Institute of Biotechnology, Vilnius University, Vilnius, Lithuania.
FEBS J. 2011 Sep;278(17):3109-18. doi: 10.1111/j.1742-4658.2011.08236.x. Epub 2011 Aug 2.
PolC is one of two essential replicative DNA polymerases in Bacillus subtilis and other Gram-positive bacteria. The 3D structure of PolC has recently been solved, yet it lacks the N-terminal region. For this PolC region of ∼ 230 residues, both the structure and function are unknown. In the present study, using sensitive homology detection and comparative protein structure modeling, we identified, in this enigmatic region, two consecutive globular domains, PolC-NI and PolC-NII, which are followed by an apparently unstructured linker. Unexpectedly, we found that both domains are related to domain V of the τ subunit, which is part of the bacterial DNA polymerase III holoenzyme. Despite their common homology to τ, PolC-NI and PolC-NII exhibit very little sequence similarity to each other. This observation argues against simple tandem duplication within PolC as the origin of the two-domain structure. Using the derived structural models, we analyzed residue conservation and the surface properties of both PolC N-terminal domains. We detected a surface patch of positive electrostatic potential in PolC-NI and a hydrophobic surface patch in PolC-NII, suggesting their possible involvement in nucleic acid and protein binding, respectively. PolC is known to interact with the τ subunit, however, the region responsible for this interaction is unknown. We propose that the PolC N-terminus is involved in mediating the PolC-τ interaction and possibly also in binding DNA.
PolC 是枯草芽孢杆菌和其他革兰氏阳性菌中两种必需的复制 DNA 聚合酶之一。PolC 的 3D 结构最近已经被解析,但它缺乏 N 端区域。对于这个约 230 个残基的 PolC 区域,其结构和功能都未知。在本研究中,我们使用敏感的同源性检测和比较蛋白质结构建模,在这个神秘的区域中鉴定出两个连续的球状结构域,PolC-NI 和 PolC-NII,它们后面跟着一个明显无结构的连接子。出乎意料的是,我们发现这两个结构域都与细菌 DNA 聚合酶 III 全酶的 τ 亚基的结构域 V 有关。尽管它们与 τ 具有共同的同源性,但 PolC-NI 和 PolC-NII 彼此之间的序列相似性非常低。这一观察结果表明,在 PolC 中,两个结构域的出现不是简单的串联重复。使用推导的结构模型,我们分析了 PolC N 端结构域的残基保守性和表面特性。我们在 PolC-NI 中检测到一个带正电的静电势表面斑块,在 PolC-NII 中检测到一个疏水面斑块,这表明它们可能分别参与核酸和蛋白质的结合。PolC 已知与 τ 亚基相互作用,但负责这种相互作用的区域尚不清楚。我们提出,PolC N 端参与介导 PolC-τ 相互作用,并可能也参与 DNA 结合。