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1 a-adrenergic receptor stimulation by using a phosphospecific antibody.
2 phosphorylation and by immunoblotting with a phosphospecific antibody.
3 s spectrometry analysis and detection with a phosphospecific antibody.
4 pectrometry and confirmed by mutagenesis and phosphospecific antibodies.
5 g two-dimensional-phosphopeptide mapping and phosphospecific antibodies.
6 en greater multiplexing without the need for phosphospecific antibodies.
7 TOF MS analysis, 2D gel electrophoresis, and phosphospecific antibodies.
8 due, which can subsequently be detected with phosphospecific antibodies.
9 inases was determined by immunoblotting with phosphospecific antibodies.
10  analyzed by SDS-PAGE and immunoblotted with phosphospecific antibodies.
11 n can be monitored with C-terminal tail FPR1-phosphospecific antibodies.
12  physiological modulation of rabphilin using phosphospecific antibodies.
13  kinase kinase 6 (MKK6), were assessed using phosphospecific antibodies.
14                           Using LC-MS/MS and phosphospecific antibodies, a novel IL-2/IL-15 inducible
15                                        Using phosphospecific antibodies (Abs) directed to single phos
16 n was evaluated by immunoblot analysis using phosphospecific antibodies against mitogen-activated pro
17                         In this study, using phosphospecific antibodies against rat IRS-1 phosphoryla
18                                              Phosphospecific antibodies against T308 and S473 were va
19 ed, in parallel, by biochemical assays using phosphospecific antibodies against the ppERK and pKv4.2.
20  present study, we have taken advantage of a phosphospecific antibody against Tyr789-phosphorylated R
21        In this report we used a polyreactive phosphospecific antibody (alpha-pDSQ) that recognizes a
22                                              Phosphospecific antibodies and immunohistochemistry were
23             In this study, we have generated phosphospecific antibodies and studied the developmental
24 lation was assessed by immunoblotting with a phosphospecific antibody (anti-Ser(P)(2448)) and with mT
25 ve detection of protein phosphorylation when phosphospecific antibodies are not available, and provid
26 generally recommended that immunoblots using phosphospecific antibodies be performed using bovine ser
27                                     By using phosphospecific antibodies, both residues were observed
28                    Using in vitro mapping, a phosphospecific antibody, co-transfection assays, and un
29                       Immunoblotting using a phosphospecific antibody confirms these sites as Plk3 ph
30                               Finally, these phosphospecific antibodies demonstrated enhanced stainin
31                                       Use of phosphospecific antibodies demonstrated that endogenous
32       These results were confirmed by use of phosphospecific antibodies directed against phosphoserin
33                                              Phosphospecific antibodies directed against serine 474 d
34 ibits markedly lower levels of labeling with phosphospecific antibodies directed against the S453, S5
35 using tandem mass spectrometry and generated phosphospecific antibodies for each of these sites.
36  Western analysis of the cell extracts using phosphospecific antibodies for MEK1/2 and ERK1/2 demonst
37                                        Using phosphospecific antibodies for six phosphorylation sites
38  characterized a suite of MYPT1 proteins and phosphospecific antibodies for specificity toward monoph
39                                We produced a phosphospecific antibody for this site in CPI-17 and use
40                  Western blot analysis using phosphospecific antibodies indicated that 7a protein act
41                          Immunoblotting with phosphospecific antibodies indicated that there was litt
42 radiation as low as 0.5 Gy, and binding of a phosphospecific antibody is detectable after the introdu
43 orylation of serine 369 was detected using a phosphospecific antibody (KOR-P) able to distinguish the
44 f ephrin-B signaling was investigated with a phosphospecific antibody on cryosections and retinal who
45                                  Using a new phosphospecific antibody (pPC2) to this site, we demonst
46 ey NKCC2 phosphorylation, as detected with a phosphospecific antibody, R5.
47 orylation of this residue can be detected by phosphospecific antibodies raised against the correspond
48 ts insulin-dependent immunoreactivity with a phosphospecific antibody raised against the protein kina
49                    By combining the use of a phosphospecific antibody recognizing a substrate motif o
50 m(s) of PKD activation, we developed a novel phosphospecific antibody recognizing phosphorylated Ser(
51                                    All three phosphospecific antibodies responded similarly to test d
52                   Western blot analysis with phosphospecific antibodies revealed that phosphorylation
53       However, Western blot analysis using a phosphospecific antibody revealed no increase in insulin
54                      Western blotting with a phosphospecific antibody revealed that BTK rapidly autop
55                 Western blot analysis, using phosphospecific antibodies, revealed that mitogen-activa
56                   Immunoblot analysis with a phosphospecific antibody showed that RIG-I serine 8 phos
57                          Immunoblotting with phosphospecific antibodies shows that activation of Fes
58                                              Phosphospecific antibodies that recognize sequences surr
59 ith young in a Western blot analysis using a phosphospecific antibody that recognizes phosphotyrosine
60 strate consensus sequence RXRXX(pS/pT) and a phosphospecific antibody that recognizes serine 21/9 of
61                                            A phosphospecific antibody that recognizes these sites sho
62                                      Using a phosphospecific antibody that specifically recognized SO
63 w, using mass spectrometry, mutagenesis, and phosphospecific antibodies, that agonist-regulated phosp
64                           We now show, using phosphospecific antibodies, that glucose and nitrogen ac
65                        Using newly developed phosphospecific antibodies to p300 (pSer(1834)), and sit
66                                              Phosphospecific antibodies to proteins from the Erk path
67                                    We raised phosphospecific antibodies to the four closely spaced si
68      To confirm these results, we procured a phosphospecific antibody to a peptide containing phospho
69                                      Using a phosphospecific antibody to Syk (Tyr525/Tyr526) that mea
70                               We generated a phosphospecific antibody to Thr(P)-214 in the T-loop of
71 44, anti-serine/threonine, and anti-tyrosine phosphospecific antibodies, to determine sCD44 concentra
72 oth p46 and p55 isoforms of JNK, measured by phosphospecific antibody, was increased severalfold.
73                                        Using phosphospecific antibodies we showed that extracellular
74                         Furthermore, using a phosphospecific antibody we show that phosphoserine-54 C
75 stern blotting and immunohistochemistry with phosphospecific antibodies, we demonstrate here that per
76  vitro kinase assays, mass spectrometry, and phosphospecific antibodies, we identify serine 226 in GL
77                              By generating a phosphospecific antibody, we demonstrate that tyrosine 9
78                                      Using a phosphospecific antibody, we found that Y174 is phosphor
79                         Furthermore, using a phosphospecific antibody, we have elucidated the develop
80 two-dimensional phosphopeptide mapping and a phosphospecific antibody, we identified tyrosine 813 as
81                                              Phosphospecific antibodies were used to identify phospho
82              Western analysis using a second phosphospecific antibody, which primarily recognizes PKD

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