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1 as a positive regulator of dCsk (Drosophila C-terminal Src kinase).
2 in a manner dependent on SHPs and Leukocyte C-terminal Src kinase.
3 n was basally associated with c-Src and Csk (C-terminal Src kinase), a negative regulator of Src acti
5 ns in Src phosphorylation and recruitment of C-terminal Src kinase, a negative regulator of Src, when
6 e-phosphorylated PAG serves as an anchor for C-terminal SRC kinase, an inhibitor of SRC-family kinase
7 ly kinase negative regulatory proteins, Csk (C-terminal Src kinase), and its transmembrane adaptor, C
8 domain-containing phosphatase-1 (Shp-1) and C-terminal Src kinase, and we use modeling of early TCR
10 d by additional experimentation leaving CSK (C-terminal Src kinase) as the strongest candidate for ib
13 ing the second phosphorylation event include C-terminal Src kinase (Csk) and Bruton's tyrosine kinase
14 one or both of two known inhibitors of Lck, C-terminal Src kinase (Csk) and protein tyrosine phospha
15 ynamically controlled by the tyrosine kinase C-terminal Src kinase (CSK) and the tyrosine phosphatase
16 rotein kinase A (PKA) complex that activates C-terminal Src kinase (CSK) and thereby down-regulates k
17 hown by inhibition through overexpression of C-terminal Src kinase (Csk) and transdominant negative S
19 study, we assessed the cooperative roles of C-terminal Src kinase (Csk) binding protein (Cbp) and Ca
25 d that the IGF-IR and IR associated with the C-terminal Src kinase (CSK) following ligand stimulation
26 he crystal structure of the kinase domain of C-terminal Src kinase (CSK) has been determined by molec
30 at cells expressing either LAIR-1 mutants or C-terminal Src kinase (CSK) mutants, and 3) T cells from
33 ras, activation of c-Src through deletion of C-terminal Src kinase (CSK) results in the development o
35 Downregulation of Src family kinases by the C-terminal Src kinase (Csk) suppressed Btk* activation a
37 slocation, while promoting the expression of C-terminal Src kinase (CSK), a negative regulator of Src
39 xamates as metal-mediated inhibitors against C-terminal Src kinase (Csk), a protein tyrosine kinase.
41 that regulate LCK homeostasis, such as CD45, C-terminal Src kinase (CSK), and c-Cbl, in lipid raft do
44 LLCPKcl4 with an expression construct of the C-terminal Src kinase (CSK), which inhibits Src family k
46 ctivity is controlled by the upstream kinase C-terminal Src kinase (CSK), whose activity, in turn, is
54 T-cell activation is negatively regulated by C-terminal Src kinase (CSK); however, the exact mechanis
55 ecific interaction between the SH3 domain of C-terminal Src kinase (Csk-SH3) and a proline-rich pepti
56 trate that regulation of Src64 by Drosophila C-terminal-Src Kinase (Csk) contributes to the packaging
61 se inhibitor PP2 and the negative regulatory C-terminal Src kinase in GT1-7 cells but not in HEK293 c
63 L:OX40 interaction led to the recruitment of C-terminal src kinase into lipid rafts, causing a prefer
67 al cell adhesion and migration by activating C-terminal Src kinase, leading to inhibition of pp60Src.
68 Transient expression of plasmids containing C-terminal Src kinase or kinase-deficient dominant-negat
69 ring of an inhibitory protein kinase A (PKA)-C-terminal Src kinase pathway assembled in lipid rafts.
70 Further, DCsk (the Drosophila homolog of the C-terminal Src kinase) phosphorylates and interacts gene
72 nhibits TCR-mediated signaling by recruiting C-terminal Src kinase to the membrane and/or receptor co
74 of SFK activation: release of inhibition by C-terminal Src kinase, weakening of the inhibitory intra
75 culate that the protein-tyrosine kinase Csk (C-terminal Src kinase), which is also activated by Galph