Shiozaki K, Yanagida M
Department of Biophysics, Faculty of Science, Kyoto University, Japan.
J Cell Biol. 1992 Dec;119(5):1023-36. doi: 10.1083/jcb.119.5.1023.
Fission Yeast DNA topoisomerase II (165 kD) consists of an enzymatically active 125-kD core, approximately 10-kD NH2-terminal and 30-kD COOH-terminal domains. The question addressed in the present study is what is the role of the topo II termini. Although deletion of either the NH2 or the COOH terminus is viable, deletion of both termini is lethal; the termini share an essential role for viability. We show here that topo II phosphorylation sites are localized in the terminal domains, but dephosphorylated topo II is still active. The topo II terminal sequences are required for nuclear localization; topo II double terminal deletion mutants are deficient for nuclear targeting, whereas wild-type and single deletion mutant topo IIs are transported into the nucleus with different efficiencies. Functional subdomains in the NH2 terminus are further dissected; we identified a 15 amino acid nuclear localization sequence (NLS) which is essential for viability and nuclear localization when the COOH terminus is deleted. This NLS could be substituted with SV-40 large T-antigen NLS. Two other functional subdomains were found; a non-essential acidic stretch which is phosphorylated and apparently enhances the nuclear localization and an essential hydrophilic stretch of unknown function. Motifs similar to these three NH2-terminal subdomains are also found in the COOH terminus. Our results support the possibility that phosphorylation of topo II does not play an essential role in fission yeast.
裂殖酵母DNA拓扑异构酶II(165 kD)由一个具有酶活性的125-kD核心、约10-kD的氨基末端和30-kD的羧基末端结构域组成。本研究探讨的问题是拓扑异构酶II末端的作用是什么。虽然缺失氨基末端或羧基末端其中之一是可行的,但同时缺失两个末端则是致死的;末端对于细胞存活起着共同的重要作用。我们在此表明,拓扑异构酶II的磷酸化位点位于末端结构域,但去磷酸化的拓扑异构酶II仍然具有活性。拓扑异构酶II的末端序列是核定位所必需的;拓扑异构酶II双末端缺失突变体缺乏核靶向能力,而野生型和单末端缺失突变体的拓扑异构酶II则以不同效率转运到细胞核中。我们进一步剖析了氨基末端的功能亚结构域;我们鉴定出一个15个氨基酸的核定位序列(NLS),当羧基末端缺失时,该序列对于细胞存活和核定位至关重要。这个NLS可以被SV-40大T抗原NLS替代。还发现了另外两个功能亚结构域;一个非必需的酸性区域,该区域会被磷酸化,显然增强了核定位,以及一个功能未知的必需亲水区。在羧基末端也发现了与这三个氨基末端亚结构域相似的基序。我们的结果支持拓扑异构酶II的磷酸化在裂殖酵母中不发挥重要作用的可能性。