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首页> 外文期刊>The biochemical journal >Identification of two functional nuclear localization signals in DNase γ and their roles in its apoptotic DNase activity
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Identification of two functional nuclear localization signals in DNase γ and their roles in its apoptotic DNase activity

机译:鉴定DNaseγ中的两个功能性核定位信号及其在凋亡DNase活性中的作用

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pAmong DNase I family members, only DNase γ causes DNA fragmentation during apoptosis. However, the molecular basis for this functional feature of DNase γ is poorly understood. Here we describe the identification of functional NLSs (nuclear localization signals) in DNase γ and their roles in its apoptotic function. DNase γ contains two NLSs: a classical bipartite-type NLS (NLS1) located in the N-terminal half, and a short basic domain (NLS2) at the C-terminus. No potential NLSs are found in the primary structures of other DNase I family DNases. Inactivation of either NLS1 or NLS2 causes reduced DNA ladder-producing activity in DNase γ. Disruption of NLS2 suppresses ladder formation more effectively than disruption of NLS1. DNase γ doubly mutated in both NLSs is enzymically active, but no longer catalyses apoptotic DNA fragmentation. Although DNase I fails to produce ladder formation during apoptosis, DNase I fused to NLS2 of DNase γ through its C-terminus is able to catalyse DNA fragmentation in apoptotic cells. These results indicate that the presence of either NLS1 or NLS2 is necessary for the apoptotic function of DNase γ, and that the most important domain for this function is NLS2. These findings also explain the lack of apoptotic DNase activity in the other DNase I family DNases./p
机译:>在DNase I家族成员中,只有DNaseγ导致细胞凋亡过程中的DNA断裂。但是,对于DNaseγ的这种功能特征的分子基础知之甚少。在这里,我们描述了DNaseγ中功能性NLS(核定位信号)的识别及其在其凋亡功能中的作用。 DNaseγ包含两个NLS:位于N末端一半的经典两部分型NLS(NLS1),以及位于C末端的短碱基结构域(NLS2)。在其他DNase I家族DNase的一级结构中未发现潜在的NLS。 NLS1或NLS2的失活导致DNaseγ中DNA梯子产生活性降低。 NLS2的破坏比NLS1的破坏更有效地抑制阶梯形成。在两个NLS中双重突变的DNaseγ具有酶活性,但不再催化凋亡的DNA片段化。尽管DNase I无法在凋亡过程中形成梯形,但通过其C末端与DNaseγ的NLS2融合的DNase I能够催化凋亡细胞中的DNA片段化。这些结果表明,对于DNaseγ的凋亡功能而言,必须存在NLS1或NLS2,并且对于该功能最重要的区域是NLS2。这些发现也解释了其他DNase I家族DNases缺乏凋亡DNase活性。

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