首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Structure and function of primase RepB' encoded by broad-host-range plasmid RSF1010 that replicates exclusively in leading-strand mode
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Structure and function of primase RepB' encoded by broad-host-range plasmid RSF1010 that replicates exclusively in leading-strand mode

机译:由广泛宿主范围内的质粒RSF1010编码的引物RepB'的结构和功能,仅在前导模式下复制

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For the initiation of DNA replication, dsDNA is unwound by helicases. Primases then recognize specific sequences on the template DNA strands and synthesize complementary oligonucleotide primers that are elongated by DNA polymerases in leading- and lagging-strand mode. The bacterial plasmid RSF1010 provides a model for the initiation of DNA replication, because it encodes the smallest known primase RepB' (35.9 kDa), features only 1 single-stranded primase initiation site on each strand (ssiA and ssiB, each 40 nt long with 5'-and 3'-terminal 6 and 13 single-stranded nucleotides, respectively, and nucleotides 7-27 forming a hairpin), and is replicated exclusively in leading strand mode. We present the crystal structure of full-length dumbbell-shaped RepB' consisting of an N-terminal catalytic domain separated by a long α-helix and tether from the C-terminal helix-bundle domain and the structure of the catalytic domain in a specific complex with the 6 5'-terminal single-stranded nucleotides and the C7-G27 base pair of ssiA, its single-stranded 3-terminus being deleted. The catalytic domains of RepB' and the archaeal/eukaryotic family of Pri-type primases share a common fold with conserved catalytic amino acids, but RepB' lacks the zinc-binding motif typical of the Pri-type primases. According to complementation studies the catalytic domain shows primase activity only in the presence of the helix-bundle domain. Primases that are highly homologous to RepB' are encoded by broad-host-range IncQ and IncQ-like plasmids that share primase initiation sites ssiA and ssiB and high sequence identity with RSF1010.
机译:对于DNA复制的起始,解旋酶解链了dsDNA。然后,引物酶识别模板DNA链上的特定序列,并合成互补的寡核苷酸引物,该引物被DNA聚合酶以前导链和滞后链模式延长。细菌质粒RSF1010为DNA复制的启动提供了一个模型,因为它编码已知最小的引物酶RepB'(35.9 kDa),每条链(ssiA和ssiB上仅具有1个单链引物酶起始位点,每个引物长40 nt, 5'和3'端分别为6和13个单链核苷酸,以及形成发夹的7-27位核苷酸),并且仅以前导链模式复制。我们提出了全长哑铃型RepB'的晶体结构,该结构由N末端催化结构域(由长的α-螺旋和系链与C末端螺旋束结构域隔开)和特定结构中的催化结构域组成具有6个5'末端单链核苷酸和ssiA的C7-G27碱基对的复合体,其单链3末端被删除。 RepB'的催化结构域和Pri型引发酶的古细菌/真核生物家族与保守的催化氨基酸有相同的折叠,但是RepB'缺乏Pri型引发酶典型的锌结合基序。根据互补性研究,催化结构域仅在螺旋束结构域存在时才显示启动酶活性。与RepB'高度同源的酶由广泛的宿主范围的IncQ和IncQ样质粒编码,它们与酶的起始位点ssiA和ssiB共享并与RSF1010具有高度的序列同一性。

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