Pavlov Nikolai A, Cherny Dmitry I, Jovin Thomas M, Slesarev Alexei I
Department of Molecular Biology, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, D-37077, Göttingen, Germany.
J Biomol Struct Dyn. 2002 Oct;20(2):207-14. doi: 10.1080/07391102.2002.10506836.
The MkaH protein from the archaeon Methanopyrus kandleri, an unusual assembly of two histone-fold domains in a single polypeptide chain, demonstrates high structural similarity to eukaryal histones. We studied the DNA binding and self-association properties of MkaH by means of the electrophoretic mobility shift assay (EMSA), electron microscopy (EM), chemical cross-linking, and analytical gel filtration. EMSA showed an increased mobility of linear DNA complexed with MkaH protein with a maximum at a protein-DNA weight ratio (R(w)) of approximately 3; the mobility decreased at higher protein concentration. EM of the complexes formed at Rw <or= 3 revealed formation of isometric loops encompassing 71 +/- 7 bp of DNA duplex. At high values of Rw (>or=9) thickened compact nucleoprotein structures were observed; no individual loops were seen within the complexes. Gel filtration chromatography and chemical fixation indicated that in the absence of DNA the dominant form of the MkaH in solution, unlike other archaeal histones, is a stable dimer (pseudo-tetramer of the histone-fold domain) apparently resembling the eukaryal (H3-H4)(2) tetramer. Similarly, dimers are the dominant form of the protein interacting with DNA. The properties of MkaH supporting the assignment of its intermediate position between other archaeal and eukaryal histones are discussed.
来自古菌坎氏甲烷嗜热菌的MkaH蛋白,在一条多肽链中由两个组蛋白折叠结构域组成的不同寻常组合,与真核生物组蛋白表现出高度的结构相似性。我们通过电泳迁移率变动分析(EMSA)、电子显微镜(EM)、化学交联和分析性凝胶过滤研究了MkaH的DNA结合和自缔合特性。EMSA显示与MkaH蛋白复合的线性DNA迁移率增加,在蛋白质-DNA重量比(R(w))约为3时达到最大值;在更高的蛋白质浓度下迁移率降低。对在Rw≤3时形成的复合物进行EM分析,发现形成了包含71±7个碱基对DNA双链体的等距环。在Rw值较高(≥9)时,观察到增厚的致密核蛋白结构;复合物中未见单个环。凝胶过滤色谱和化学固定表明,在没有DNA的情况下,溶液中MkaH的主要形式与其他古菌组蛋白不同,是一种稳定的二聚体(组蛋白折叠结构域的假四聚体),显然类似于真核生物的(H3-H4)(2)四聚体。同样,二聚体是与DNA相互作用的蛋白质的主要形式。讨论了支持将MkaH归为其他古菌组蛋白和真核生物组蛋白之间中间位置的特性。