首页> 外文期刊>Biochemical and Biophysical Research Communications >The MPAC domain is a novel mitotically regulated domain, removed by apoptotic protease cleavage during cell death.
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The MPAC domain is a novel mitotically regulated domain, removed by apoptotic protease cleavage during cell death.

机译:MPAC结构域是一种新型的有丝分裂调控结构域,在细胞死亡过程中被凋亡的蛋白酶切割去除。

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摘要

The apoptotic proteases, including caspases and granzyme B, have independent evolutionary origins, yet are both highly specific for cleavage after aspartic acid residues and cleave many of the same substrates at closely spaced sites. In addition, many of these substrates are also reversibly regulated during other processes such as the cell cycle. In these studies, we have identified a novel domain (the MPAC domain: Mitotically Phosphorylated, Apoptotically Cleaved) present at the N-terminus of Ufd2a, which is regulated both by cleavage during cell death, and by phosphorylation during mitosis. We have also identified a corresponding domain, at the C-terminus of polyA polymerase (PAP), which is similarly regulated by phosphorylation during mitosis and is delineated by an apoptotic protease cleavage site. The positioning of the apoptotic cleavage site suggests that it represents a novel connector between the regulatory domain and its functional partner(s), providing insights into the structure and function that guided the evolution of the apoptotic proteases.
机译:凋亡蛋白酶,包括半胱天冬酶和颗粒酶B,具有独立的进化起源,但是对于天冬氨酸残基后的裂解都是高度特异性的,并且在间隔很近的位点裂解许多相同的底物。此外,许多这些底物在其他过程(例如细胞周期)中也受到可逆调节。在这些研究中,我们确定了Ufd2a N端存在的新结构域(MPAC结构域:线粒体磷酸化,凋亡),该结构域受细胞死亡时的裂解和有丝分裂时的磷酸化的调节。我们还已经在polyA聚合酶(PAP)的C端确定了一个相应的域,该域在有丝分裂过程中同样受到磷酸化的调节,并由凋亡的蛋白酶切割位点描绘。凋亡切割位点的定位表明,它代表了调节结构域与其功能伙伴之间的新型连接子,提供了对指导凋亡蛋白酶进化的结构和功能的深入了解。

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