Anti-FAAH1 antibody [4H8]
5
(6 리뷰들)
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(37 제품이 사용된 논문 )
- WB
Unknown
Western blot - Anti-FAAH1 antibody [4H8] (AB54615)
FAAH antibody (ab54615) at 1ug/lane + A-431 cell lysate at 25ug/lane.
This image was generated using the ascites version of the product.
All lanes:
Western blot - Anti-FAAH1 antibody [4H8] (ab54615)
Predicted band size: 63 kDa
false
- WB
Unknown
Western blot - Anti-FAAH1 antibody [4H8] (AB54615)
This image was generated using the ascites version of the product.
All lanes:
Western blot - Anti-FAAH1 antibody [4H8] (ab54615)
All lanes:
Rat Brain
Predicted band size: 63 kDa
false
- WB
Unknown
Western blot - Anti-FAAH1 antibody [4H8] (AB54615)
This image was generated using the ascites version of the product.
All lanes:
Western blot - Anti-FAAH1 antibody [4H8] (ab54615)
All lanes:
NIH/3T3
Predicted band size: 63 kDa
false
관련 conjugated 항체와 다양한 조성의 항체 (2)
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Anti-RNA polymerase II CTD repeat YSPTSPS (phospho S5) antibody [4H8] - ChIP Grade
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Anti-RNA polymerase II CTD repeat YSPTSPS (phospho S5) antibody [4H8] - BSA and Azide free
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This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
FAAH1 is essential for maintaining homeostasis by modulating levels of bioactive lipids. It exerts control over endocannabinoid signaling by breaking down anandamide a lipid derivative functioning as a neurotransmitter. FAAH1 does not act as part of a larger protein complex. Instead it operates alone to regulate the duration and intensity of signaling rather than relying on direct interactions within a complex. The enzyme's function impacts the neurochemical milieu in tissues where it is actively expressed thereby affecting mood pain sensation and more.
Pathways
FAAH1 has a significant role in the endocannabinoid signaling pathway and fatty acid metabolism. Within these pathways it modulates signaling by hydrolysing bioactive amides like anandamide influencing overall lipid signaling. FAAH1 activities intersect with several other proteins such as cannabinoid receptors which bind the substrates that FAAH1 eventually degrades. These interactions are vital in controlling signal transduction processes that regulate physiological responses including stress and analgesia.
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제품이 사용된 논문 (37)
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