
DEDD - Wikipedia
DED is a protein–protein interaction domain shared by adaptors, regulators and executors of the programmed cell death pathway. Overexpression of this gene was shown to induce weak …
DEDD - 维基百科,自由的百科全书
DED是 程序性细胞死亡 途径的 衔接子 、 调节子 和 执行子 共享的 蛋白质相互作用 域。 该基因的 过度表达 被证明可诱导微弱的 细胞凋亡。 在刺激作用下,发现该蛋白从 细胞质 易位到 细胞 …
DEDD Gene - GeneCards | DEDD Protein | DEDD Antibody
2024年12月24日 · DED is a protein-protein interaction domain shared by adaptors, regulators and executors of the programmed cell death pathway. Overexpression of this gene was shown to …
DEDD death effector domain containing [ (human)] - National …
Gene ID: 9191, updated on 8-Feb-2025. This gene encodes a protein that contains a death effector domain (DED). DED is a protein-protein interaction domain shared by adaptors, …
DEDD, a novel death effector domain‐containing protein, targeted …
The CD95 signaling pathway comprises proteins that contain one or two death effector domains (DED), such as FADD/Mort1 or caspase‐8. Here we describe a novel 37 kDa protein, DEDD, …
DEDD - an overview | ScienceDirect Topics
DEDD, which can bind to FAS-associated death domain (FADD) or caspase-8/10 through DED domains (about eighty amino acid residues), belongs to DED-containing protein family. DEDD …
含死亡效应域(DEDD)基因 | MCE - MCE-生物活性分子大师
DED 是由程序性细胞死亡途径的适配器、调节器和执行器共享的蛋白质-蛋白质相互作用结构域。 显示该基因的过表达诱导微弱的细胞凋亡。 刺激后,发现这种蛋白质从细胞质转移到细胞 …
DEDD death effector domain containing [ Homo sapiens (human) ]
2024年12月10日 · DED is a protein-protein interaction domain shared by adaptors, regulators and executors of the programmed cell death pathway. Overexpression of this gene was shown to …
Nuclear localization of DEDD leads to caspase-6 activation
2001年12月6日 · DEDD is a novel apoptosis signaling molecule that carries an N-terminal DED with complete sequence identity between the murine, rat, bovine and human domains. We …
DEDD death effector domain containing - NIH Genetic Testing …
2024年9月19日 · DED is a protein-protein interaction domain shared by adaptors, regulators and executors of the programmed cell death pathway. Overexpression of this gene was shown to …