Belova Galina I, Prasad Rajendra, Nazimov Igor V, Wilson Samuel H, Slesarev Alexei I
M. M. Shemyakin and Yu A. Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, 117871 Moscow, Russia.
J Biol Chem. 2002 Feb 15;277(7):4959-65. doi: 10.1074/jbc.M110131200. Epub 2001 Dec 3.
Topoisomerase V (Topo V) is a type IB (eukaryotic-like) DNA topoisomerase. It was discovered in the hyperthermophilic prokaryote Methanopyrus kandleri and is the only topoisomerase with associated apurinic/apyrimidinic (AP) site-processing activities. The structure of Topo V in the free and DNA-bound states was probed by limited proteolysis at 37 degrees C and 80 degrees C. The Topo V protein is comprised of (i) a 44-kDa NH(2)-terminal core subdomain, which contains the active site tyrosine residue for topoisomerase activity, (ii) an immediately adjacent 16-kDa subdomain that contains degenerate helix-hairpin-helix (HhH) motifs, (iii) a protease-sensitive 18-kDa HhH "hinge" region, and (iv) a 34-kDa COOH-terminal HhH domain. Three truncated Topo V polypeptides comprising the NH(2)-terminal 44-kDa and 16-kDa domains (Topo61), the 44-, 16-, and 18-kDa domains (Topo78), and the COOH-terminal 34-kDa domain (Topo34) were cloned, purified, and characterized. Both Topo61 and Topo78 are active topoisomerases, but in contrast to Topo V these enzymes are inhibited by high salt concentrations. Topo34 has strong DNA-binding ability but shows no topoisomerase activity. Finally, we demonstrate that Topo78 and Topo34 possess AP lyase activities that are important in base excision DNA repair. Thus, Topo V has at least two active sites capable of processing AP DNA. The significance of multiple HhH motifs for the Topo V processivity is discussed.
拓扑异构酶V(Topo V)是一种IB型(类真核生物)DNA拓扑异构酶。它是在嗜热原核生物坎氏甲烷嗜热菌中发现的,并且是唯一具有相关脱嘌呤/脱嘧啶(AP)位点处理活性的拓扑异构酶。通过在37℃和80℃下的有限蛋白酶解来探究Topo V在游离状态和与DNA结合状态下的结构。Topo V蛋白由以下部分组成:(i)一个44 kDa的NH₂末端核心亚结构域,其包含拓扑异构酶活性的活性位点酪氨酸残基;(ii)紧邻的一个16 kDa亚结构域,其包含简并的螺旋-发夹-螺旋(HhH)基序;(iii)一个对蛋白酶敏感的18 kDa HhH“铰链”区域;以及(iv)一个34 kDa的COOH末端HhH结构域。克隆、纯化并表征了三种截短的Topo V多肽,它们分别包含NH₂末端的44 kDa和16 kDa结构域(Topo61)、44 kDa、16 kDa和18 kDa结构域(Topo78)以及COOH末端的34 kDa结构域(Topo34)。Topo61和Topo78都是有活性的拓扑异构酶,但与Topo V不同的是,这些酶会被高盐浓度抑制。Topo34具有很强的DNA结合能力,但没有拓扑异构酶活性。最后,我们证明Topo78和Topo34具有在碱基切除DNA修复中起重要作用的AP裂解酶活性。因此,Topo V至少有两个能够处理AP DNA的活性位点。讨论了多个HhH基序对Topo V持续合成能力的重要性。