메뉴 건너뛰기




Volumn 101, Issue 5, 2017, Pages 1143-1153

Distinct functions of CXCR4, CCR2, and CX3CR1 direct dendritic cell precursors from the bone marrow to the lung

Author keywords

Cell migration; Chemokine; Inflammation; Monocytes; Pre DCs

Indexed keywords

ANTIGEN; CD11B ANTIGEN; CD172A ANTIGEN; CD19 ANTIGEN; CD45 ANTIGEN; CHEMOKINE RECEPTOR CCR2; CHEMOKINE RECEPTOR CCR7; CHEMOKINE RECEPTOR CX3CR1; CHEMOKINE RECEPTOR CXCR4; COMPLEMENT COMPONENT C5A RECEPTOR; FRACTALKINE; GLYCOPROTEIN P 15095; MESSENGER RNA; STROMAL CELL DERIVED FACTOR 1; UNCLASSIFIED DRUG; CCR2 PROTEIN, MOUSE; CCR7 PROTEIN, MOUSE; CHEMOKINE RECEPTOR; CX3CR1 PROTEIN, MOUSE; CXCR4 PROTEIN, MOUSE; LIPOPOLYSACCHARIDE;

EID: 85018459669     PISSN: 07415400     EISSN: 19383673     Source Type: Journal    
DOI: 10.1189/jlb.1A0616-285R     Document Type: Article
Times cited : (41)

References (60)
  • 1
    • 0032546352 scopus 로고    scopus 로고
    • Dendritic cells and the control of immunity
    • Banchereau, J., Steinman, R. M. (1998) Dendritic cells and the control of immunity. Nature 392, 245–252.
    • (1998) Nature , vol.392 , pp. 245-252
    • Banchereau, J.1    Steinman, R.M.2
  • 2
    • 80051983082 scopus 로고    scopus 로고
    • SnapShot: Dendritic cells
    • Idoyaga, J., Steinman, R. M. (2011) SnapShot: dendritic cells. Cell 146, 660–660 e2.
    • (2011) Cell , vol.146 , Issue.660
    • Idoyaga, J.1    Steinman, R.M.2
  • 3
    • 77956366626 scopus 로고    scopus 로고
    • The role of dendritic and epithelial cells as master regulators of allergic airway inflammation
    • Lambrecht, B. N., Hammad, H. (2010) The role of dendritic and epithelial cells as master regulators of allergic airway inflammation. Lancet 376, 835–843.
    • (2010) Lancet , vol.376 , pp. 835-843
    • Lambrecht, B.N.1    Hammad, H.2
  • 4
    • 0035177431 scopus 로고    scopus 로고
    • Specific migratory dendritic cells rapidly transport antigen from the airways to the thoracic lymph nodes
    • Vermaelen, K. Y., Carro-Muino, I., Lambrecht, B. N., Pauwels, R. A. (2001) Specific migratory dendritic cells rapidly transport antigen from the airways to the thoracic lymph nodes. J. Exp. Med. 193, 51–60.
    • (2001) J. Exp. Med. , vol.193 , pp. 51-60
    • Vermaelen, K.Y.1    Carro-Muino, I.2    Lambrecht, B.N.3    Pauwels, R.A.4
  • 5
    • 77349124883 scopus 로고    scopus 로고
    • Origin and development of dendritic cells
    • Liu, K., Nussenzweig, M. C. (2010) Origin and development of dendritic cells. Immunol. Rev. 234, 45–54.
    • (2010) Immunol. Rev. , vol.234 , pp. 45-54
    • Liu, K.1    Nussenzweig, M.C.2
  • 6
    • 76249095169 scopus 로고    scopus 로고
    • Development of monocytes, macrophages, and dendritic cells
    • Geissmann, F., Manz, M. G., Jung, S., Sieweke, M. H., Merad, M., Ley, K. (2010) Development of monocytes, macrophages, and dendritic cells. Science 327, 656–661.
    • (2010) Science , vol.327 , pp. 656-661
    • Geissmann, F.1    Manz, M.G.2    Jung, S.3    Sieweke, M.H.4    Merad, M.5    Ley, K.6
  • 12
    • 0025309427 scopus 로고
    • The distinct leukocyte integrins of mouse spleen dendritic cells as identified with new hamster monoclonal antibodies
    • Metlay, J. P., Witmer-Pack, M. D., Agger, R., Crowley, M. T., Lawless, D., Steinman, R. M. (1990) The distinct leukocyte integrins of mouse spleen dendritic cells as identified with new hamster monoclonal antibodies. J. Exp. Med. 171, 1753–1771.
    • (1990) J. Exp. Med. , vol.171 , pp. 1753-1771
    • Metlay, J.P.1    Witmer-Pack, M.D.2    Agger, R.3    Crowley, M.T.4    Lawless, D.5    Steinman, R.M.6
  • 13
    • 84865418665 scopus 로고    scopus 로고
    • Deciphering the transcriptional network of the dendritic cell lineage
    • Miller, J. C., Brown, B. D., Shay, T., Gautier, E. L., Jojic, V., Cohain, A., Pandey, G., Leboeuf, M., Elpek, K. G., Helft, J., Hashimoto, D., Chow, A., Price, J., Greter, M., Bogunovic, M., Bellemare-Pelletier, A., Frenette, P. S., Randolph, G. J., Turley, S. J., Merad, M.; Immunological Genome Consortium. (2012) Deciphering the transcriptional network of the dendritic cell lineage. Nat. Immunol. 13, 888–899.
    • (2012) Nat. Immunol. , vol.13 , pp. 888-899
    • Miller, J.C.1
  • 14
    • 84867740805 scopus 로고    scopus 로고
    • Gene-expression profiles and transcriptional regulatory pathways that underlie the identity and diversity of mouse tissue macrophages
    • Gautier, E. L., Shay, T., Miller, J., Greter, M., Jakubzick, C., Ivanov, S., Helft, J., Chow, A., Elpek, K. G., Gordonov, S., Mazloom, A. R., Ma’ayan, A., Chua, W. J., Hansen, T. H., Turley, S. J., Merad, M., Randolph, G. J.; Immunological Genome Consortium. (2012) Gene-expression profiles and transcriptional regulatory pathways that underlie the identity and diversity of mouse tissue macrophages. Nat. Immunol. 13, 1118–1128.
    • (2012) Nat. Immunol. , vol.13 , pp. 1118-1128
    • Gautier, E.L.1
  • 17
    • 84927642739 scopus 로고    scopus 로고
    • Complement receptor C5aR1/CD88 and dipeptidyl peptidase-4/CD26 define distinct hematopoietic lineages of dendritic cells
    • Nakano, H., Moran, T. P., Nakano, K., Gerrish, K. E., Bortner, C. D., Cook, D. N. (2015) Complement receptor C5aR1/CD88 and dipeptidyl peptidase-4/CD26 define distinct hematopoietic lineages of dendritic cells. J. Immunol. 194, 3808–3819.
    • (2015) J. Immunol. , vol.194 , pp. 3808-3819
    • Nakano, H.1    Moran, T.P.2    Nakano, K.3    Gerrish, K.E.4    Bortner, C.D.5    Cook, D.N.6
  • 19
    • 84864297838 scopus 로고    scopus 로고
    • Zbtb46 expression distinguishes classical dendritic cells and their committed progenitors from other immune lineages
    • Satpathy, A. T., Kc, W., Albring, J. C., Edelson, B. T., Kretzer, N. M., Bhattacharya, D., Murphy, T. L., Murphy, K. M. (2012) Zbtb46 expression distinguishes classical dendritic cells and their committed progenitors from other immune lineages. J. Exp. Med. 209, 1135–1152.
    • (2012) J. Exp. Med. , vol.209 , pp. 1135-1152
    • Satpathy, A.T.1    Kc, W.2    Albring, J.C.3    Edelson, B.T.4    Kretzer, N.M.5    Bhattacharya, D.6    Murphy, T.L.7    Murphy, K.M.8
  • 22
    • 84947268787 scopus 로고    scopus 로고
    • Inhaled house dust programs pulmonary dendritic cells to promote type 2 T cell responses by an indirect mechanism
    • Moran, T. P., Nakano, K., Whitehead, G. S., Thomas, S. Y., Cook, D. N., Nakano, H. (2015) Inhaled house dust programs pulmonary dendritic cells to promote type 2 T cell responses by an indirect mechanism. Am. J. Physiol. Lung Cell Mol. Physiol., 309, L1208–L1218.
    • (2015) Am. J. Physiol. Lung Cell Mol. Physiol. , vol.309 , pp. L1208-L1218
    • Moran, T.P.1    Nakano, K.2    Whitehead, G.S.3    Thomas, S.Y.4    Cook, D.N.5    Nakano, H.6
  • 23
    • 80355146868 scopus 로고    scopus 로고
    • Monocyte recruitment during infection and inflammation
    • Shi, C., Pamer, E. G. (2011) Monocyte recruitment during infection and inflammation. Nat. Rev. Immunol. 11, 762–774.
    • (2011) Nat. Rev. Immunol. , vol.11 , pp. 762-774
    • Shi, C.1    Pamer, E.G.2
  • 24
    • 34147164049 scopus 로고    scopus 로고
    • Critical roles for CCR2 and MCP-3 in monocyte mobilization from bone marrow and recruitment to inflammatory sites
    • Tsou, C. L., Peters, W., Si, Y., Slaymaker, S., Aslanian, A. M., Weisberg, S. P., Mack, M., Charo, I. F. (2007) Critical roles for CCR2 and MCP-3 in monocyte mobilization from bone marrow and recruitment to inflammatory sites. J. Clin. Invest. 117, 902–909.
    • (2007) J. Clin. Invest. , vol.117 , pp. 902-909
    • Tsou, C.L.1    Peters, W.2    Si, Y.3    Slaymaker, S.4    Aslanian, A.M.5    Weisberg, S.P.6    Mack, M.7    Charo, I.F.8
  • 25
    • 45549091996 scopus 로고    scopus 로고
    • Additive roles for MCP-1 and MCP-3 in CCR2-mediated recruitment of inflammatory monocytes during Listeria monocytogenes infection
    • Jia, T., Serbina, N. V., Brandl, K., Zhong, M. X., Leiner, I. M., Charo, I. F., Pamer, E. G. (2008) Additive roles for MCP-1 and MCP-3 in CCR2-mediated recruitment of inflammatory monocytes during Listeria monocytogenes infection. J. Immunol. 180, 6846–6853.
    • (2008) J. Immunol. , vol.180 , pp. 6846-6853
    • Jia, T.1    Serbina, N.V.2    Brandl, K.3    Zhong, M.X.4    Leiner, I.M.5    Charo, I.F.6    Pamer, E.G.7
  • 26
    • 62849119018 scopus 로고    scopus 로고
    • Blood-derived inflammatory dendritic cells in lymph nodes stimulate acute T helper type 1 immune responses
    • Nakano, H., Lin, K. L., Yanagita, M., Charbonneau, C., Cook, D. N., Kakiuchi, T., Gunn, M. D. (2009) Blood-derived inflammatory dendritic cells in lymph nodes stimulate acute T helper type 1 immune responses. Nat. Immunol. 10, 394–402.
    • (2009) Nat. Immunol. , vol.10 , pp. 394-402
    • Nakano, H.1    Lin, K.L.2    Yanagita, M.3    Charbonneau, C.4    Cook, D.N.5    Kakiuchi, T.6    Gunn, M.D.7
  • 28
    • 0034678392 scopus 로고    scopus 로고
    • Localization of distinct Peyer’s patch dendritic cell subsets and their recruitment by chemokines macrophage inflammatory protein (MIP)-3a, MIP-3b, and secondary lymphoid organ chemokine
    • Iwasaki, A., Kelsall, B. L. (2000) Localization of distinct Peyer’s patch dendritic cell subsets and their recruitment by chemokines macrophage inflammatory protein (MIP)-3a, MIP-3b, and secondary lymphoid organ chemokine. J. Exp. Med. 191, 1381–1394.
    • (2000) J. Exp. Med. , vol.191 , pp. 1381-1394
    • Iwasaki, A.1    Kelsall, B.L.2
  • 31
    • 32044465280 scopus 로고    scopus 로고
    • A major lung CD103 (AlphaE)-beta7 integrin-positive epithelial dendritic cell population expressing Langerin and tight junction proteins
    • Sung, S. S., Fu, S. M., Rose, C. E., Jr., Gaskin, F., Ju, S. T., Beaty, S. R. (2006) A major lung CD103 (alphaE)-beta7 integrin-positive epithelial dendritic cell population expressing Langerin and tight junction proteins. J. Immunol. 176, 2161–2172.
    • (2006) J. Immunol. , vol.176 , pp. 2161-2172
    • Sung, S.S.1    Fu, S.M.2    Rose, C.E.3    Gaskin, F.4    Ju, S.T.5    Beaty, S.R.6
  • 35
    • 70349871248 scopus 로고    scopus 로고
    • Allergic sensitization through the airway primes Th17-dependent neutrophilia and airway hyperresponsiveness
    • Wilson, R. H., Whitehead, G. S., Nakano, H., Free, M. E., Kolls, J. K., Cook, D. N. (2009) Allergic sensitization through the airway primes Th17-dependent neutrophilia and airway hyperresponsiveness. Am. J. Respir. Crit. Care Med. 180, 720–730.
    • (2009) Am. J. Respir. Crit. Care Med. , vol.180 , pp. 720-730
    • Wilson, R.H.1    Whitehead, G.S.2    Nakano, H.3    Free, M.E.4    Kolls, J.K.5    Cook, D.N.6
  • 39
    • 84892430130 scopus 로고    scopus 로고
    • Bitter tasting compounds dilate airways by inhibiting airway smooth muscle calcium oscillations and calcium sensitivity
    • Tan, X., Sanderson, M. J. (2014) Bitter tasting compounds dilate airways by inhibiting airway smooth muscle calcium oscillations and calcium sensitivity. Br. J. Pharmacol. 171, 646–662.
    • (2014) Br. J. Pharmacol. , vol.171 , pp. 646-662
    • Tan, X.1    Sanderson, M.J.2
  • 41
    • 33645902493 scopus 로고    scopus 로고
    • Monocyte emigration from bone marrow during bacterial infection requires signals mediated by chemokine receptor CCR2
    • Serbina, N. V., Pamer, E. G. (2006) Monocyte emigration from bone marrow during bacterial infection requires signals mediated by chemokine receptor CCR2. Nat. Immunol. 7, 311–317.
    • (2006) Nat. Immunol. , vol.7 , pp. 311-317
    • Serbina, N.V.1    Pamer, E.G.2
  • 43
    • 80855144798 scopus 로고    scopus 로고
    • Bone marrow dendritic cell progenitors sense pathogens via Toll-like receptors and subsequently migrate to inflamed lymph nodes
    • Schmid, M. A., Takizawa, H., Baumjohann, D. R., Saito, Y., Manz, M. G. (2011) Bone marrow dendritic cell progenitors sense pathogens via Toll-like receptors and subsequently migrate to inflamed lymph nodes. Blood 118, 4829–4840.
    • (2011) Blood , vol.118 , pp. 4829-4840
    • Schmid, M.A.1    Takizawa, H.2    Baumjohann, D.R.3    Saito, Y.4    Manz, M.G.5
  • 46
    • 8644227902 scopus 로고    scopus 로고
    • The role of CXCR4 in maintaining peripheral B cell compartments and humoral immunity
    • Nie, Y., Waite, J., Brewer, F., Sunshine, M. J., Littman, D. R., Zou, Y. R. (2004) The role of CXCR4 in maintaining peripheral B cell compartments and humoral immunity. J. Exp. Med. 200, 1145–1156.
    • (2004) J. Exp. Med , vol.200 , pp. 1145-1156
    • Nie, Y.1    Waite, J.2    Brewer, F.3    Sunshine, M.J.4    Littman, D.R.5    Zou, Y.R.6
  • 47
    • 84910110809 scopus 로고    scopus 로고
    • Epigenetic control of Ccr7 expression in distinct lineages of lung dendritic cells
    • Moran, T. P., Nakano, H., Kondilis-Mangum, H. D., Wade, P. A., Cook, D. N. (2014) Epigenetic control of Ccr7 expression in distinct lineages of lung dendritic cells. J. Immunol. 193, 4904–4913.
    • (2014) J. Immunol. , vol.193 , pp. 4904-4913
    • Moran, T.P.1    Nakano, H.2    Kondilis-Mangum, H.D.3    Wade, P.A.4    Cook, D.N.5
  • 48
    • 0033081760 scopus 로고    scopus 로고
    • Mice lacking expression of secondary lymphoid organ chemokine have defects in lymphocyte homing and dendritic cell localization
    • Gunn, M. D., Kyuwa, S., Tam, C., Kakiuchi, T., Matsuzawa, A., Williams, L. T., Nakano, H. (1999) Mice lacking expression of secondary lymphoid organ chemokine have defects in lymphocyte homing and dendritic cell localization. J. Exp. Med. 189, 451–460.
    • (1999) J. Exp. Med. , vol.189 , pp. 451-460
    • Gunn, M.D.1    Kyuwa, S.2    Tam, C.3    Kakiuchi, T.4    Matsuzawa, A.5    Williams, L.T.6    Nakano, H.7
  • 49
    • 0033214348 scopus 로고    scopus 로고
    • CCR7 coordinates the primary immune response by establishing functional microenvironments in secondary lymphoid organs
    • Förster, R., Schubel, A., Breitfeld, D., Kremmer, E., Renner-Müller, I., Wolf, E., Lipp, M. (1999) CCR7 coordinates the primary immune response by establishing functional microenvironments in secondary lymphoid organs. Cell 99, 23–33.
    • (1999) Cell , vol.99 , pp. 23-33
    • Förster, R.1    Schubel, A.2    Breitfeld, D.3    Kremmer, E.4    Renner-Müller, I.5    Wolf, E.6    Lipp, M.7
  • 53
    • 84872708533 scopus 로고    scopus 로고
    • Aeroallergen challenge promotes dendritic cell proliferation in the airways
    • Veres, T. Z., Voedisch, S., Spies, E., Valtonen, J., Prenzler, F., Braun, A. (2013) Aeroallergen challenge promotes dendritic cell proliferation in the airways. J. Immunol. 190, 897–903.
    • (2013) J. Immunol. , vol.190 , pp. 897-903
    • Veres, T.Z.1    Voedisch, S.2    Spies, E.3    Valtonen, J.4    Prenzler, F.5    Braun, A.6
  • 54
    • 0037963473 scopus 로고    scopus 로고
    • Blood monocytes consist of two principal subsets with distinct migratory properties
    • Geissmann, F., Jung, S., Littman, D. R. (2003) Blood monocytes consist of two principal subsets with distinct migratory properties. Immunity 19, 71–82.
    • (2003) Immunity , vol.19 , pp. 71-82
    • Geissmann, F.1    Jung, S.2    Littman, D.R.3
  • 55
    • 42149083307 scopus 로고    scopus 로고
    • + monocyte-derived dendritic cells and exudate macrophages produce influenza-induced pulmonary immune pathology and mortality
    • + monocyte-derived dendritic cells and exudate macrophages produce influenza-induced pulmonary immune pathology and mortality. J. Immunol. 180, 2562–2572.
    • (2008) J. Immunol. , vol.180 , pp. 2562-2572
    • Lin, K.L.1    Suzuki, Y.2    Nakano, H.3    Ramsburg, E.4    Gunn, M.D.5
  • 56
    • 70349564487 scopus 로고    scopus 로고
    • Regulation of the migration and survival of monocyte subsets by chemokine receptors and its relevance to atherosclerosis
    • Gautier, E. L., Jakubzick, C., Randolph, G. J. (2009) Regulation of the migration and survival of monocyte subsets by chemokine receptors and its relevance to atherosclerosis. Arterioscler. Thromb. Vasc. Biol. 29, 1412–1418.
    • (2009) Arterioscler. Thromb. Vasc. Biol. , vol.29 , pp. 1412-1418
    • Gautier, E.L.1    Jakubzick, C.2    Randolph, G.J.3
  • 57
    • 0242273333 scopus 로고    scopus 로고
    • Chemokine receptor 2 (CCR2) in atherosclerosis, infectious diseases, and regulation of T-cell polarization
    • Charo, I. F., Peters, W. (2003) Chemokine receptor 2 (CCR2) in atherosclerosis, infectious diseases, and regulation of T-cell polarization. Microcirculation 10, 259–264.
    • (2003) Microcirculation , vol.10 , pp. 259-264
    • Charo, I.F.1    Peters, W.2
  • 58
    • 0030809822 scopus 로고    scopus 로고
    • Impaired monocyte migration and reduced type 1 (Th1) cytokine responses in C-C chemokine receptor 2 knockout mice
    • Boring, L., Gosling, J., Chensue, S. W., Kunkel, S. L., Farese, R. V., Jr., Broxmeyer, H. E., Charo, I. F. (1997) Impaired monocyte migration and reduced type 1 (Th1) cytokine responses in C-C chemokine receptor 2 knockout mice. J. Clin. Invest. 100, 2552–2561.
    • (1997) J. Clin. Invest. , vol.100 , pp. 2552-2561
    • Boring, L.1    Gosling, J.2    Chensue, S.W.3    Kunkel, S.L.4    Farese, R.V.5    Broxmeyer, H.E.6    Charo, I.F.7
  • 59
    • 79251534355 scopus 로고    scopus 로고
    • CCR2-antagonist prophylaxis reduces pulmonary immune pathology and markedly improves survival during influenza infection
    • Lin, K. L., Sweeney, S., Kang, B. D., Ramsburg, E., Gunn, M. D. (2011) CCR2-antagonist prophylaxis reduces pulmonary immune pathology and markedly improves survival during influenza infection. J. Immunol. 186, 508–515.
    • (2011) J. Immunol. , vol.186 , pp. 508-515
    • Lin, K.L.1    Sweeney, S.2    Kang, B.D.3    Ramsburg, E.4    Gunn, M.D.5


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.