The largest database of trusted experimental protocols

3 protocols using rabbit anti phospho erbb4

1

Western Blot Analysis of ErbB4 Signaling

Check if the same lab product or an alternative is used in the 5 most similar protocols
Brain tissues were homogenized in RIPA lysis buffer (50 mM Tris-HCl, pH 7.4, 150 mM NaCl, 2 mM EDTA) containing 0.5% sodium deoxycholate, 0.1% SDS, 1 mM PMSF, 1 mM Na3VO4, 1 mM NaF, 1 mM DTT and protease inhibitor cocktail (ThermoFisher, 11697498001). Samples were resolved on SDS-PAGE and transferred to the nitrocellulose membranes (Cat# 1620112, Bio-Rad). After blocking with 5% BSA (bovine serum albumin in PBS-T, PBS containing 0.5% Tween-20), membranes were incubated in primary antibody (in 5% bovine) overnight at 4 °C. Membranes were washed with PBS-T (10 min◊3) and incubated in HRP-conjugated secondary antibody (Life Technology) at RT for 1 h. After wash, the immunoreactive bands were visualized by applying enhanced chemiluminescence substrates (Cat# 32106, Pierce), signals were captured with LI-COR Odyssey infrared imaging system. Antibodies used included: rabbit anti-ErbB4 (1:2000, 0618, generously provided by Cary Lai); rabbit anti-phospho-ErbB4 (1:200, Cat# 4757, Cell Signaling Technology, RRID:AB_2099987); mouse anti-β-actin (1:5000, Cat# A1978, Sigma, RRID:AB_476692); mouse anti-phospho-ERK (1:500, Cat# 9106, Cell Signaling Technology, RRID:AB_331768); rabbit anti-ERK (1:500, Cat# 9102, Cell Signaling Technology, RRID:AB_330744); mouse anti-NRG1 (1:200, Cat# MA5–12896, Invitrogen, RRID:AB_10986946).
+ Open protocol
+ Expand
2

Antibody Characterization for Neuroscience

Check if the same lab product or an alternative is used in the 5 most similar protocols
Antibodies used in this study were as follows: rabbit anti-phospho-ErbB4 (Cell Signaling Technologies, 1:1,000, western blotting), rabbit anti-phospho-ErbB4 (Abcam, 1:2,000, cell staining), rabbit anti-ErbB4 (Santa Cruz Biotechnology, 1:400), rabbit anti-NRG1 (Santa Cruz Biotechnology, 1:400), rabbit anti-DISC1 (mExon3 (ref. 62 (link)), 1:400), mouse anti-PV (Millipore, 1:500), mouse anti-GAD67 (Millipore, 1:500), goat anti-GFP (Sigma, 1:500), mouse anti-PSD95 (Millipore, 1:2,000), rabbit anti-phospho-tyrosine (Santa Cruz Biotechnology, 1:400), rabbit anti-phospho-Erk (Cell Signaling Technology, 1:1,000), rabbit anti-HA (BD Biosciences, 1:1,000), rat anti-RFP (Chromotek, 1:500), rabbit anti-GAD65 (Millipore, 1:500).
+ Open protocol
+ Expand
3

Western Blot Analysis of ErbB4 Signaling

Check if the same lab product or an alternative is used in the 5 most similar protocols
Brain tissues were homogenized in RIPA lysis buffer (50 mM Tris-HCl, pH 7.4, 150 mM NaCl, 2 mM EDTA) containing 0.5% sodium deoxycholate, 0.1% SDS, 1 mM PMSF, 1 mM Na3VO4, 1 mM NaF, 1 mM DTT and protease inhibitor cocktail (ThermoFisher, 11697498001). Samples were resolved on SDS-PAGE and transferred to the nitrocellulose membranes (Cat# 1620112, Bio-Rad). After blocking with 5% BSA (bovine serum albumin) in PBS-T, PBS containing 0.5% Tween-20), membranes were incubated in primary antibody (in 5% BSA) overnight at 4 °C. Membranes were washed with PBS-T (10 min × 3) and incubated in HRP-conjugated secondary antibody (Life Technology) at RT for 1 h. After wash, the immunoreactive bands were visualized by applying enhanced chemiluminescence substrates (Cat# 32106, Pierce), signals were captured with LI-COR Odyssey infrared imaging system. Antibodies used included: rabbit anti-ErbB4 (1:2000, 0618, generously provided by Cary Lai); rabbit anti-phospho-ErbB4 (1:200, Cat# 4757, Cell Signaling Technology, RRID:AB_2099987); mouse anti-β-actin (1:5000, Cat# A1978, Sigma, RRID:AB_476692); mouse anti-phospho-ERK (1:500, Cat# 9106, Cell Signaling Technology, RRID:AB_331768); rabbit anti-ERK (1:500, Cat# 9102, Cell Signaling Technology, RRID:AB_330744); mouse anti-NRG1 (1:200, Cat# MA5-12896, Invitrogen, RRID:AB_10986946).
+ Open protocol
+ Expand

About PubCompare

Our mission is to provide scientists with the largest repository of trustworthy protocols and intelligent analytical tools, thereby offering them extensive information to design robust protocols aimed at minimizing the risk of failures.

We believe that the most crucial aspect is to grant scientists access to a wide range of reliable sources and new useful tools that surpass human capabilities.

However, we trust in allowing scientists to determine how to construct their own protocols based on this information, as they are the experts in their field.

Ready to get started?

Sign up for free.
Registration takes 20 seconds.
Available from any computer
No download required

Sign up now

Revolutionizing how scientists
search and build protocols!