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Physical and functional interaction between yeast Pif1 helicase and Rim1 single-stranded DNA binding protein

机译:酵母Pif1解旋酶与Rim1单链DNA结合蛋白之间的物理和功能相互作用

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Pif1 helicase plays various roles in the maintenance of nuclear and mitochondrial genome integrity in most eukaryotes. Here, we used a proteomics approach called isotopic differentiation of interactions as random or targeted to identify specific protein complexes of Saccharomyces cerevisiae Pif1. We identified a stable association between Pif1 and a mitochondrial SSB, Rim1. In vitro co-precipitation experiments using recombinant proteins indicated a direct interaction between Pif1 and Rim1. Fluorescently labeled Rim1 was titrated with Pif1 resulting in an increase in anisotropy and a Kd value of 0.69 μM. Deletion mutagenesis revealed that the OB-fold domain and the C-terminal tail of Rim1 are both involved in interaction with Pif1. However, a Rim1 C-terminal truncation (Rim1ΔC18) exhibited a nearly 4-fold higher Kd value. Rim1 stimulated Pif1 DNA helicase activity by 4- to 5-fold, whereas Rim1ΔC18 stimulated Pif1 by 2-fold. Hence, two regions of Rim1, the OB-fold domain and the C-terminal domain, interact with Pif1. One of these interactions occurs through the N-terminal domain of Pif1 because a deletion mutant of Pif1 (Pif1ΔN) retained interaction with Rim1 but did not exhibit stimulation of helicase activity. In light of our in vivo and in vitro data, and previous work, it is likely that the Rim1–Pif1 interaction plays a role in coordination of their functions in mtDNA metabolism.
机译:在大多数真核生物中,Pif1解旋酶在维持核和线粒体基因组完整性中扮演各种角色。在这里,我们使用了一种蛋白质组学方法,即所谓的相互作用的同位素区分是随机的还是有针对性的,以鉴定啤酒酵母Pif1的特定蛋白质复合物。我们确定了Pif1和线粒体SSB Rim1之间的稳定关联。使用重组蛋白的体外共沉淀实验表明,Pif1和Rim1之间存在直接的相互作用。荧光标记的Rim1用Pif1滴定,导致各向异性增加,K 值达到0.69μM。缺失诱变显示,Rim1的OB折叠域和C末端尾部均与Pif1相互作用。但是,Rim1 C端截短(Rim1ΔC18)的K d 值高出近4倍。 Rim1刺激Pif1 DNA解旋酶活性提高了4到5倍,而Rim1ΔC18刺激了Pif1了2倍。因此,Rim1的两个区域,OB折叠域和C末端域与Pif1相互作用。这些相互作用之一是通过Pif1的N末端结构域发生的,因为Pif1的缺失突变体(Pif1ΔN)保留了与Rim1的相互作用,但没有表现出解旋酶活性。根据我们的体内和体外数据以及以前的工作,Rim1–Pif1相互作用很可能在其mtDNA代谢功能的协调中发挥作用。

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