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Structural basis of SETD6-mediated regulation of the NF-kB network via methyl-lysine signaling

机译:SETD6介导的甲基赖氨酸信号传导调控NF-kB网络的结构基础

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摘要

SET domain containing 6 (SETD6) monomethylates the RelA subunit of nuclear factor kappa B (NF-kappa B). The ankyrin repeats of G9a-like protein (GLP) recognizes RelA monomethylated at Lys310. Adjacent to Lys310 is Ser311, a known phosphorylation site of RelA. Ser311 phosphorylation inhibits Lys310 methylation by SETD6 as well as binding of Lys310me1 by GLP. The structure of SETD6 in complex with RelA peptide containing the methylation site, in the presence of S-adenosyl-L-methionine, reveals a V-like protein structure and suggests a model for NF-kappa B binding to SETD6. In addition, structural modeling of the GLP ankyrin repeats bound to Lys310me1 peptide provides insight into the molecular basis for inhibition of Lys310me1 binding by Ser311 phosphorylation. Together, these findings provide a structural explanation for a key cellular signaling pathway centered on RelA Lys310 methylation, which is generated by SETD6 and recognized by GLP, and incorporate a methylation-phosphorylation switch of adjacent lysine and serine residues. Finally, SETD6 is structurally similar to the Rubisco large subunit methyltransferase. Given the restriction of Rubisco to plant species, this particular appearance of the protein lysine methyltransferase has been evolutionarily well conserved.
机译:包含6(SETD6)的SET结构域使核因子κB(NF-κB)的RelA亚基单甲基化。 G9a样蛋白(GLP)的锚蛋白重复序列​​识别在Lys310单甲基化的RelA。与Lys310相邻的是Ser311,它是RelA的已知磷酸化位点。 Ser311磷酸化通过SETD6抑制Lys310甲基化,以及通过GLP抑制Lys310me1的结合。在存在S-腺苷基-L-甲硫氨酸的情况下,SETD6与含有甲基化位点的RelA肽复合的结构揭示了V型蛋白结构,并提出了NF-κB与SETD6结合的模型。另外,与Lys310me1肽结合的GLP锚蛋白重复序列​​的结构模型提供了深入了解Ser311磷酸化抑制Lys310me1结合的分子基础。总之,这些发现为以RelA Lys310甲基化为中心的关键细胞信号通路提供了结构性解释,该信号由SETD6生成并被GLP识别,并结合了相邻赖氨酸和丝氨酸残基的甲基化磷酸化开关。最后,SETD6在结构上与Rubisco大亚基甲基转移酶相似。考虑到Rubisco对植物物种的限制,赖氨酸甲基转移酶的这种特殊外观在进化上已得到很好的保存。

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