Department of Physiology, Anatomy and Microbiology, La Trobe University, Melbourne, VIC, Australia.
Cell Biology Unit, Children's Medical Research Institute, University of Sydney, Westmead, NSW, Australia.
BMC Mol Biol. 2018 Dec 19;19(1):12. doi: 10.1186/s12867-018-0114-7.
DNA replication requires contributions from various proteins, such as DNA helicases; in mitochondria Twinkle is important for maintaining and replicating mitochondrial DNA. Twinkle helicases are predicted to also possess primase activity, as has been shown in plants; however this activity appears to have been lost in metazoans. Given this, the study of Twinkle in other organisms is required to better understand the evolution of this family and the roles it performs within mitochondria.
Here we describe the characterization of a Twinkle homologue, Twm1, in the amoeba Dictyostelium discoideum, a model organism for mitochondrial genetics and disease. We show that Twm1 is important for mitochondrial function as it maintains mitochondrial DNA copy number in vivo. Twm1 is a helicase which unwinds DNA resembling open forks, although it can act upon substrates with a single 3' overhang, albeit less efficiently. Furthermore, unlike human Twinkle, Twm1 has primase activity in vitro. Finally, using a novel in bacterio approach, we demonstrated that Twm1 promotes DNA replication.
We conclude that Twm1 is a replicative mitochondrial DNA helicase which is capable of priming DNA for replication. Our results also suggest that non-metazoan Twinkle could function in the initiation of mitochondrial DNA replication. While further work is required, this study has illuminated several alternative processes of mitochondrial DNA maintenance which might also be performed by the Twinkle family of helicases.
DNA 复制需要各种蛋白质的参与,如 DNA 解旋酶;在线粒体中,Twinkle 对于维持和复制线粒体 DNA 非常重要。已经在植物中表明,Twinkle 解旋酶还具有引发酶活性;然而,这种活性似乎在后生动物中丢失了。鉴于此,需要研究其他生物体中的 Twinkle,以更好地理解该家族的进化以及它在线粒体中所起的作用。
在这里,我们描述了变形虫 Dictyostelium discoideum 中 Twinkle 同源物 Twm1 的特征,该变形虫是线粒体遗传学和疾病的模型生物。我们表明,Twm1 对于线粒体功能很重要,因为它可以维持体内线粒体 DNA 的拷贝数。Twm1 是一种解旋酶,它可以解开类似于开放叉的 DNA,但它也可以作用于具有单个 3'突出的底物,尽管效率较低。此外,与人类 Twinkle 不同,Twm1 在体外具有引发酶活性。最后,我们使用一种新颖的细菌方法证明了 Twm1 促进了 DNA 复制。
我们得出结论,Twm1 是一种复制性的线粒体 DNA 解旋酶,能够为复制引物 DNA。我们的结果还表明,后生动物中的非 Twinkle 可能在启动线粒体 DNA 复制中发挥作用。虽然还需要进一步的工作,但这项研究阐明了几种替代的线粒体 DNA 维持过程,这些过程也可能由 Twinkle 家族的解旋酶来完成。