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Dodecameric structure and ATPase activity of the human TIP48/TIP49 complex

机译:人类TIP48 / TIP49复合体的十二聚体结构和ATPase活性

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TIP48 and TIP49 are two related and highly conserved eukaryotic AAA(+) proteins with an essential biological function and a critical role in major pathways that are closely linked to cancer. They are found together as components of several highly conserved chromatin-modifying complexes. Both proteins show sequence homology to bacterial RuvB but the nature and mechanism of their biochemical role remain unknown. Recombinant human TIP48 and TIP49 were assembled into a stable high molecular mass equimolar complex and tested for activity in vitro. TIP48/TIP49 complex formation resulted in synergistic increase in ATPase activity but ATP hydrolysis was not stimulated in the presence of single-stranded, double-stranded or four-way junction DNA and no DNA helicase or branch migration activity could be detected. Complexes with catalytic defects in either TIP48 or TIP49 had no ATPase activity showing that both proteins within the TIP48/TIP49 complex are required for ATP hydrolysis. The structure of the TIP48/TIP49 complex was examined by negative stain electron microscopy. Three-dimensional reconstruction at 20 A resolution revealed that the TIP48/TIP49 complex consisted of two stacked hexameric rings with C6 symmetry. The top and bottom rings showed substantial structural differences. Interestingly, TIP48 formed oligomers in the presence of adenine nucleotides, whilst TIP49 did not. The results point to biochemical differences between TIP48 and TIP49, which may explain the structural differences between the two hexameric rings and could be significant for specialised functions that the proteins perform individually. (c) 2006 Elsevier Ltd. All rights reserved.
机译:TIP48和TIP49是两个相关的且高度保守的真核AAA(+)蛋白,在与癌症密切相关的主要途径中具有重要的生物学功能和关键作用。它们一起被发现是几种高度保守的染色质修饰复合物的组成部分。两种蛋白质均显示与细菌RuvB的序列同源性,但其生化作用的性质和机制仍未知。将重组人TIP48和TIP49组装成稳定的高分子量等摩尔复合物,并测试其体外活性。 TIP48 / TIP49复合物的形成导致ATPase活性的协同增加,但是在存在单链,双链或四向连接DNA的情况下,没有刺激ATP水解,并且未检测到DNA解旋酶或分支迁移活性。在TIP48或TIP49中具有催化缺陷的复合物不具有ATPase活性,这表明TIP48 / TIP49复合物中的两种蛋白质都是ATP水解所必需的。通过负染色电子显微镜检查TIP48 / TIP49复合物的结构。在20 A分辨率下进行的三维重建显示TIP48 / TIP49络合物由两个具有C6对称性的堆叠六聚环组成。顶环和底环显示出实质性的结构差异。有趣的是,TIP48在腺嘌呤核苷酸存在下形成寡聚体,而TIP49没有。结果表明,TIP48和TIP49之间存在生化差异,这可能解释了两个六聚环之间的结构差异,对于蛋白质单独发挥的特殊功能可能具有重要意义。 (c)2006 Elsevier Ltd.保留所有权利。

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