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Mechanism for the TtDnaA–Tt-oriC cooperative interaction at high temperature and duplex opening at an unusual AT-rich region in Thermoanaerobacter tengcongensis

机译:腾冲嗜热厌氧杆菌在高温下TtDnaA–Tt-oriC协同相互作用的机制和在一个不寻常的富含AT的区域的双链体打开的机制

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摘要

Thermoanaerobacter tengcongensis is an anaerobic low-GC thermophilic bacterium. To further elucidate the replication initiation of chromosomal DNA at high temperature, the interaction between the replication initiator (TtDnaA) and the putative origin (Tt-oriC) in this thermophile was investigated. We found that efficient binding of TtDnaA to Tt-oriC at high temperature requires (i) at least two neighboring DnaA boxes, (ii) the specific feature of the TtDnaA Domain IV and (iii) the self-oligomerization of TtDnaA. Replacement of the TtDnaA Domain IV by the counterpart of Escherichia coli DnaA or disruption of its oligomerization by amino acid mutations (W9A/L20S) abolished the oriC-binding activity of TtDnaA at 60°C, but not at 37°C. Moreover, ATP-TtDnaA, but not ADP-TtDnaA or the oligomerization-deficient mutants was able to unwind the Tt-oriC duplex. The minimal oriC required for this duplex opening in vitro was demonstrated to consist of DnaA boxes 1–8 and an unusual AT-rich region. Interestingly, although no typical ATP-DnaA box was found in this AT-rich region, it was exclusively bound by ATP-TtDnaA and acted as the duplex-opening and replication-initiation site. Taken together, we propose that oligomerization of ATP-DnaA and simultaneously binding of several DnaA boxes and/or AT-rich region may be generally required in replication initiation at high temperature.
机译:Tengcongensis嗜热厌氧菌是一种厌氧的低GC嗜热细菌。为了进一步阐明染色体DNA在高温下的复制起始,研究了该嗜热菌中复制起始剂(TtDnaA)和推定来源(Tt-oriC)之间的相互作用。我们发现高温下TtDnaA与Tt-oriC的有效结合需要(i)至少两个相邻的DnaA盒,(ii)TtDnaA域IV的特定功能,以及(iii)TtDnaA的自寡聚。用大肠杆菌DnaA的对应物替换TtDnaA域IV或通过氨基酸突变(W9A / L20S)破坏其寡聚,取消了TtDnaA在60°C而不是在37°C时的oriC结合活性。此外,ATP-TtDnaA,而不是ADP-TtDnaA或低聚缺陷型突变体却能够解开Tt-oriC双链体。事实证明,体外双链体开放所需的最小oriC由DnaA盒1-8和不寻常的富含AT的区域组成。有趣的是,尽管在该富含AT的区域中未发现典型的ATP-DnaA框,但它仅与ATP-TtDnaA结合,并充当双链体开放和复制起始位点。两者合计,我们建议ATP-DnaA的低聚和同时绑定几个DnaA框和/或富含AT的区域通常可能是高温下复制起始所需的。

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