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Sumoylation of the Transcription Factor NFATc1 Leads to Its Subnuclear Relocalization and Interleukin-2 Repression by Histone Deacetylase

机译:转录因子NFATc1的Sumoylation导致其亚核。 组蛋白重定位和白介素2抑制 脱乙酰酶

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摘要

The family of NFAT (nuclear factor of activated T-cells) transcription factors plays an important role in cytokine gene regulation. In peripheral T-cells NFATc1 and -c2 are predominantly expressed. Because of different promoter and poly(A) site usage as well as alternative splicing events, NFATc1 is synthesized in multiple isoforms. The highly inducible NFATc1/A contains a relatively short C terminus, whereas the longer, constitutively expressed isoform NFATc1/C spans an extra C-terminal peptide of 246 amino acids. Interestingly, this NFATc1/C-specific terminus can be highly sumoylated. Upon sumoylation, NFATc1/C, but not the unsumoylated NFATc1/A, translocates to promyelocytic leukemia nuclear bodies. This leads to interaction with histone deacetylases followed by deacetylation of histones, which in turn induces transcriptionally inactive chromatin. As a consequence, expression of the NFATc1 target gene interleukin-2 is suppressed. These findings demonstrate that the modification by SUMO (small ubiquitin-like modifier) converts NFATc1 from an activator to a site-specific transcriptional repressor, revealing a novel regulatory mechanism for NFATc1 function.
机译:NFAT(活化T细胞的核因子)转录因子家族在细胞因子基因调控中起着重要作用。在外周T细胞中,NFATc1和-c2主要表达。由于使用不同的启动子和poly(A)位点以及其他剪接事件,NFATc1可以多种同工型合成。高诱导性NFATc1 / A包含一个相对较短的C末端,而较长的组成性表达的同工型NFATc1 / C则跨越了一个246个氨基酸的额外C端肽段。有趣的是,该NFATc1 / C特定的末端可以被高度磺酰化。经过磺酰化后,NFATc1 / C而非未磺酰化的NFATc1 / A易位至早幼粒细胞白血病核体。这导致与组蛋白脱乙酰基酶的相互作用,然后是组蛋白的脱乙酰基,进而诱导转录失活的染色质。结果,抑制了NFATc1靶基因白介素2的表达。这些发现表明,通过SUMO(小的泛素样修饰剂)进行的修饰将NFATc1从激活剂转变为位点特异性转录阻遏物,从而揭示了NFATc1功能的新型调节机制。

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