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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Expression of protein kinase HIPK2 is subject to a quality control mechanism that acts during translation and requires its kinase activity to prevent degradation of nascent HIPK2
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Expression of protein kinase HIPK2 is subject to a quality control mechanism that acts during translation and requires its kinase activity to prevent degradation of nascent HIPK2

机译:蛋白激酶Hipk2的表达受到在翻译期间作用的质量控制机制,并且需要其激酶活性以防止新生HIPK2的降解

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摘要

HIPK2 is a highly conserved, constitutively active Ser/Thr protein kinase that is involved in a broad spectrum of We have previously reported that the expression of HIPK2 is auto-regulated by a mechanism that depends on the activity of its kinase domain, leading to decreased expression of kinase-dead versus wild-type HIPK2. We have now explored this mechanism in more detail. Differential expression of wild-type and kinasedead HIPK2 is dependent on sequences located in the C-terminal part of HIPK2, but is only observed when this part of HIPK2 is translated together with the defective kinase domain. On their own, both the defective kinase domain and the C-terminal amino acid sequences are expressed at normal levels and independently of kinase activity. Insertion of a 2A-ribosomal skipping sequence into the HIPK2 coding sequence revealed that the differential expression of wild-type and kinase-dead HIPK2 is caused by degradation of nascent kinase-dead HIPK2. Because HIPK2 is constitutively active and auto-activates its kinase domain already during its translation we speculate that the regulatory mechanism discovered here serves as a quality control mechanism that leads to degradation of nascent kinase molecules with defective kinase domains. Overall our work provides insight into a novel auto-regulatory mechanism of HIPK2 expression, thereby adding a new layer of control to the regulation of HIPK2.
机译:Hipk2是一种高度保守的组成型活性的Ser / Thr蛋白激酶,其涉及我们先前已经报道的广谱,其表达Hipk2的表达通过取决于其激酶结构域的活性而自动调节,导致降低激酶死亡对野生型Hipk2的表达。我们现在更详细地探讨了这一机制。野生型和Kinasedead Hipk2的差异表达依赖于位于HiPK2的C末端部分中的序列,但是仅当该部分Hipk2与缺陷激酶结构域一起平移时仅观察到。在他们自己的情况下,缺陷激酶结构域和C末端氨基酸序列都以正常水平表达并独立于激酶活性。将2A-核糖体淘汰序列插入HIPK2编码序列,显示出野生型和激酶死HipK2的差异表达是由新生激酶死HipK2的降解引起的。因为Hipk2在其翻译期间,Hipk2在其翻译期间已经形成了其激酶结构域,所以我们推测了这里发现的调节机制用作质量控制机制,导致具有缺陷激酶结构域的新生激酶分子的降解。背景之利,我们的工作能够深入了解了HIPK2表达的新型自动调节机制,从而向HIPK2的调节添加了新的控制层。

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