Trojer Patrick, Brandtner Eva M, Brosch Gerald, Loidl Peter, Galehr Johannes, Linzmaier Roland, Haas Hubertus, Mair Karin, Tribus Martin, Graessle Stefan
Department of Molecular Biology, University of Innsbruck, Peter-Mayr-Strasse 4b, Innsbruck, A-6020, Austria.
Nucleic Acids Res. 2003 Jul 15;31(14):3971-81. doi: 10.1093/nar/gkg473.
Acetylation is the most prominent modification on core histones that strongly affects nuclear processes such as DNA replication, DNA repair and transcription. Enzymes responsible for the dynamic equilibrium of histone acetylation are histone acetyltransferases (HATs) and histone deacetylases (HDACs). In this paper we describe the identification of novel HDACs from the filamentous fungi Aspergillus nidulans and the maize pathogen Cochliobolus carbonum. Two of the enzymes are homologs of Saccharomyces cerevisiae HOS3, an enzyme that has not been identified outside of the established yeast systems until now. One of these homologs, HosB, showed intrinsic HDAC activity and remarkable resistance against HDAC inhibitors like trichostatin A (TSA) when recombinant expressed in an Escherichia coli host system. Phylo genetic analysis revealed that HosB, together with other fungal HOS3 orthologs, is a member of a separate group within the classical HDACs. Immunological investigations with partially purified HDAC activities of Aspergillus showed that all classical enzymes are part of high molecular weight complexes and that a TSA sensitive class 2 HDAC constitutes the major part of total HDAC activity of the fungus. However, further biochemical analysis also revealed an NAD(+)-dependent activity that could be separated from the other activities by different types of chromatography and obviously represents an enzyme of the sirtuin class.
乙酰化是核心组蛋白上最显著的修饰,它强烈影响诸如DNA复制、DNA修复和转录等核过程。负责组蛋白乙酰化动态平衡的酶是组蛋白乙酰转移酶(HATs)和组蛋白去乙酰化酶(HDACs)。在本文中,我们描述了从丝状真菌构巢曲霉和玉米病原体玉米炭疽菌中鉴定新型HDACs的过程。其中两种酶是酿酒酵母HOS3的同源物,到目前为止,在已建立的酵母系统之外尚未鉴定出这种酶。这些同源物之一,HosB,在大肠杆菌宿主系统中重组表达时,表现出内在的HDAC活性,并对曲古抑菌素A(TSA)等HDAC抑制剂具有显著抗性。系统发育分析表明,HosB与其他真菌HOS3直系同源物一起,是经典HDACs中一个单独组的成员。对构巢曲霉部分纯化的HDAC活性进行的免疫学研究表明,所有经典酶都是高分子量复合物的一部分,并且一种对TSA敏感的2类HDAC构成了该真菌总HDAC活性的主要部分。然而,进一步的生化分析还揭示了一种依赖NAD(+)的活性,它可以通过不同类型的色谱法与其他活性分离,并且显然代表一种沉默调节蛋白类的酶。