, hence allowing proper activation by nucleic acid ligands. We found that the triple deficient ‘3d’ mice, which lack functional UNC93B1, are hyper-susceptible to infection with Toxoplasma gondii. We established that while mounting a normal systemic pro-inflammatory response, i.e. producing abundant MCP-1, IL-6, TNFα and IFNγ, the 3d mice were unable to control parasite replication. Nevertheless, infection of reciprocal bone marrow chimeras between wild-type and 3d mice with T. gondii demonstrated a primary role of hemopoietic cell lineages in the enhanced susceptibility of UNC93B1 mutant mice. The protective role mediated by UNC93B1 to T. gondii infection was associated with impaired IL-12 responses and delayed IFNγ by spleen cells. Notably, in macrophages infected with T. gondii, UNC93B1 accumulates on the parasitophorous vacuole. Furthermore, upon in vitro infection the rate of tachyzoite replication was enhanced in non-activated macrophages carrying mutant UNC93B1 as compared to wild type gene. Strikingly, the role of UNC93B1 on intracellular parasite growth appears to be independent of TLR function. Altogether, our results reveal a critical role for UNC93B1 on induction of IL-12/IFNγ production as well as autonomous control of Toxoplasma replication by macrophages.


Zdroje

1. HillD

DubeyJP

2002 Toxoplasma gondii: transmission, diagnosis and prevention. Clin Microbiol Infect 8 634 640

2. DenkersEY

GazzinelliRT

1998 Regulation and function of T-cell-mediated immunity during Toxoplasma gondii infection. Clin Microbiol Rev 11 569 588

3. AkiraS

UematsuS

TakeuchiO

2006 Pathogen recognition and innate immunity. Cell 124 783 801

4. GazzinelliRT

DenkersEY

2006 Protozoan encounters with Toll-like receptor signalling pathways: implications for host parasitism. Nat Rev Immunol 6 895 906

5. CamposMA

CloselM

ValenteEP

CardosoJE

AkiraS

2004 Impaired production of proinflammatory cytokines and host resistance to acute infection with Trypanosoma cruzi in mice lacking functional myeloid differentiation factor 88. J Immunol 172 1711 1718

6. ScangaCA

AlibertiJ

JankovicD

TilloyF

BennounaS

2002 Cutting edge: MyD88 is required for resistance to Toxoplasma gondii infection and regulates parasite-induced IL-12 production by dendritic cells. J Immunol 168 5997 6001

7. MurailleE

De TrezC

BraitM

De BaetselierP

LeoO

2003 Genetically resistant mice lacking MyD88-adapter protein display a high susceptibility to Leishmania major infection associated with a polarized Th2 response. J Immunol 170 4237 4241

8. Debierre-GrockiegoF

CamposMA

AzzouzN

SchmidtJ

BiekerU

2007 Activation of TLR2 and TLR4 by glycosylphosphatidylinositols derived from Toxoplasma gondii. J Immunol 179 1129 1137

9. MinnsLA

MenardLC

FoureauDM

DarcheS

RonetC

2006 TLR9 is required for the gut-associated lymphoid tissue response following oral infection of Toxoplasma gondii. J Immunol 176 7589 7597

10. PlattnerF

YarovinskyF

RomeroS

DidryD

CarlierM

2008 Toxoplasma profilin is essential for host cell invasion and TLR11-dependent induction of an interleukin-12 response. Cell Host Microbe 3 77 87

11. YarovinskyF

ZhangD

AndersenJF

BannenbergGL

SerhanCN

2005 TLR11 activation of dendritic cells by a protozoan profilin-like protein. Science 308 1626 1629

12. AlexopoulouL

HoltA

MedzhitovR

FlavellR

2001 Recognition of double-stranded RNA and activation of NF-kappaB by Toll-like receptor 3. Nature 413 732 738

13. DieboldS

KaishoT

HemmiH

AkiraS

Reis e SousaC

2004 Innate antiviral responses by means of TLR7-mediated recognition of single-stranded RNA. Science 303 1529 1531

14. HeilF

HemmiH

HochreinH

AmpenbergerF

KirschningC

2004 Species-specific recognition of single-stranded RNA via toll-like receptor 7 and 8. Science 303 1526 1529

15. HemmiH

TakeuchiO

KawaiT

KaishoT

SatoS

2000 A Toll-like receptor recognizes bacterial DNA. Nature 408 740 745

16. DrennanM

StijlemansB

Van den AbbeeleJ

QuesniauxV

BarkhuizenM

2005 The induction of a type 1 immune response following a Trypanosoma brucei infection is MyD88 dependent. J Immunol 175 2501 2509

17. BartholomeuD

RopertC

MeloM

ParrocheP

JunqueiraC

2008 Recruitment and endo-lysosomal activation of TLR9 in dendritic cells infected with Trypanosoma cruzi. J Immunol 181 1333 1344

18. ParrocheP

LauwF

GoutagnyN

LatzE

MonksB

2007 Malaria hemozoin is immunologically inert but radically enhances innate responses by presenting malaria DNA to Toll-like receptor 9. Proc Natl Acad Sci U S A 104 1919 1924

19. TabetaK

HoebeK

JanssenEM

DuX

GeorgelP

2006 The Unc93b1 mutation 3d disrupts exogenous antigen presentation and signaling via Toll-like receptors 3, 7 and 9. Nat Immunol 7 156 164

20. CasrougeA

ZhangS-Y

EidenschenkC

JouanguyE

PuelA

2006 Herpes simplex virus encephalitis in human UNC-93B deficiency. Science 314 308 312

21. BrinkmannMM

SpoonerE

HoebeK

BeutlerB

PloeghHL

2007 The interaction between the ER membrane protein UNC93B and TLR3, 7, and 9 is crucial for TLR signaling. The Journal of Cell Biology 177 265 275

22. KimYM

BrinkmannMM

PaquetME

PloeghHL

2008 UNC93B1 delivers nucleotide-sensing toll-like receptors to endolysosomes. Nature 452 234 238

23. SibleyL

WeidnerE

KrahenbuhlJ

1985 Phagosome acidification blocked by intracellular Toxoplasma gondii. Nature 315 416 419

24. MordueD

SibleyL

1997 Intracellular fate of vacuoles containing Toxoplasma gondii is determined at the time of formation and depends on the mechanism of entry. J Immunol 159 4452 4459

25. JoinerK

FuhrmanS

MiettinenH

KasperL

MellmanI

1990 Toxoplasma gondii: fusion competence of parasitophorous vacuoles in Fc receptor-transfected fibroblasts. Science 249 641 646

26. GazzinelliRT

HienyS

WynnTA

WolfS

SherA

1993 Interleukin 12 is required for the T-lymphocyte-independent induction of interferon gamma by an intracellular parasite and induces resistance in T-cell-deficient hosts. Proc Natl Acad Sci USA 90 6115 6119

27. GazzinelliRT

WysockaM

HayashiS

DenkersEY

HienyS

1994 Parasite-induced IL-12 stimulates early IFN-gamma synthesis and resistance during acute infection with Toxoplasma gondii. J Immunol 153 2533 2543

28. MorisakiJH

HeuserJE

SibleyLD

1995 Invasion of Toxoplasma gondii occurs by active penetration of the host cell. Journal of Cell Science 108 ( Pt 6) 2457 2464

29. JacobsD

DubremetzJF

LoyensA

BosmanF

SamanE

1998 Identification and heterologous expression of a new dense granule protein (GRA7) from Toxoplasma gondii. Mol Biochem Parasitol 91 237 249

30. Scharton-KerstenTM

WynnTA

DenkersEY

BalaS

GrunvaldE

1996 In the absence of endogenous IFN-gamma, mice develop unimpaired IL-12 responses to Toxoplasma gondii while failing to control acute infection. J Immunol 157 4045 4054

31. BrownCR

McLeodR

1990 Class I MHC genes and CD8+ T cells determine cyst number in Toxoplasma gondii infection. J Immunol 145 3438 3441

32. GoldszmidRS

BaficaA

JankovicD

FengCG

CasparP

2007 TAP-1 indirectly regulates CD4+ T cell priming in Toxoplasma gondii infection by controlling NK cell IFN-gamma production. J Exp Med 204 2591 2602

33. Reis e SousaC

HienyS

Scharton-KerstenT

JankovicD

CharestH

1997 In vivo microbial stimulation induces rapid CD40 ligand-independent production of interleukin 12 by dendritic cells and their redistribution to T cell areas. J Exp Med 186 1819 1829

34. MordueDG

SibleyLD

2003 A novel population of Gr-1+-activated macrophages induced during acute toxoplasmosis. Journal of Leukocyte Biology 74 1015 1025

35. SukhumavasiW

EganCE

WarrenAL

TaylorGA

FoxBA

2008 TLR adaptor MyD88 is essential for pathogen control during oral toxoplasma gondii infection but not adaptive immunity induced by a vaccine strain of the parasite. J Immunol 181 3464 3473

36. MordueDG

MonroyF

La ReginaM

DinarelloCA

SibleyLD

2001 Acute toxoplasmosis leads to lethal overproduction of Th1 cytokines. J Immunol 167 4574 4584

37. GavrilescuLC

DenkersEY

2001 IFN-gamma overproduction and high level apoptosis are associated with high but not low virulence Toxoplasma gondii infection. J Immunol 167 902 909

38. JonesTC

YehS

HirschJG

1972 The interaction between Toxoplasma gondii and mammalian cells. I. Mechanism of entry and intracellular fate of the parasite. J Exp Med 136 1157 1172

39. JonesTC

HirschJG

1972 The interaction between Toxoplasma gondii and mammalian cells. II. The absence of lysosomal fusion with phagocytic vacuoles containing living parasites. J Exp Med 136 1173 1194

40. MordueDG

HåkanssonS

NiesmanI

SibleyLD

1999 Toxoplasma gondii resides in a vacuole that avoids fusion with host cell endocytic and exocytic vesicular trafficking pathways. Exp Parasitol 92 87 99

41. CharronAJ

SibleyLD

2004 Molecular partitioning during host cell penetration by Toxoplasma gondii. Traffic 5 855 867

42. MartensS

ParvanovaI

ZerrahnJ

GriffithsG

SchellG

2005 Disruption of Toxoplasma gondii parasitophorous vacuoles by the mouse p47-resistance GTPases. PLoS Pathog 1 e24

43. SinaiAP

WebsterP

JoinerKA

1997 Association of host cell endoplasmic reticulum and mitochondria with the Toxoplasma gondii parasitophorous vacuole membrane: a high affinity interaction. Journal of Cell Science 110 ( Pt 17) 2117 2128

44. GoldszmidRS

CoppensI

LevA

CasparP

MellmanI

2009 Host ER-parasitophorous vacuole interaction provides a route of entry for antigen cross-presentation in Toxoplasma gondii-infected dendritic cells. J Exp Med - Suppl 206 399 410

45. EwaldSE

LeeBL

LauL

WickliffeKE

ShiG-P

2008 The ectodomain of Toll-like receptor 9 is cleaved to generate a functional receptor. Nature 456 658 662

46. ZhaoYO

KhaminetsA

HunnJP

HowardJC

2009 Disruption of the Toxoplasma gondii parasitophorous vacuole by IFNgamma-inducible immunity-related GTPases (IRG proteins) triggers necrotic cell death. PLoS Pathog 5 e1000288

47. ZhaoY

FergusonDJP

WilsonDC

HowardJC

SibleyLD

2009 Virulent Toxoplasma gondii evade immunity-related GTPase-mediated parasite vacuole disruption within primed macrophages. J Immunol 182 3775 3781

48. Scharton-KerstenTM

YapG

MagramJ

SherA

1997 Inducible nitric oxide is essential for host control of persistent but not acute infection with the intracellular pathogen Toxoplasma gondii. J Exp Med 185 1261 1273

49. PfefferkornER

1984 Interferon gamma blocks the growth of Toxoplasma gondii in human fibroblasts by inducing the host cells to degrade tryptophan. Proc Natl Acad Sci USA 81 908 912

50. AndradeRM

WessendarpM

GubbelsM-J

StriepenB

SubausteCS

2006 CD40 induces macrophage anti-Toxoplasma gondii activity by triggering autophagy-dependent fusion of pathogen-containing vacuoles and lysosomes. J Clin Invest 116 2366 2377

51. LingYM

ShawMH

AyalaC

CoppensI

TaylorGA

2006 Vacuolar and plasma membrane stripping and autophagic elimination of Toxoplasma gondii in primed effector macrophages. J Exp Med 203 2063 2071

52. El HajjH

LebrunM

AroldST

VialH

LabesseG

2007 ROP18 is a rhoptry kinase controlling the intracellular proliferation of Toxoplasma gondii. PLoS Pathog 3 e14

53. TaylorS

BarraganA

SuC

FuxB

FentressSJ

2006 A secreted serine-threonine kinase determines virulence in the eukaryotic pathogen Toxoplasma gondii. Science 314 1776 1780

54. de la CruzIP

LevinJZ

CumminsC

AndersonP

HorvitzHR

2003 sup-9, sup-10, and unc-93 may encode components of a two-pore K+ channel that coordinates muscle contraction in Caenorhabditis elegans. J Neurosci 23 9133 9145

55. GreenwaldIS

HorvitzHR

1980 unc-93(e1500): A behavioral mutant of Caenorhabditis elegans that defines a gene with a wild-type null phenotype. Genetics 96 147 164

56. LevinJZ

HorvitzHR

1992 The Caenorhabditis elegans unc-93 gene encodes a putative transmembrane protein that regulates muscle contraction. The Journal of Cell Biology 117 143 155

57. SchwabJC

BeckersCJ

JoinerKA

1994 The parasitophorous vacuole membrane surrounding intracellular Toxoplasma gondii functions as a molecular sieve. Proc Natl Acad Sci USA 91 509 513

58. CoppensI

DunnJD

RomanoJD

PypaertM

ZhangH

2006 Toxoplasma gondii sequesters lysosomes from mammalian hosts in the vacuolar space. Cell 125 261 274

59. HirschfeldM

MaY

WeisJ

VogelS

WeisJ

2000 Cutting edge: repurification of lipopolysaccharide eliminates signaling through both human and murine toll-like receptor 2. J Immunol 165 618 622

60. LockJ

1953 Cultivation of Toxoplasma gondii in tissue culture in mammalian cells. Lancet 1 324 325

61. SaeijJPJ

BoyleJP

GriggME

ArrizabalagaG

BoothroydJC

2005 Bioluminescence imaging of Toxoplasma gondii infection in living mice reveals dramatic differences between strains. Infection and Immunity 73 695 702

62. GreenL

WagnerD

GlogowskiJ

SkipperP

WishnokJ

1982 Analysis of nitrate, nitrite, and [15N]nitrate in biological fluids. Anal Biochem 126 131 138

63. LaemmliU

1970 Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature 227 680 685

64. TowbinH

StaehelinT

GordonJ

1979 Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications. Proc Natl Acad Sci U S A 76 4350 4354

65. AustinP

McCullochE

TillJ

1971 Characterization of the factor in L-cell conditioned medium capable of stimulating colony formation by mouse marrow cells in culture. J Cell Physiol 77 121 134

66. HalleA

HornungV

PetzoldGC

StewartCR

MonksBG

2008 The NALP3 inflammasome is involved in the innate immune response to amyloid-beta. Nat Immunol 9 857 865

67. HornungV

BauernfeindF

HalleA

SamstadEO

KonoH

2008 Silica crystals and aluminum salts activate the NALP3 inflammasome through phagosomal destabilization. Nat Immunol 9 847 856

68. RobersonS

WalkerW

1988 Immortalization of cloned mouse splenic macrophages with a retrovirus containing the v-raf/mil and v-myc oncogenes. Cell Immunol 116 341 351

69. MannR

MulliganR

BaltimoreD

1983 Construction of a retrovirus packaging mutant and its use to produce helper-free defective retrovirus. Cell 33 153 159

70. PfefferkornER

PfefferkornLC

1977 Specific labeling of intracellular Toxoplasma gondii with uracil. J Protozool 24 449 453

71. MartensS

SabelK

LangeR

UthaiahR

WolfE

2004 Mechanisms regulating the positioning of mouse p47 resistance GTPases LRG-47 and IIGP1 on cellular membranes: retargeting to plasma membrane induced by phagocytosis. J Immunol 173 2594 2606

Štítky
Hygiena a epidemiológia Infekčné lekárstvo Laboratórium

Článok vyšiel v časopise

PLOS Pathogens


2010 Číslo 8
Najčítanejšie tento týždeň
Najčítanejšie v tomto čísle
Kurzy

Zvýšte si kvalifikáciu online z pohodlia domova

Aktuální možnosti diagnostiky a léčby litiáz
nový kurz
Autori: MUDr. Tomáš Ürge, PhD.

Všetky kurzy
Prihlásenie
Zabudnuté heslo

Zadajte e-mailovú adresu, s ktorou ste vytvárali účet. Budú Vám na ňu zasielané informácie k nastaveniu nového hesla.

Prihlásenie

Nemáte účet?  Registrujte sa

#ADS_BOTTOM_SCRIPTS#