Literature DB >> 15114667

CD38 is expressed on human mature monocyte-derived dendritic cells and is functionally involved in CD83 expression and IL-12 induction.

Giorgio Fedele1, Loredana Frasca, Raffaella Palazzo, Enza Ferrero, Fabio Malavasi, Clara Maria Ausiello.   

Abstract

Dendritic cell (DC) maturation is characterized by the gain or loss of immunological functions and by expression of distinctive surface receptors. CD38 is an ectoenzyme that catalyzes the synthesis of cyclic ADP ribose (a potent second messenger for Ca(2+) release), as well as a receptor that initiates transmembrane signaling upon engagement with its counter-receptor CD31 or with agonistic monoclonal antibodies. Since CD38 is expressed by resting monocytes, we aimed to monitor CD38 expression during the differentiation of human monocyte-derived DC (MDDC) and to investigate the possibility that CD38 plays a functional role during DC maturation. CD38 is down-modulated during differentiation into immature MDDC and expressed again upon maturation. The extent of CD38 expression is dependent on the stimulus adopted (LPS > IFN-gamma > CD40 cross-linking). Although weak, IFN-gamma consistently induces DC maturation. De novo-synthesized CD38 is enzymatically active, and its expression in mature (m) MDDC is dependent on NF-kappa B activity. However, CD38 is not merely a maturation marker but also mediates signaling in mMDDC, where it maintains its functions as a receptor. Activation via agonistic anti-CD38 mAb induces up-regulation of CD83 expression and IL-12 secretion, whereas disruption of CD38/CD31 interaction inhibits CD83 expression, IL-12 secretion and MDDC-induced allogeneic T cell proliferation.

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Year:  2004        PMID: 15114667     DOI: 10.1002/eji.200324728

Source DB:  PubMed          Journal:  Eur J Immunol        ISSN: 0014-2980            Impact factor:   5.532


  34 in total

1.  Identification and functional characterization of the hepatic stellate cell CD38 cell surface molecule.

Authors:  Sandra March; Mariona Graupera; María Rosa Sarrias; Francisco Lozano; Pilar Pizcueta; Jaume Bosch; Pablo Engel
Journal:  Am J Pathol       Date:  2007-01       Impact factor: 4.307

Review 2.  CD38 and CD157 as receptors of the immune system: a bridge between innate and adaptive immunity.

Authors:  Fabio Malavasi; Silvia Deaglio; Enza Ferrero; Ada Funaro; Jaime Sancho; Clara M Ausiello; Erika Ortolan; Tiziana Vaisitti; Mercedes Zubiaur; Giorgio Fedele; Semra Aydin; Elena V Tibaldi; Ilaria Durelli; Riccardo Lusso; Franco Cozno; Alberto L Horenstein
Journal:  Mol Med       Date:  2006 Nov-Dec       Impact factor: 6.354

3.  Autocrine TGFβ Is a Survival Factor for Monocytes and Drives Immunosuppressive Lineage Commitment.

Authors:  Alba Gonzalez-Junca; Kyla E Driscoll; Ilenia Pellicciotta; Shisuo Du; Chen Hao Lo; Ritu Roy; Renate Parry; Iliana Tenvooren; Diana M Marquez; Matthew H Spitzer; Mary Helen Barcellos-Hoff
Journal:  Cancer Immunol Res       Date:  2018-12-11       Impact factor: 11.151

4.  Type I and II interferons enhance dendritic cell maturation and migration capacity by regulating CD38 and CD74 that have synergistic effects with TLR agonists.

Authors:  Thanh-Nhan Nguyen-Pham; Mi-Seon Lim; Truc Anh Thi Nguyen; Youn-Kyung Lee; Chun-Ji Jin; Hyun Ju Lee; Cheol Yi Hong; Jae-Sook Ahn; Deok-Hwan Yang; Yeo-Kyeoung Kim; Ik-Joo Chung; Byoung Chul Park; Hyeoung-Joon Kim; Je-Jung Lee
Journal:  Cell Mol Immunol       Date:  2011-03-21       Impact factor: 11.530

5.  CD31 is a key coinhibitory receptor in the development of immunogenic dendritic cells.

Authors:  Marc Clement; Giulia Fornasa; Kevin Guedj; Sanae Ben Mkaddem; Anh-Thu Gaston; Jamila Khallou-Laschet; Marion Morvan; Antonino Nicoletti; Giuseppina Caligiuri
Journal:  Proc Natl Acad Sci U S A       Date:  2014-03-10       Impact factor: 11.205

6.  Optimal culture conditions for the generation of natural killer cell-induced dendritic cells for cancer immunotherapy.

Authors:  Thanh-Nhan Nguyen-Pham; Deok-Hwan Yang; Truc-Anh Thi Nguyen; Mi-Seon Lim; Cheol Yi Hong; Mi-Hyun Kim; Hyun Ju Lee; Youn-Kyung Lee; Duck Cho; Soo-Young Bae; Jae-Sook Ahn; Yeo-Kyeoung Kim; Ik-Joo Chung; Hyeoung-Joon Kim; Je-Jung Lee
Journal:  Cell Mol Immunol       Date:  2011-08-08       Impact factor: 11.530

7.  Qualitatively distinct patterns of cytokines are released by human dendritic cells in response to different pathogens.

Authors:  Karen Scott; Maria Manunta; Conrad Germain; Peter Smith; Meleri Jones; Peter Mitchell; Daniele Dessi; Kathleen Branigan Bamford; Robert I Lechler; Pier Luigi Fiori; Graham R Foster; Giovanna Lombardi
Journal:  Immunology       Date:  2005-10       Impact factor: 7.397

Review 8.  Anti-CD38 antibody therapy: windows of opportunity yielded by the functional characteristics of the target molecule.

Authors:  Antonella Chillemi; Gianluca Zaccarello; Valeria Quarona; Manuela Ferracin; Chiara Ghimenti; Massimo Massaia; Alberto L Horenstein; Fabio Malavasi
Journal:  Mol Med       Date:  2013-05-20       Impact factor: 6.354

9.  Infection and maturation of monocyte-derived human dendritic cells by human respiratory syncytial virus, human metapneumovirus, and human parainfluenza virus type 3.

Authors:  Cyril Le Nouën; Shirin Munir; Stéphanie Losq; Christine C Winter; Thomas McCarty; David A Stephany; Kevin L Holmes; Alexander Bukreyev; Ronald L Rabin; Peter L Collins; Ursula J Buchholz
Journal:  Virology       Date:  2009-01-06       Impact factor: 3.616

10.  Bordetella pertussis commits human dendritic cells to promote a Th1/Th17 response through the activity of adenylate cyclase toxin and MAPK-pathways.

Authors:  Giorgio Fedele; Fabiana Spensieri; Raffaella Palazzo; Maria Nasso; Gordon Yiu Chong Cheung; John Graham Coote; Clara Maria Ausiello
Journal:  PLoS One       Date:  2010-01-15       Impact factor: 3.240

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