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991.
Koo YS  Kim JM  Park IY  Yu BJ  Jang SA  Kim KS  Park CB  Cho JH  Kim SC 《Peptides》2008,29(7):1102-1108
The structure-activity relations and mechanism of action of parasin I, a 19-amino acid histone H2A-derived antimicrobial peptide, were investigated. Parasin I formed an amphipathic alpha-helical structure (residues 9-17) flanked by two random coil regions (residues 1-8 and 18-19) in helix-promoting environments. Deletion of the lysine residue at the N-terminal [Pa(2-19)] resulted in loss of antimicrobial activity, but did not affect the alpha-helical content of the peptide. The antimicrobial activity was recovered when the lysine residue was substituted with another basic residue, arginine ([R(1)]Pa), but not with polar, neutral, or acidic residues. Progressive deletions from the C-terminal [Pa(1-17), Pa(1-15)] slightly increased the antimicrobial activity (1-4 microg/ml) without affecting the alpha-helical content of the peptide. However, further deletion [Pa(1-14)] resulted in nearly complete loss of antimicrobial activity and alpha-helical structure. Confocal microscopic analysis and membrane permeabilization assays showed that parasin I and its analogs with comparable antimicrobial activities localized to the cell membrane and subsequently permeabilized the outer and cytoplasmic membranes. Pa(1-14) also localized to the cell membrane, but lost membrane-permeabilizing activity, whereas Pa(2-19) showed poor membrane-binding and -permeabilizing activities. The results indicate that the basic residue at the N-terminal is essential for the membrane-binding activity of parasin I, and among the membrane-binding parasin I analogs, the alpha-helical structure is necessary for the membrane-permeabilizing activity.  相似文献   
992.
993.
Rocha W  Verreault A 《FEBS letters》2008,582(14):1938-1949
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994.
Centromeres: old tales and new tools   总被引:2,自引:0,他引:2  
The centromere is a specialised region of the eukaryotic chromosome that directs the equal segregation of sister chromatids into two daughter cells during mitosis. In mitosis, the kinetochores mediate (1) microtubule capture and chromosome alignment at a metaphase plate; (2) the correction of improper microtubule attachments; (3) the maintenance of an active checkpoint until bi-orientation is achieved by the whole complement of chromosomes; (4) the establishment of tension within the centromere which, in turn, contributes to silencing of the spindle checkpoint and triggers the onset of anaphase. In this review, we will analyse how centromeres are organised with respect to chromatin types and arrangements.  相似文献   
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997.
Site-specific proteolysis of the N or C-terminus of histone tails has emerged as a novel form of irreversible post-translational modifications assigned to histones. Though there are many reports describing histone specific proteolysis, there are very few studies on purification of a histone specific protease. Here, we demonstrate a histone H3 specific protease (H3ase) activity in chicken liver nuclear extract. H3ase was purified to homogeneity and identified as glutamate dehydrogenase (GDH) by sequencing. A series of biochemical experiments further confirmed that the H3ase activity was due to GDH. The H3ase clipped histone H3 products were sequenced by N-terminal sequencing and the precise clipping sites of H3ase were mapped. H3ase activity was only specific to chicken liver as it was not demonstrated in other tissues like heart, muscle and brain of chicken. We assign a novel serine like protease activity to GDH which is specific to histone H3.  相似文献   
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999.
为研究小鼠(Mus musculus)组蛋白H3 K4甲基化酶基因Smyd3转录调控的分子机制,本研究首先通过PCR的方法克隆了5条不同长度的Smyd3启动子5’端缺失片段,与pMD19-T载体连接后,双酶切克隆入pGL3-Basic荧光素酶报告基因载体,构建Smyd3启动子-pGL3-Basic报告基因重组质粒,瞬时转染HEK293细胞48 h后采用双报告基因检测试剂盒检测Smyd3启动子各缺失片段的相对荧光活性.结果表明,本研究成功构建Smyd3启动子5’端缺失片段-pGL3-Basic荧光报告基因重组质粒,所构建的启动子重组子转染组与阳性对照组相比表现出荧光活性,并且pGL3-Smyd3-4的荧光活性最强,是其他的2至4倍左右,pGL3-Smyd3-5的荧光活性最弱.本研究初步确定Smyd3基因的启动子核心区域可能位于-533~-42bp之间,在-2026~-533 bp之间可能存在启动子负调控序列.  相似文献   
1000.
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