《进展》稿件标题:环境变化和时序衰老过程中酵母蛋白激酶 Sch9 磷酸化的调控 稿件编号: 刘军 闾磊 郄蓓蓓 刘科 (四川大学生命科学学院生物资源与生态环境教育部重点实验室 成都 ) Western blot 全胶图 - 补充材料
Band of T570 site phosphorylated Sch9 sch9Δ-pRS416-SCH9-3HA 2% glucose 0.5% gluocse sch9Δ-pRS416-SCH9-3HA 0.5% glucose sch9Δ-Vector sch9Δ-pRS416-SCH9-3HA 2% glucose sch9Δ-pRS416-SCH9-3HA 0.5% glucose sch9Δ-Vector
Fig1 (a) Specificity of anti-T737-P antibody Sch9- 3HA Anti-HA Anti-T737-P T737-P Rapamycin: - + Sch9 T737 residue phosphorylation Non-specific band
Fig1 (b) Sch9-3HA (Stationary phase) Sch9- 3HA Time (min) Non-specific band - C 2%Glc 2%Gal 2%Suc2%Mal2%Gal2%EtOH Anti-HA
Fig1 (b) T570-P (Stationary phase)
Fig1 (b) T737-P (Stationary phase) Time (min) C 2%Glc 2%Gal 2%Suc2%Mal2%Gal2%EtOH T737-P Non-specific band Anti-T737-P
Fig1 (c) Sch9-3HA (Exponential phase) Time (min) + Glc + Gln - Glc + Gln re-add Glc + Glc - Gln re-add Gln Sch9-3HA Exponential phase(15h) T570A-Sch9- 5HA 24H Non-specific band Anti-HA
Fig1 (c) T570-P (Exponential phase) T570-P Anti-T570-P
Fig1 (c) T737-P (Exponential phase) This is a control that Sch9 T737 residue lose phosphorylation completely after glucose depletion Anti-T737-P
Fig1 (d) Sch9-3HA (Stationary phase) Time (min) + Glc + Gln - Glc + Gln re-add Glc + Glc - Gln re-add Gln Sch9-3HA Early stationary phase(72h) T570A-Sch9- 5HA 72H Anti-HA
Fig1 (d) T570-P (Stationary phase) T570-P Anti-T570-P
Fig1 (d) T737-P (Stationary phase) This is a control that Sch9 T737 residue lose phosphorylation completely after glucose depletion Anti-T737-P
Fig2 (a) (Exponential phase) Long exposure time Short exposure time
Fig2 (b) Sch9-3HA (Exponential phase) Time (min) Mock0.5 M NaCl0.3 M H 2 O 2 38 ℃ Sch9- 3HA Non-specific band Anti-HA
Fig2 (b) T570-P (Exponential phase) Time (min) Mock0.5 M NaCl0.3 M H 2 O 2 38 ℃ T570-P Non-specific band Anti-T570-P
Fig2 (b) T737-P (Exponential phase) Time (min) Mock0.5 M NaCl0.3 M H 2 O 2 38 ℃ T737-P Non-specific band Anti-T737-P
Fig2 (b) Actin Loading control (Exponential phase) Time (min) Mock0.5 M NaCl0.3 M H 2 O 2 38 ℃ Anti- Actin Actin Non-specific band
Fig2 (c) Sch9-3HA (Exponential phase) Time (min) MockpH2.5pH6.0 pH mM HAc pH mM HAc pH mM HAc Sch9- 3HA Non-specific band Anti-HA
Fig2 (c) T570-P (Exponential phase) Non-specific band
Fig2 (c) T737-P (Exponential phase) Time (min) MockpH2.5pH6.0 pH mM HAc pH mM HAc pH mM HAc T737-P Non-specific band
Fig2 (d) Sch9-3HA (Exponential phase) Time (min) Mock1 M Glc1 M Gly1 M Sorbitol Sch9- 3HA Non-specific band
Fig2 (d) T570-P (Exponential phase)
Fig2 (d) T737-P (Exponential phase) Time (min) Mock1 M Glc1 M Gly1 M Sorbitol T737-P Non-specific band
Fig4 (a) Sch9-6HIS Time-course experiment Sch9-6HIS Over-expression T570-P Non-specific band Anti-HIS Anit-T570-P Time of Induction (h)
Fig4 (e) Sch9-3HA Time-course experiment
Fig4 (e) T570-P Time-course experiment Time (h) Non-specific band T570-P 2%Glucose T570-P 0.5%Glucose Non-specific band 10 uM PHS T570-P
Fig4 (e) T737-P Time-course experiment Time (h) T737-P 2%Glucose 0.5%Glucose Non-specific band 10 uM PHS Anti-T737-P
Fig4 (e) Actin Loading control 2%Glucose 0.5%Glucose Time (h) Actin 10 uM PHS Actin Anti-Actin
Fig4 (f) T570-P (TB50 wildtype strain) Anti-T570-P
Fig4 (f) T737-P (TB50 wildtype strain) Time (h) T737-P 2%Glucose 0.5%Glucose 10 uM PHS Anti-T737-P
Fig4 (f) Actin Loading control (TB50 wildtype strain) Time (h) %Glucose 0.5%Glucose actin Anti-Actin