生物素Anti-Phosphothreonine抗体
Biotin Anti-Phosphothreonine antibody
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(1 Publication)
- WB
Unknown
Western blot - Biotin Anti-Phosphothreonine antibody (AB9340)
Immunoblotting of fetal mouse brain extract (125 ug - A and 25 ug - B) Immunoblotting of fetal mouse brain extract (125 ug - A and 25 ug - B)
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Western blot - HRP Anti-Phosphothreonine antibody (<a href='/products/primary-antibodies/hrp-phosphothreonine-antibody-ab9338'>ab9338</a>)
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Western blot - Anti-Phosphothreonine antibody (<a href='/products/primary-antibodies/phosphothreonine-antibody-ab9337'>ab9337</a>)
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Western blot - Biotin Anti-Phosphothreonine antibody (ab9340)
false
- ELISA
Unknown
ELISA - Biotin Anti-Phosphothreonine antibody (AB9340)
Antibody Capture ELISA
Label : immobilized antigen
反应性数据
性能和储存信息
形式
纯化工艺
纯化说明
存储溶液
运输条件
推荐的短期储存时间
推荐的短期储存条件
推荐的长期储存条件
储存信息
补充信息
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
Phosphorylation of threonine residues influences protein activity localization and interactions. These phosphorylated threonine residues often exist as part of a larger protein complex influencing the dynamics of protein interactions. In cellular signal transduction they act as key regulatory switches. The modification is a reversible process which allows dynamic control over protein functionality in response to cellular signals.
Pathways
Signaling cascades often rely on phosphorylation events involving threonine which includes pathways like MAPK and PI3K/AKT. These pathways are essential for cellular responses to external stimuli and involve several other proteins such as RAS and AKT themselves. Through such pathways the phosphorylation state of threonine residues affects decisions about cell survival proliferation or differentiation.
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文献 (1)
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Scientific reports 7:3769 PubMed28630428
2017
Applications
WB
Species
Human
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