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Activation of kinases in P. stomatis (Ps)- challenged neutrophils: Human neutrophils (10 × 10 6 /mL) were either left untreated (basal) or challenged with Ps at an MOI 10 for 5, 15, 30, 60, and 90 min. Cell lysates were analyzed by immunoblotting using phospho-specific antibodies and subsequently reprobed for total protein or β-actin as loading controls. Representative immunoblots showing phosphorylation kinetics ( a , e ) and densitometric analysis of ERK1/2, <t>p38,</t> AKT, and Src and Syk ( b , c , d , f , g ) are shown. Densitometric analyses of phosphorylated kinases were normalized to their respective total protein levels, except for p-TAK1, which was normalized to β-actin. Data represents the mean ± SEM of three independent experiments, and statistical significance was determined by one-way ANOVA (* p < 0.05, ** p < 0.01, *** p < 0.001). MOI, multiplicity of infection.
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Activation of kinases in P. stomatis (Ps)- challenged neutrophils: Human neutrophils (10 × 10 6 /mL) were either left untreated (basal) or challenged with Ps at an MOI 10 for 5, 15, 30, 60, and 90 min. Cell lysates were analyzed by immunoblotting using phospho-specific antibodies and subsequently reprobed for total protein or β-actin as loading controls. Representative immunoblots showing phosphorylation kinetics ( a , e ) and densitometric analysis of ERK1/2, <t>p38,</t> AKT, and Src and Syk ( b , c , d , f , g ) are shown. Densitometric analyses of phosphorylated kinases were normalized to their respective total protein levels, except for p-TAK1, which was normalized to β-actin. Data represents the mean ± SEM of three independent experiments, and statistical significance was determined by one-way ANOVA (* p < 0.05, ** p < 0.01, *** p < 0.001). MOI, multiplicity of infection.
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<t>TLCA</t> regulates mitochondrial biogenesis and altered myofiber type composition through <t>the</t> <t>p38</t> MAPK/PGC-1α signaling pathway. A Cell viability of cells treated with different concentrations of TLCA for 24 h (n = 10). B & F The mRNA expression of MYH1A and MYH7B (n = 6). C & G Intracellular enzymatic activities of succinate dehydrogenase (SDH) and lactate dehydrogenase (LDH), ATP content and mitochondrial DNA (mtDNA) content (n = 6). D & H The mRNA expression of HK1, GPI, PGAM1, PGK1, PYGL, PGC-1α, NRF1 and TFAM (n = 6). E The protein expression of PGC-1α, p38 MAPK and phosphorylation p38 MAPK (n = 3). I The protein expression of PGC-1α (n = 3). Data were shown as mean ± SD; *Represents significant difference when compared with 0 μM TLCA or CON group, and # represents significant difference when compared with TLCA group. *& # P < 0.05, ⁎⁎ & ## P < 0.01, ⁎⁎⁎ & ### P < 0.001.
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<t>TLCA</t> regulates mitochondrial biogenesis and altered myofiber type composition through <t>the</t> <t>p38</t> MAPK/PGC-1α signaling pathway. A Cell viability of cells treated with different concentrations of TLCA for 24 h (n = 10). B & F The mRNA expression of MYH1A and MYH7B (n = 6). C & G Intracellular enzymatic activities of succinate dehydrogenase (SDH) and lactate dehydrogenase (LDH), ATP content and mitochondrial DNA (mtDNA) content (n = 6). D & H The mRNA expression of HK1, GPI, PGAM1, PGK1, PYGL, PGC-1α, NRF1 and TFAM (n = 6). E The protein expression of PGC-1α, p38 MAPK and phosphorylation p38 MAPK (n = 3). I The protein expression of PGC-1α (n = 3). Data were shown as mean ± SD; *Represents significant difference when compared with 0 μM TLCA or CON group, and # represents significant difference when compared with TLCA group. *& # P < 0.05, ⁎⁎ & ## P < 0.01, ⁎⁎⁎ & ### P < 0.001.
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Effects of dietary vitamin D 3 supplementation on jejunal phosphorylation levels of <t>PKA,</t> PKC, PI3K, p38MAPK, <t>and</t> <t>ERK</t> in broiler chickens (19 d) (Experiment 1). The control and vitamin D 3 diets contained 0 and 1000 IU/kg vitamin D 3 , respectively. (a) p-PKA/t-PKA; (b) p-PKC/t-PKC; (c) p-PI3K/t-PI3K; (d) p-p38MAPK/t-p38MAPK; (e) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).
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Effects of dietary vitamin D 3 supplementation on jejunal phosphorylation levels of PKA, PKC, PI3K, <t>p38MAPK,</t> and ERK in broiler chickens (19 d) (Experiment 1). The control and vitamin D 3 diets contained 0 and 1000 IU/kg vitamin D 3 , respectively. (a) p-PKA/t-PKA; (b) p-PKC/t-PKC; (c) p-PI3K/t-PI3K; (d) <t>p-p38MAPK/t-p38MAPK;</t> (e) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).
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Effects of dietary vitamin D 3 supplementation on jejunal phosphorylation levels of PKA, PKC, PI3K, <t>p38MAPK,</t> and ERK in broiler chickens (19 d) (Experiment 1). The control and vitamin D 3 diets contained 0 and 1000 IU/kg vitamin D 3 , respectively. (a) p-PKA/t-PKA; (b) p-PKC/t-PKC; (c) p-PI3K/t-PI3K; (d) <t>p-p38MAPK/t-p38MAPK;</t> (e) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).
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Activation of kinases in P. stomatis (Ps)- challenged neutrophils: Human neutrophils (10 × 10 6 /mL) were either left untreated (basal) or challenged with Ps at an MOI 10 for 5, 15, 30, 60, and 90 min. Cell lysates were analyzed by immunoblotting using phospho-specific antibodies and subsequently reprobed for total protein or β-actin as loading controls. Representative immunoblots showing phosphorylation kinetics ( a , e ) and densitometric analysis of ERK1/2, p38, AKT, and Src and Syk ( b , c , d , f , g ) are shown. Densitometric analyses of phosphorylated kinases were normalized to their respective total protein levels, except for p-TAK1, which was normalized to β-actin. Data represents the mean ± SEM of three independent experiments, and statistical significance was determined by one-way ANOVA (* p < 0.05, ** p < 0.01, *** p < 0.001). MOI, multiplicity of infection.

Journal: Journal of Innate Immunity

Article Title: Neutrophil Killing of Peptoanaerobacter stomatis Requires TAK1-Driven Degranulation

doi: 10.1159/000553300

Figure Lengend Snippet: Activation of kinases in P. stomatis (Ps)- challenged neutrophils: Human neutrophils (10 × 10 6 /mL) were either left untreated (basal) or challenged with Ps at an MOI 10 for 5, 15, 30, 60, and 90 min. Cell lysates were analyzed by immunoblotting using phospho-specific antibodies and subsequently reprobed for total protein or β-actin as loading controls. Representative immunoblots showing phosphorylation kinetics ( a , e ) and densitometric analysis of ERK1/2, p38, AKT, and Src and Syk ( b , c , d , f , g ) are shown. Densitometric analyses of phosphorylated kinases were normalized to their respective total protein levels, except for p-TAK1, which was normalized to β-actin. Data represents the mean ± SEM of three independent experiments, and statistical significance was determined by one-way ANOVA (* p < 0.05, ** p < 0.01, *** p < 0.001). MOI, multiplicity of infection.

Article Snippet: The following inhibitors were used: diphenyleneiodonium (DPI; 10 μ m ; NOX2 inhibitor; Sigma-Aldrich), 5Z-7-oxozeaenol (1 μ m ; TAK1 inhibitor), SB203580 (10 μ m ; p38 MAPK inhibitor; MedChemExpress), U0126 (10 μ m ; ERK inhibitor; Calbiochem), LY294002 (10 μ m ; PI3K inhibitor; Calbiochem), piceatannol (10 μ m ; Syk inhibitor; Cayman Chemical), Src-1 (10 μ m ; Src family kinase inhibitor; Cayman Chemical), and GSK484 (10 μ m ; PAD4 inhibitor; Cayman Chemical).

Techniques: Activation Assay, Western Blot, Phospho-proteomics, Infection

TAK1 acts as a critical regulator for kinase activation during P. stomatis (Ps) challenge: Human neutrophils (10 × 10 6 /mL) were either left untreated (basal) or challenged with Ps for 30 min after the indicated inhibitor pre-treatment. Cell lysates were analyzed by immunoblotting using phospho-specific antibodies and subsequently reprobed for total protein or β-actin as loading controls. Representative immunoblots and densitometric analysis of ERK1/2 ( a ), p38 ( b ), AKT ( c ), Src ( d ), and Syk ( e ) are shown. Densitometric analyses of phosphorylated kinases were normalized to β-actin. Data represent the mean ± SEM of three independent experiments, and statistical significance was determined by one-way ANOVA (* p < 0.05, ** p < 0.01, *** p < 0.001).

Journal: Journal of Innate Immunity

Article Title: Neutrophil Killing of Peptoanaerobacter stomatis Requires TAK1-Driven Degranulation

doi: 10.1159/000553300

Figure Lengend Snippet: TAK1 acts as a critical regulator for kinase activation during P. stomatis (Ps) challenge: Human neutrophils (10 × 10 6 /mL) were either left untreated (basal) or challenged with Ps for 30 min after the indicated inhibitor pre-treatment. Cell lysates were analyzed by immunoblotting using phospho-specific antibodies and subsequently reprobed for total protein or β-actin as loading controls. Representative immunoblots and densitometric analysis of ERK1/2 ( a ), p38 ( b ), AKT ( c ), Src ( d ), and Syk ( e ) are shown. Densitometric analyses of phosphorylated kinases were normalized to β-actin. Data represent the mean ± SEM of three independent experiments, and statistical significance was determined by one-way ANOVA (* p < 0.05, ** p < 0.01, *** p < 0.001).

Article Snippet: The following inhibitors were used: diphenyleneiodonium (DPI; 10 μ m ; NOX2 inhibitor; Sigma-Aldrich), 5Z-7-oxozeaenol (1 μ m ; TAK1 inhibitor), SB203580 (10 μ m ; p38 MAPK inhibitor; MedChemExpress), U0126 (10 μ m ; ERK inhibitor; Calbiochem), LY294002 (10 μ m ; PI3K inhibitor; Calbiochem), piceatannol (10 μ m ; Syk inhibitor; Cayman Chemical), Src-1 (10 μ m ; Src family kinase inhibitor; Cayman Chemical), and GSK484 (10 μ m ; PAD4 inhibitor; Cayman Chemical).

Techniques: Activation Assay, Western Blot

P. stomatis evades TAK1-dependent ROS- and NET-mediated killing but not degranulation. For the killing assay, neutrophils were pretreated for 15 min with inhibitors followed by P. stomatis incubation for 0 and 3 h. Then, neutrophil cell pellets (for cell-associated) and supernatant (for extracellular) were used to determine and quantify the CFU, which was quantified for percent killing after 1 µ m of 5Z-7-oxozeaenol ( a ), 10 µ m of DPI ( b ), GSK484 ( c ), or 10 µ m SB203580 pre-treatment. d P. stomatis was exposed to conditioned media collected from either unstimulated (US) or latrunculin +fMLF (L+F) stimulated neutrophils for 3 h and CFU enumeration was performed. Percent killing was determined by quantifying P. stomatis exposed to stimulated conditioned media over unstimulated condition. Data represents the mean ± SEM of three independent experiments, and statistical significance was determined by unpaired t -test for each pair (* p < 0.05, ** p < 0.01). ns, non-significant.

Journal: Journal of Innate Immunity

Article Title: Neutrophil Killing of Peptoanaerobacter stomatis Requires TAK1-Driven Degranulation

doi: 10.1159/000553300

Figure Lengend Snippet: P. stomatis evades TAK1-dependent ROS- and NET-mediated killing but not degranulation. For the killing assay, neutrophils were pretreated for 15 min with inhibitors followed by P. stomatis incubation for 0 and 3 h. Then, neutrophil cell pellets (for cell-associated) and supernatant (for extracellular) were used to determine and quantify the CFU, which was quantified for percent killing after 1 µ m of 5Z-7-oxozeaenol ( a ), 10 µ m of DPI ( b ), GSK484 ( c ), or 10 µ m SB203580 pre-treatment. d P. stomatis was exposed to conditioned media collected from either unstimulated (US) or latrunculin +fMLF (L+F) stimulated neutrophils for 3 h and CFU enumeration was performed. Percent killing was determined by quantifying P. stomatis exposed to stimulated conditioned media over unstimulated condition. Data represents the mean ± SEM of three independent experiments, and statistical significance was determined by unpaired t -test for each pair (* p < 0.05, ** p < 0.01). ns, non-significant.

Article Snippet: The following inhibitors were used: diphenyleneiodonium (DPI; 10 μ m ; NOX2 inhibitor; Sigma-Aldrich), 5Z-7-oxozeaenol (1 μ m ; TAK1 inhibitor), SB203580 (10 μ m ; p38 MAPK inhibitor; MedChemExpress), U0126 (10 μ m ; ERK inhibitor; Calbiochem), LY294002 (10 μ m ; PI3K inhibitor; Calbiochem), piceatannol (10 μ m ; Syk inhibitor; Cayman Chemical), Src-1 (10 μ m ; Src family kinase inhibitor; Cayman Chemical), and GSK484 (10 μ m ; PAD4 inhibitor; Cayman Chemical).

Techniques: Incubation

TLCA regulates mitochondrial biogenesis and altered myofiber type composition through the p38 MAPK/PGC-1α signaling pathway. A Cell viability of cells treated with different concentrations of TLCA for 24 h (n = 10). B & F The mRNA expression of MYH1A and MYH7B (n = 6). C & G Intracellular enzymatic activities of succinate dehydrogenase (SDH) and lactate dehydrogenase (LDH), ATP content and mitochondrial DNA (mtDNA) content (n = 6). D & H The mRNA expression of HK1, GPI, PGAM1, PGK1, PYGL, PGC-1α, NRF1 and TFAM (n = 6). E The protein expression of PGC-1α, p38 MAPK and phosphorylation p38 MAPK (n = 3). I The protein expression of PGC-1α (n = 3). Data were shown as mean ± SD; *Represents significant difference when compared with 0 μM TLCA or CON group, and # represents significant difference when compared with TLCA group. *& # P < 0.05, ⁎⁎ & ## P < 0.01, ⁎⁎⁎ & ### P < 0.001.

Journal: Poultry Science

Article Title: Gut microbiota-derived taurolithocholic acid modulates myofiber-type switching via p38 MAPK/PGC-1α signaling underlying breed differences between Arbor Acres and Taoyuan chickens

doi: 10.1016/j.psj.2026.106914

Figure Lengend Snippet: TLCA regulates mitochondrial biogenesis and altered myofiber type composition through the p38 MAPK/PGC-1α signaling pathway. A Cell viability of cells treated with different concentrations of TLCA for 24 h (n = 10). B & F The mRNA expression of MYH1A and MYH7B (n = 6). C & G Intracellular enzymatic activities of succinate dehydrogenase (SDH) and lactate dehydrogenase (LDH), ATP content and mitochondrial DNA (mtDNA) content (n = 6). D & H The mRNA expression of HK1, GPI, PGAM1, PGK1, PYGL, PGC-1α, NRF1 and TFAM (n = 6). E The protein expression of PGC-1α, p38 MAPK and phosphorylation p38 MAPK (n = 3). I The protein expression of PGC-1α (n = 3). Data were shown as mean ± SD; *Represents significant difference when compared with 0 μM TLCA or CON group, and # represents significant difference when compared with TLCA group. *& # P < 0.05, ⁎⁎ & ## P < 0.01, ⁎⁎⁎ & ### P < 0.001.

Article Snippet: The differentiation medium containing TLCA and p38 MAPK inhibitor SB203580 (152121-47-6, MedChemExpress, Shanghai, China) was added to CPMs after 4 days of differentiation, and the cells were collected after 24 h.

Techniques: Expressing, Phospho-proteomics

Effects of dietary vitamin D 3 supplementation on jejunal phosphorylation levels of PKA, PKC, PI3K, p38MAPK, and ERK in broiler chickens (19 d) (Experiment 1). The control and vitamin D 3 diets contained 0 and 1000 IU/kg vitamin D 3 , respectively. (a) p-PKA/t-PKA; (b) p-PKC/t-PKC; (c) p-PI3K/t-PI3K; (d) p-p38MAPK/t-p38MAPK; (e) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Journal: Poultry Science

Article Title: PKA and PKC signaling pathways mediate vitamin D₃-regulated intestinal phosphorus absorption in broiler chickens

doi: 10.1016/j.psj.2026.106762

Figure Lengend Snippet: Effects of dietary vitamin D 3 supplementation on jejunal phosphorylation levels of PKA, PKC, PI3K, p38MAPK, and ERK in broiler chickens (19 d) (Experiment 1). The control and vitamin D 3 diets contained 0 and 1000 IU/kg vitamin D 3 , respectively. (a) p-PKA/t-PKA; (b) p-PKC/t-PKC; (c) p-PI3K/t-PI3K; (d) p-p38MAPK/t-p38MAPK; (e) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Article Snippet: PVDF membranes were incubated with primary antibodies against NaPi-IIb (1:1000, A9460; ABclonal, Wuhan, China), phosphorylated PKA (p-PKA; 1:1000, 5661S), phosphorylated PI3K (p-PI3K; 1:1000, 4228), phosphorylated ERK (p-ERK; 1:1000, 9101S), phosphorylated p38MAPK (p-p38MAPK; 1:1000, 9216S), total PKA (t-PKA; 1:1000, 5842S) (Cell Signaling Technology, Boston, USA), total PI3K (t-PI3K; 1:10000, 60225-1-Ig), total ERK (t-ERK; 1:8000, 11257-1-AP-50), total p38MAPK(t-p38MAPK; 1:1000, 14064-1-AP), total PKC (t-PKC; 1:1000, 21991-1-AP), phosphorylated PKC (p-PKC; 1:5000, 29123-1-AP), and GAPDH (1:10000, 60004-1-Ig) (Proteintech, Wuhan, China).

Techniques: Phospho-proteomics, Control, Quantitative Proteomics

Effects of the PKA inhibitor H-89 on jejunal phosphorylation levels of PKC, PI3K, p38MAPK, and ERK in broiler chickens (10–15 d) (Experiment 2). (a) p-PKC/t-PKC; (b) p-PI3K/t-PI3K; (c) p-p38MAPK/t-p38MAPK; (d) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Journal: Poultry Science

Article Title: PKA and PKC signaling pathways mediate vitamin D₃-regulated intestinal phosphorus absorption in broiler chickens

doi: 10.1016/j.psj.2026.106762

Figure Lengend Snippet: Effects of the PKA inhibitor H-89 on jejunal phosphorylation levels of PKC, PI3K, p38MAPK, and ERK in broiler chickens (10–15 d) (Experiment 2). (a) p-PKC/t-PKC; (b) p-PI3K/t-PI3K; (c) p-p38MAPK/t-p38MAPK; (d) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Article Snippet: PVDF membranes were incubated with primary antibodies against NaPi-IIb (1:1000, A9460; ABclonal, Wuhan, China), phosphorylated PKA (p-PKA; 1:1000, 5661S), phosphorylated PI3K (p-PI3K; 1:1000, 4228), phosphorylated ERK (p-ERK; 1:1000, 9101S), phosphorylated p38MAPK (p-p38MAPK; 1:1000, 9216S), total PKA (t-PKA; 1:1000, 5842S) (Cell Signaling Technology, Boston, USA), total PI3K (t-PI3K; 1:10000, 60225-1-Ig), total ERK (t-ERK; 1:8000, 11257-1-AP-50), total p38MAPK(t-p38MAPK; 1:1000, 14064-1-AP), total PKC (t-PKC; 1:1000, 21991-1-AP), phosphorylated PKC (p-PKC; 1:5000, 29123-1-AP), and GAPDH (1:10000, 60004-1-Ig) (Proteintech, Wuhan, China).

Techniques: Phospho-proteomics, Quantitative Proteomics

Effects of the PKC inhibitor staurosporine on duodenal phosphorylation levels of PKA, PI3K, p38MAPK, and ERK in broiler chickens (13 d) (Experiment 3). (a) p-PKA/t-PKA; (b) p-PI3K/t-PI3K; (c) p-p38MAPK/t-p38MAPK; (d) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Journal: Poultry Science

Article Title: PKA and PKC signaling pathways mediate vitamin D₃-regulated intestinal phosphorus absorption in broiler chickens

doi: 10.1016/j.psj.2026.106762

Figure Lengend Snippet: Effects of the PKC inhibitor staurosporine on duodenal phosphorylation levels of PKA, PI3K, p38MAPK, and ERK in broiler chickens (13 d) (Experiment 3). (a) p-PKA/t-PKA; (b) p-PI3K/t-PI3K; (c) p-p38MAPK/t-p38MAPK; (d) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Article Snippet: PVDF membranes were incubated with primary antibodies against NaPi-IIb (1:1000, A9460; ABclonal, Wuhan, China), phosphorylated PKA (p-PKA; 1:1000, 5661S), phosphorylated PI3K (p-PI3K; 1:1000, 4228), phosphorylated ERK (p-ERK; 1:1000, 9101S), phosphorylated p38MAPK (p-p38MAPK; 1:1000, 9216S), total PKA (t-PKA; 1:1000, 5842S) (Cell Signaling Technology, Boston, USA), total PI3K (t-PI3K; 1:10000, 60225-1-Ig), total ERK (t-ERK; 1:8000, 11257-1-AP-50), total p38MAPK(t-p38MAPK; 1:1000, 14064-1-AP), total PKC (t-PKC; 1:1000, 21991-1-AP), phosphorylated PKC (p-PKC; 1:5000, 29123-1-AP), and GAPDH (1:10000, 60004-1-Ig) (Proteintech, Wuhan, China).

Techniques: Phospho-proteomics, Quantitative Proteomics

Effects of dietary vitamin D 3 supplementation on jejunal phosphorylation levels of PKA, PKC, PI3K, p38MAPK, and ERK in broiler chickens (19 d) (Experiment 1). The control and vitamin D 3 diets contained 0 and 1000 IU/kg vitamin D 3 , respectively. (a) p-PKA/t-PKA; (b) p-PKC/t-PKC; (c) p-PI3K/t-PI3K; (d) p-p38MAPK/t-p38MAPK; (e) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Journal: Poultry Science

Article Title: PKA and PKC signaling pathways mediate vitamin D₃-regulated intestinal phosphorus absorption in broiler chickens

doi: 10.1016/j.psj.2026.106762

Figure Lengend Snippet: Effects of dietary vitamin D 3 supplementation on jejunal phosphorylation levels of PKA, PKC, PI3K, p38MAPK, and ERK in broiler chickens (19 d) (Experiment 1). The control and vitamin D 3 diets contained 0 and 1000 IU/kg vitamin D 3 , respectively. (a) p-PKA/t-PKA; (b) p-PKC/t-PKC; (c) p-PI3K/t-PI3K; (d) p-p38MAPK/t-p38MAPK; (e) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Article Snippet: PVDF membranes were incubated with primary antibodies against NaPi-IIb (1:1000, A9460; ABclonal, Wuhan, China), phosphorylated PKA (p-PKA; 1:1000, 5661S), phosphorylated PI3K (p-PI3K; 1:1000, 4228), phosphorylated ERK (p-ERK; 1:1000, 9101S), phosphorylated p38MAPK (p-p38MAPK; 1:1000, 9216S), total PKA (t-PKA; 1:1000, 5842S) (Cell Signaling Technology, Boston, USA), total PI3K (t-PI3K; 1:10000, 60225-1-Ig), total ERK (t-ERK; 1:8000, 11257-1-AP-50), total p38MAPK(t-p38MAPK; 1:1000, 14064-1-AP), total PKC (t-PKC; 1:1000, 21991-1-AP), phosphorylated PKC (p-PKC; 1:5000, 29123-1-AP), and GAPDH (1:10000, 60004-1-Ig) (Proteintech, Wuhan, China).

Techniques: Phospho-proteomics, Control, Quantitative Proteomics

Effects of the PKA inhibitor H-89 on jejunal phosphorylation levels of PKC, PI3K, p38MAPK, and ERK in broiler chickens (10–15 d) (Experiment 2). (a) p-PKC/t-PKC; (b) p-PI3K/t-PI3K; (c) p-p38MAPK/t-p38MAPK; (d) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Journal: Poultry Science

Article Title: PKA and PKC signaling pathways mediate vitamin D₃-regulated intestinal phosphorus absorption in broiler chickens

doi: 10.1016/j.psj.2026.106762

Figure Lengend Snippet: Effects of the PKA inhibitor H-89 on jejunal phosphorylation levels of PKC, PI3K, p38MAPK, and ERK in broiler chickens (10–15 d) (Experiment 2). (a) p-PKC/t-PKC; (b) p-PI3K/t-PI3K; (c) p-p38MAPK/t-p38MAPK; (d) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Article Snippet: PVDF membranes were incubated with primary antibodies against NaPi-IIb (1:1000, A9460; ABclonal, Wuhan, China), phosphorylated PKA (p-PKA; 1:1000, 5661S), phosphorylated PI3K (p-PI3K; 1:1000, 4228), phosphorylated ERK (p-ERK; 1:1000, 9101S), phosphorylated p38MAPK (p-p38MAPK; 1:1000, 9216S), total PKA (t-PKA; 1:1000, 5842S) (Cell Signaling Technology, Boston, USA), total PI3K (t-PI3K; 1:10000, 60225-1-Ig), total ERK (t-ERK; 1:8000, 11257-1-AP-50), total p38MAPK(t-p38MAPK; 1:1000, 14064-1-AP), total PKC (t-PKC; 1:1000, 21991-1-AP), phosphorylated PKC (p-PKC; 1:5000, 29123-1-AP), and GAPDH (1:10000, 60004-1-Ig) (Proteintech, Wuhan, China).

Techniques: Phospho-proteomics, Quantitative Proteomics

Effects of the PKC inhibitor staurosporine on duodenal phosphorylation levels of PKA, PI3K, p38MAPK, and ERK in broiler chickens (13 d) (Experiment 3). (a) p-PKA/t-PKA; (b) p-PI3K/t-PI3K; (c) p-p38MAPK/t-p38MAPK; (d) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Journal: Poultry Science

Article Title: PKA and PKC signaling pathways mediate vitamin D₃-regulated intestinal phosphorus absorption in broiler chickens

doi: 10.1016/j.psj.2026.106762

Figure Lengend Snippet: Effects of the PKC inhibitor staurosporine on duodenal phosphorylation levels of PKA, PI3K, p38MAPK, and ERK in broiler chickens (13 d) (Experiment 3). (a) p-PKA/t-PKA; (b) p-PI3K/t-PI3K; (c) p-p38MAPK/t-p38MAPK; (d) p-ERK/t-ERK. Protein abundance values are means ± SD of four replicates per treatment (1 broiler per replicate) (n = 4). Values with different letters differ between treatments ( P < 0.05).

Article Snippet: PVDF membranes were incubated with primary antibodies against NaPi-IIb (1:1000, A9460; ABclonal, Wuhan, China), phosphorylated PKA (p-PKA; 1:1000, 5661S), phosphorylated PI3K (p-PI3K; 1:1000, 4228), phosphorylated ERK (p-ERK; 1:1000, 9101S), phosphorylated p38MAPK (p-p38MAPK; 1:1000, 9216S), total PKA (t-PKA; 1:1000, 5842S) (Cell Signaling Technology, Boston, USA), total PI3K (t-PI3K; 1:10000, 60225-1-Ig), total ERK (t-ERK; 1:8000, 11257-1-AP-50), total p38MAPK(t-p38MAPK; 1:1000, 14064-1-AP), total PKC (t-PKC; 1:1000, 21991-1-AP), phosphorylated PKC (p-PKC; 1:5000, 29123-1-AP), and GAPDH (1:10000, 60004-1-Ig) (Proteintech, Wuhan, China).

Techniques: Phospho-proteomics, Quantitative Proteomics