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ATP-activated oligomerization as a mechanism for apoptosis regulation: fold and mechanism prediction for CED-4.

机译:ATP激活的寡聚作为细胞凋亡调节的机制:CED-4的折叠和机理预测。

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摘要

Fold recognition algorithm FFAS (Rychlewski et al., Protein Sci, 2000;9:232-241) was used to match the nucleotide-binding adaptor shared by APAF-1, certain R gene products and CED-4 (NB-ARC domain) to the structure of the D2 domain of N-ethylemaleimide-Sensitive Fusion Protein and the delta; subunit of clamp loader of DNA polymerase III. The predicted structure consists of the p-loop ATP-binding domain, followed by two alpha-helical domains that regulate the oligomerization process. This prediction suggests a detailed molecular mechanism for the "induced proximity" hypothesis (Salvesen and Dixit, Proc Natl Acad Sci USA 1999;96:10964-10967) for CED3/caspase-9 activation by CED4/APAF-1 complex. According to this model, the ATP binding acts as a trigger in CED-4 oligomerization and the helical domain immediately following the ATP-binding domain provides additional mechanisms for regulation of the oligomerization process. This model explains most of known experimental data about CED-4-mediated caspase activation and, at the same time, suggest experiments that could test this hypothesis.
机译:使用折叠识别算法FFAS(Rychlewski等,Protein Sci,2000; 9:232-241)来匹配APAF-1,某些R基因产物和CED-4(NB-ARC域)共享的核苷酸结合衔接子N-乙基马来酰亚胺敏感融合蛋白的D2结构域和δ; DNA聚合酶III的钳上样器的亚基。预测的结构由p环ATP结合结构域组成,随后是两个调节寡聚过程的α-螺旋结构域。该预测提示了“诱导的邻近性”假说的详细分子机制(Salvesen and Dixit,Proc Natl Acad Sci USA 1999; 96:10964-10967),用于通过CED4 / APAF-1复合物激活CED3 / caspase-9。根据该模型,ATP结合起CED-4寡聚化的触发作用,紧随ATP结合结构域的螺旋结构域为调控寡聚化过程提供了其他机制。该模型解释了有关CED-4介导的半胱天冬酶激活的大多数已知实验数据,同时,提出了可以验证这一假设的实验。

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