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DNA structure directs positioning of the mitochondrial genome packaging protein Abf2p

机译:DNA结构指导线粒体基因组包装蛋白Abf2p的定位

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摘要

The mitochondrial genome (mtDNA) is assembled into nucleo-protein structures termed nucleoids and maintained differently compared to nuclear DNA, the involved molecular basis remaining poorly understood. In yeast (Saccharomyces cerevisiae), mtDNA is a ∼80 kbp linear molecule and Abf2p, a double HMG-box protein, packages and maintains it. The protein binds DNA in a non-sequence-specific manner, but displays a distinct ‘phased-binding’ at specific DNA sequences containing poly-adenine tracts (A-tracts). We present here two crystal structures of Abf2p in complex with mtDNA-derived fragments bearing A-tracts. Each HMG-box of Abf2p induces a 90° bend in the contacted DNA, causing an overall U-turn. Together with previous data, this suggests that U-turn formation is the universal mechanism underlying mtDNA compaction induced by HMG-box proteins. Combining this structural information with mutational, biophysical and computational analyses, we reveal a unique DNA binding mechanism for Abf2p where a characteristic N-terminal flag and helix are crucial for mtDNA maintenance. Additionally, we provide the molecular basis for A-tract mediated exclusion of Abf2p binding. Due to high prevalence of A-tracts in yeast mtDNA, this has critical relevance for nucleoid architecture. Therefore, an unprecedented A-tract mediated protein positioning mechanism regulates DNA packaging proteins in the mitochondria, and in combination with DNA-bending and U-turn formation, governs mtDNA compaction.
机译:线粒体基因组(mtDNA)被组装成称为核苷的核蛋白结构,并且与核DNA相比保持不同的状态,所涉及的分子基础仍然知之甚少。在酵母中(Saccharomyces cerevisiae),mtDNA是一个约80 kbp的线性分子,Abf2p是一种双HMG-box蛋白,可以包装并维持它。该蛋白质以非序列特异性方式结合DNA,但在含有聚腺嘌呤束(A-tract)的特定DNA序列上表现出明显的“阶段性结合”。我们在这里介绍Abf2p的两个晶体结构与mtDNA衍生的带有A束的片段的复合体。 Abf2p的每个HMG盒在接触的DNA中诱导90°弯曲,从而导致整体掉头。与先前的数据一起,这表明掉头形成是由HMG-box蛋白诱导的mtDNA压缩的普遍机制。结合这种结构信息与突变,生物物理和计算分析,我们揭示了Abf2p独特的DNA结合机制,其中特征性的N端标志和螺旋对于mtDNA的维持至关重要。此外,我们提供A介导的Abf2p结合排斥的分子基础。由于酵母mtDNA中A谱的普遍性,这与类核苷酸结构具有至关重要的关系。因此,史无前例的A线介导的蛋白质定位机制调节线粒体中的DNA包装蛋白质,并与DNA弯曲和掉头形成相结合,控制mtDNA的紧缩。

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