Tatyana Churakova
Schering-Plough
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Featured researches published by Tatyana Churakova.
Nature | 2003
Daniel J. Cua; Jonathan P Sherlock; Yi Chen; Craig A. Murphy; Barbara L. Joyce; Brian Seymour; Linda Lucian; Wayne To; Sylvia Kwan; Tatyana Churakova; Sandra Zurawski; Maria T. Wiekowski; Sergio A. Lira; Daniel M. Gorman; Robert A. Kastelein; Jonathon D. Sedgwick
Interleukin-12 (IL-12) is a heterodimeric molecule composed of p35 and p40 subunits. Analyses in vitro have defined IL-12 as an important factor for the differentiation of naive T cells into T-helper type 1 CD4+ lymphocytes secreting interferon-γ (refs 1, 2). Similarly, numerous studies have concluded that IL-12 is essential for T-cell-dependent immune and inflammatory responses in vivo, primarily through the use of IL-12 p40 gene-targeted mice and neutralizing antibodies against p40. The cytokine IL-23, which comprises the p40 subunit of IL-12 but a different p19 subunit, is produced predominantly by macrophages and dendritic cells, and shows activity on memory T cells. Evidence from studies of IL-23 receptor expression and IL-23 overexpression in transgenic mice suggest, however, that IL-23 may also affect macrophage function directly. Here we show, by using gene-targeted mice lacking only IL-23 and cytokine replacement studies, that the perceived central role for IL-12 in autoimmune inflammation, specifically in the brain, has been misinterpreted and that IL-23, and not IL-12, is the critical factor in this response. In addition, we show that IL-23, unlike IL-12, acts more broadly as an end-stage effector cytokine through direct actions on macrophages.
Immunity | 2000
Birgit Oppmann; Robin Lesley; Bianca Blom; Jackie C. Timans; Yuming Xu; Brisdell Hunte; Felix Vega; Nancy Yu; Jing Wang; Komal Singh; Francesca Zonin; Elena Vaisberg; Tatyana Churakova; Man-ru Liu; Daniel M. Gorman; Janet Wagner; Sandra Zurawski; Yong-Jun Liu; John S. Abrams; Kevin W. Moore; Donna M. Rennick; Rene de Waal-Malefyt; Charles Hannum; J. Fernando Bazan; Robert A. Kastelein
A novel sequence discovered in a computational screen appears distantly related to the p35 subunit of IL-12. This factor, which we term p19, shows no biological activity by itself; instead, it combines with the p40 subunit of IL-12 to form a novel, biologically active, composite cytokine, which we term IL-23. Activated dendritic cells secrete detectable levels of this complex. IL-23 binds to IL-12R beta 1 but fails to engage IL-12R beta 2; nonetheless, IL-23 activates Stat4 in PHA blast T cells. IL-23 induces strong proliferation of mouse memory (CD4(+)CD45Rb(low)) T cells, a unique activity of IL-23 as IL-12 has no effect on this cell population. Similar to IL-12, human IL-23 stimulates IFN-gamma production and proliferation in PHA blast T cells, as well as in CD45RO (memory) T cells.
Journal of Immunology | 2000
Nathalie Fournier; Lionel Chalus; Isabelle Durand; Eric Garcia; Jean-Jacques Pin; Tatyana Churakova; Segal Patel; Constance Zlot; Dan Gorman; Sandra Zurawski; John S. Abrams; Elizabeth E. M. Bates; Pierre Garrone
In this study, we describe human FDF03, a novel member of the Ig superfamily expressed as a monomeric 44-kDa transmembrane glycoprotein and containing a single extracellular V-set Ig-like domain. Two potential secreted isoforms were also identified. The gene encoding FDF03 mapped to chromosome 7q22. FDF03 was mostly detected in hemopoietic tissues and was expressed by monocytes, macrophages, and granulocytes, but not by lymphocytes (B, T, and NK cells), indicating an expression restricted to cells of the myelomonocytic lineage. FDF03 was also strongly expressed by monocyte-derived dendritic cells (DC) and preferentially by CD14+/CD1a− DC derived from CD34+ progenitors. Moreover, flow cytometric analysis showed FDF03 expression by CD11c+ blood and tonsil DC, but not by CD11c− DC precursors. The FDF03 cytoplasmic tail contained two immunoreceptor tyrosine-based inhibitory motif (ITIM)-like sequences. When overexpressed in pervanadate-treated U937 cells, FDF03 was tyrosine-phosphorylated and recruited Src homology-2 (SH2) domain-containing protein tyrosine phosphatase (SHP)-2 and to a lesser extent SHP-1. Like engagement of the ITIM-bearing receptor LAIR-1/p40, cross-linking of FDF03 inhibited calcium mobilization in response to CD32/FcγRII aggregation in transfected U937 cells, thus demonstrating that FDF03 can function as an inhibitory receptor. However, in contrast to LAIR-1/p40, cross-linking of FDF03 did not inhibit GM-CSF-induced monocyte differentiation into DC. Thus, FDF03 is a novel ITIM-bearing receptor selectively expressed by cells of myeloid origin, including DC, that may regulate functions other than that of the broadly distributed LAIR-1/p40 molecule.
Archive | 2009
Edward P. Bowman; Shi-Juan Chen; Daniel J. Cua; Kevin W. Moore; Tatyana Churakova; Hong-Nhung Y. Nguyen; Jason R. Chan
Archive | 2011
Edward P. Bowman; Shi-Juan Chen; Daniel J. Cua; Kevin W. Moore; Tatyana Churakova; Hong-Nhung Y. Nguyen; Jason R. Chan
Archive | 2003
Edward P. Bowman; Shi-Juan Chen; Daniel J. Cua; Kevin W. Moore; Tatyana Churakova; Hong-Nhung Y. Nguyen; Jason R. Chan
Archive | 2003
Edward P. Bowman; Jason R. Chan; Shi-Juan Chen; Tatyana Churakova; Daniel J. Cua; Kevin W. Moore; Hong-Nhung Y. Nguyen
Archive | 2003
Edward P. Bowman; Shi-Juan Chen; Daniel J. Cua; Kevin W. Moore; Tatyana Churakova; Hong-Nhung Y. Nguyen; Jason R. Chan
Archive | 2003
Edward P. Bowman; Shi-Juan Chen; Daniel J. Cua; Kevin W. Moore; Tatyana Churakova; Hong-Nhung Y. Nguyen; Jason R. Chan
Archive | 2003
Edward P. Bowman; Jason R. Chan; Shi-Juan Chen; Tatyana Churakova; Daniel J. Cua; Kevin W. Moore; Hong-Nhung Y. Nguyen