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1 city of Grsp1 complexes with Grp1, ARNO, and Cytohesin-1.
2 nd by phosphorylation of tandem PKC sites in Cytohesin-1.
3 mediated signaling of kinase Erk1/2 through cytohesin-1.
4 r an extra 3-base pair (GAG) exon present in cytohesin-1.
5 e critical for the specific interaction with cytohesin-1.
6 o-expressed with GRP1 or the related protein cytohesin-1.
7 139L decreased markedly the interaction with cytohesin-1.
8 guanine nucleotide exchange proteins such as cytohesin-1.
9 re to interact functionally with C-1 Sec7 or cytohesin-1.
10 ns the same structural components present in cytohesin -1, -2, and -3, including an approximately 200
12 tative mass spectrometry to show that ARL4C, Cytohesin-1/3, and ARF6 accumulate in the RBX2 mutant te
14 sing the yeast two-hybrid system, a cDNA for cytohesin-1, a approximately 50-kDa protein with ARF gua
19 st that the Grsp1 heterodimers with Grp1 and Cytohesin-1 adopt a largely antiparallel orientation.
22 of single amino acids in the Sec7 domains of cytohesin-1 and -2 showed that residue 30 is critical fo
29 p1 and Grp1 family proteins (Grp1, ARNO, and Cytohesin-1) as well as the oligomeric state, stoichiome
31 NO (Arf nucleotide binding site opener), and Cytohesin-1 bind phosphatidylinositol (PtdIns) 3,4,5-tri
34 nse to insulin, as were full-length GRP1 and cytohesin-1, but the PH domain of cytohesin-1 was not.
38 sing an RNA interference screen, we identify cytohesin 1 (CYTH1) as a critical mediator of adhesive p
39 in, as opposed to the triglycine in ARNO and cytohesin-1, directs its remarkable PtdIns(3,4,5)P(3) bi
48 s loss of DNA methylation enables HIF-driven cytohesin 1 interacting protein (CYTIP) expression to pr
51 at selective phosphoinositide recognition by cytohesin-1 isoforms promotes distinct subcellular local
53 1 Sec7 was much less substrate-specific than cytohesin-1, it appears that structure outside of the Se
54 When mixed with Grsp1, Grp1 homodimers and Cytohesin-1 monomers spontaneously re-equilibrate to for
56 participate in functional interactions with cytohesin-1 (or its catalytic domain C-1Sec7), which wer
57 onsistent with the previous observation that cytohesin-1 regulates the adhesiveness of alphaLbeta2 in
58 0 are also important in the interaction with cytohesin-1; replacement of Lys-38 with Gln, the corresp
60 Structure-based mutational analysis of the cytohesin-1 Sec7 domain has been used to identify residu
63 en ARF and Sec7-related proteins, effects of cytohesin-1, synthesized in Escherichia coli, on ARF act
65 oth control cells and in response to GRP1 or cytohesin-1 was insensitive to brefeldin A, consistent w
68 ndent on the coiled-coil domains of Cybr and cytohesin-1, was demonstrated by coimmunoprecipitation o
69 In contrast, another PI3K downstream target, cytohesin-1, was shown to mediate P. gingivalis fimbria-
70 ied activation of ADP ribosylation factor by cytohesin-1, we designate this cytokine-inducible protei
72 nsfected COS-7 cells, overexpressed ARD1 and cytohesin-1 were partially colocalized, as determined by
73 The solution structure of the Sec7 domain of cytohesin-1, which is responsible for both the protein's
74 The PH domain of the closely related protein cytohesin-1, which, through its Sec7 homology domain, re