Malabika Das, Tridib Ganguly, Partho Chattoraj, Palas Kumar Chanda, Amitava Bandhu, Chia Yen Lee, Subrata Sau
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Two sites dissected by HincII digestion were designated operators O(L) and O(R), respectively. Equilibrium binding studies indicate that His-CI binds to O(R) with a little more strongly than O(L) and binding species is probably dimeric in nature. Interestingly His-CI binding affinity reduces drastically at elevated temperatures (32-42 degrees C). Both O(L) and O(R) harbor a nearly identical inverted repeat and studies show that phi11 repressor binds to each repeat efficiently. Additional analyses indicate that phi11 repressor, like lambda repressor, harbors an N-terminal domain and a C-terminal domain which are separated by a hinge region. Secondary structure of phi11 CI even nearly resembles to that of lambda, phage repressor though they differ at sequence level. The putative N-terminal HTH (helix-turn-helix) motif of phi11 repressor belongs to the HTH -XRE-family of proteins and shows significant identity to the HTH motifs of some proteins of evolutionary distant organisms but not to HTH motifs of most S. aureus phage repressors.</p>","PeriodicalId":15113,"journal":{"name":"Journal of biochemistry and molecular biology","volume":"40 5","pages":"740-8"},"PeriodicalIF":0.0000,"publicationDate":"2007-09-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"24","resultStr":"{\"title\":\"Purification and characterization of repressor of temperate S. aureus phage phi11.\",\"authors\":\"Malabika Das, Tridib Ganguly, Partho Chattoraj, Palas Kumar Chanda, Amitava Bandhu, Chia Yen Lee, Subrata Sau\",\"doi\":\"10.5483/bmbrep.2007.40.5.740\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>To gain insight into the structure and function of repressor proteins of bacteriophages of gram-positive bacteria, repressor of temperate Staphylococcus aureus phage phi11 was undertaken as a model system here and purified as an N-terminal histidine-tagged variant (His-CI) by affinity chromatography. A approximately 19 kDa protein copurified with intact His-CI (approximately 30 kDa) at low level was resulted most possibly due to partial cleavage at its Ala-Gly site. At approximately 10 nM and higher concentrations, His-CI forms significant amount of dimers in solution. There are two repressor binding sites in phi11 cI-cro intergenic region and binding to two sites occurs possibly by a cooperative manner. Two sites dissected by HincII digestion were designated operators O(L) and O(R), respectively. Equilibrium binding studies indicate that His-CI binds to O(R) with a little more strongly than O(L) and binding species is probably dimeric in nature. Interestingly His-CI binding affinity reduces drastically at elevated temperatures (32-42 degrees C). Both O(L) and O(R) harbor a nearly identical inverted repeat and studies show that phi11 repressor binds to each repeat efficiently. 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引用次数: 24
摘要
为了深入了解革兰氏阳性菌噬菌体阻遏物蛋白的结构和功能,本文以温和型金黄色葡萄球菌噬菌体phi11阻遏物为模型系统,通过亲和层析纯化为n端组氨酸标记变体(His-CI)。一个大约19 kDa的蛋白与低水平完整的His-CI(大约30 kDa)共化,很可能是由于其Ala-Gly位点的部分切割。在大约10 nM及更高的浓度下,His-CI在溶液中形成大量的二聚体。在phi11 ci - cross基因间区存在两个阻遏因子结合位点,与这两个位点的结合可能是通过合作的方式发生的。HincII酶切的两个位点分别被指定为O(L)和O(R)操作符。平衡结合研究表明His-CI与O(R)的结合强度略高于O(L),结合物可能是二聚体。有趣的是,His-CI的结合亲和力在高温下(32-42℃)急剧降低。O(L)和O(R)都含有几乎相同的反向重复序列,研究表明phi11抑制因子有效地结合每个重复序列。进一步的分析表明,phi11阻遏子和lambda阻遏子一样,含有一个n端结构域和一个c端结构域,它们被一个铰链区分开。phi11 CI的二级结构与噬菌体抑制因子lambda的二级结构相似,但在序列水平上存在差异。phi11阻遏物的n端HTH(螺旋-转-螺旋)基序属于HTH - xre蛋白家族,与进化距离较远的生物的一些蛋白的HTH基序具有显著的同一性,但与大多数金黄色葡萄球菌噬菌体阻遏物的HTH基序不一致。
Purification and characterization of repressor of temperate S. aureus phage phi11.
To gain insight into the structure and function of repressor proteins of bacteriophages of gram-positive bacteria, repressor of temperate Staphylococcus aureus phage phi11 was undertaken as a model system here and purified as an N-terminal histidine-tagged variant (His-CI) by affinity chromatography. A approximately 19 kDa protein copurified with intact His-CI (approximately 30 kDa) at low level was resulted most possibly due to partial cleavage at its Ala-Gly site. At approximately 10 nM and higher concentrations, His-CI forms significant amount of dimers in solution. There are two repressor binding sites in phi11 cI-cro intergenic region and binding to two sites occurs possibly by a cooperative manner. Two sites dissected by HincII digestion were designated operators O(L) and O(R), respectively. Equilibrium binding studies indicate that His-CI binds to O(R) with a little more strongly than O(L) and binding species is probably dimeric in nature. Interestingly His-CI binding affinity reduces drastically at elevated temperatures (32-42 degrees C). Both O(L) and O(R) harbor a nearly identical inverted repeat and studies show that phi11 repressor binds to each repeat efficiently. Additional analyses indicate that phi11 repressor, like lambda repressor, harbors an N-terminal domain and a C-terminal domain which are separated by a hinge region. Secondary structure of phi11 CI even nearly resembles to that of lambda, phage repressor though they differ at sequence level. The putative N-terminal HTH (helix-turn-helix) motif of phi11 repressor belongs to the HTH -XRE-family of proteins and shows significant identity to the HTH motifs of some proteins of evolutionary distant organisms but not to HTH motifs of most S. aureus phage repressors.