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Cloning and expression of recombinant BSSL forms in cell lines should aid in further clarifying observed differences in DC-SIGN binding between BSSL proteins with variably sized repeat motifs.
In fact, immunoprecipitation and immunofluorescence assays have indicated that a complex between RB1CC1, hSNF5 and p53 forms in cell nuclei, and ChIP, quantitative RT-PCR and the luciferase assays for RB1, p16 and p21 have suggested that the coordinated transcriptional enhancements of these molecules are affected by the complex including RB1CC1, hSNF5 and p53.
To directly assess the presence of pS405/418 in the two cortactin conformational isomers, serum-starved UMSCC2 (Figure 3A) and 1483 (Figure 3B) cells were stimulated with EGF and the cortactin forms in cell lysates were analyzed at successive time points with anti-pS405 and anti-pS418 antibodies.
Nevertheless, LuPME5 was detected in both the unprocessed and processed forms in cell walls of flax cell cultures [ 13], and LuPME3 was only detected in the unprocessed form in flax seedlings and callus [ 14].
In this study we exploited the range of binding affinities present in polyclonal antibodies raised against the C-terminal peptide of CCN3 and analyzed with different immunoaffinity methods to ask whether CCN3 exists in alternate conformational forms in cell cultures and supernatants.
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IL-33 forms in cells supernatants were analyzed by pull down (PD) assay with ST2-Fc followed by immunoblot analysis with anti-IL-33 mAbs (cropped image is shown).
IL-33 forms in cells supernatants were analyzed by pull down (PD) assay with ST2-Fc followed by immunoblot analysis with anti-IL-33 mAbs (cropped images is shown).
G6PD is present in both monomeric and dimeric forms in cells.
Small GTPases in the Rac family work as molecular switches by cycling between GDP-bound inactive and GTP-bound active forms in cells.
Like other small GTPases, Rac GTPases function as molecular switches by cycling between GDP-bound inactive and GTP-bound active forms in cells.
The coenzyme is, therefore, found in two forms in cells: NAD is an oxidizing agent – it accepts electrons from other molecules and becomes reduced.
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