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国家重点基础研究发展计划(2013CB734001)

作品数:9 被引量:34H指数:5
相关作者:杨克迁杜德尧李金娥王璐牛国清更多>>
相关机构:中国科学院天津科技大学中国科学院大学更多>>
发文基金:国家重点基础研究发展计划国家自然科学基金更多>>
相关领域:生物学更多>>

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9 条 记 录,以下是 1-10
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高浓度底物下青霉素扩环酶的活性评价与底物抑制现象被引量:2
2015年
本文对青霉素扩环酶(Penicillin expandase,也称Deacetoxycephalosporin C synthase,DAOCS)在高浓度青霉素G下的底物抑制现象进行初步评价与表征,筛选适合工业应用条件的高活力突变体。我们通过HPLC对已报道的几个DAOCS高活力突变体在青霉素G浓度5.6至500 mmol/L间的比活力进行定量测定,并与不同催化反应动力学模型的理论推测变化趋势比较,发现DAOCS野生型酶及高活力突变体H4、H5、H6与H7在高浓度青霉素G条件下均表现出明显的底物抑制现象,但是变化趋势不同。野生型酶与突变体H4的比活力先上升后下降,与竞争性抑制模型预测不符。突变体H5、H6与H7的比活力变化呈现更复杂的变化趋势。在所有测试的突变体中,H6的活性显著高于其他突变体酶。青霉素G对野生型DAOCS的底物抑制现象符合非竞争性抑制模型的预测。而部分突变体表现出复杂的底物抑制行为,表明其具有更复杂的作用机制。在高底物浓度下筛选具有较强催化活性的青霉素扩环酶突变体对于推动其在工业生产中的应用具有重要指导作用。
伍林军范可强季俊杰杨克迁
Biosynthesis and regulation of secondary metabolites in microorganisms被引量:5
2013年
Secondary metabolites are organic compounds with complex chemical structures and diverse physiological functions. Secondary metabolites include antibiotics, pigments, and other bioactive compounds. Many of these compounds have important agricultural and medical applications. Microorganisms, especially actinomycetes and filamentous fungi, are noted as a rich source of bioactive secondary metabolites. Typically, each species produces several antibiotics, with the profile being species-specific.
NIU GuoQingTAN HuaRong
关键词:次生代谢产物生物合成次级代谢产物
jadR* and jadR2 act synergistically to repress jadomycin biosynthesis被引量:6
2013年
The biosynthesis of antibiotics is controlled by cascade regulation involving cluster-situated regulators (CSRs) and pleiotropic regulators. Three CSRs have been identified in the jadomycin biosynthetic gene cluster, including one OmpR-type activator (JadR1) and two TetR-like repressors (JadR* and JadR2). To examine their interactions in jadomycin biosynthesis, a series of mutants were generated and tested for jadomycin production. We noticed that jadomycin production in the jadR*-jadR2 double mutant was increased dramatically compared with either single mutant. Transcriptional analysis showed that jadR* and jadR2 act synergistically to repress jadomycin production by inhibiting the transcription of jadR1. Furthermore, jadR* and jadR2 reciprocally inhibit each other. The complex interactions among these three CSRs may provide clues for the activation of the jadomycin gene cluster, which would otherwise remain silent without stimulation from stress signals.
ZHANG YanYanZOU ZhengZhongNIU GuoQingTAN HuaRong
Assembly and features of secondary metabolite biosynthetic gene clusters in Streptomyces ansochromogenes被引量:2
2013年
A draft genome sequence of Streptomyces ansochromogenes 7100 was generated using 454 sequencing technology. In combination with local BLAST searches and gap filling techniques, a comprehensive antiSMASH-based method was adopted to assemble the secondary metabolite biosynthetic gene clusters in the draft genome of S. ansochromogenes. A total of at least 35 putative gene clusters were identified and assembled. Transcriptional analysis showed that 20 of the 35 gene clusters were expressed in either or all of the three different media tested, whereas the other 15 gene clusters were silent in all three different media. This study provides a comprehensive method to identify and assemble secondary metabolite biosynthetic gene clusters in draft genomes of Streptomyces, and will significantly promote functional studies of these secondary metabolite biosynthetic gene clusters.
ZHONG XingYuTIAN YuQingNIU GuoQingTAN HuaRong
关键词:ASSEMBLEFEATURES
转录调控研究的方法学进展被引量:2
2015年
基因的表达在多个层次受到严格的控制,其中转录水平的调控是控制基因表达的重要环节之一。近几年,随着分子生物学研究方法的不断发展,转录调控的研究方法学也出现了新的变化。本文综述了基于作者所在课题组对链霉菌次级代谢调控研究过程中优化和改进的转录调控研究方法,如基于SYBR Gold的凝胶阻滞实验,基于荧光标记和毛细管电泳检测的足迹法,基于报告基因的直接调控关系分析等;同时也对研究调控蛋白和靶启动子相互作用的新方法进行了阐述,如表面等离子共振技术和等温滴定量热测定技术等。这些转录调控研究方法的优化和总结,能够帮助研究者开展相关研究。
王俊阳王为善李肖赵华杨克迁
关键词:转录调控启动子调控蛋白相互作用
合成生物学法构建杂合抗生素生物合成功能模块的研究
PolynikA为杂合的核苷肽类抗真菌抗生素,是我们前期工作中由可可链霉菌的多氧霉素(polyoxin)生物合成部分基因与圈卷产色链霉菌尼可霉素(nikkomycin)生物合成部分基因通过组合生物合成得到的一个全新结构的...
周娇鹏田宇清包其郁谭华荣
关键词:合成生物学生物合成异源表达
Biosynthesis and molecular regulation of secondary metabolites in microorganisms被引量:5
2017年
Antibiotics are most important compounds in microbial secondary metabolites.As we know,streptomycetes are a particularly abundant source of antibiotics and related compounds,providing more than half of medically important antimicrobial and antitumor agents.Various environmental and physiological conditions influence the onset and level of antibiotic production.Because of improper use and abuse of antibiotics as well as the horizontal transfer of antibiotic resistance genes between bacteria by conjugation,transduction or transformation, these have led to the appearance of antibiotic resistance and the loss of antibiotic native efficiency.
Yue LiHuarong Tan
关键词:分子调控次生代谢滥用抗生素抗生素耐药性
尼可霉素生物合成基因簇的改造及其异源表达被引量:3
2015年
【目的】异源表达尼可霉素生物合成基因簇,为尼可霉素核苷和肽基缩合机制研究以及尼可霉素与其它核苷类抗生素的组合生物合成奠定基础。【方法】以含有尼可霉素生物合成基因簇的pNIK为出发质粒,通过PCR-targeting的方法,将基因簇中san G和san F的启动子替换为组成型hrd B启动子,构建重组质粒pNIKm。通过接合转移的方法分别将pNIK和pNIKm导入天蓝色链霉菌M1146中,获得异源表达菌株M1146-NIK和M1146-NIKm,并通过RT-PCR检测基因簇的表达情况。最后通过抗菌活性实验和产物的分离鉴定,比较M1146-NIK和M1146-NIKm的抗菌活性和尼可霉素的产生情况。【结果】pNIK和pNIKm在异源宿主天蓝色链霉菌M1146成功表达;M1146-NIK和M1146-NIKm均有明显的抗菌活性;M1146-NIK和M1146-NIKm均能产生少量的尼可霉素X、Z和假尼可霉素Z;M1146-NIK大量积累尿苷,而M1146-NIKm大量积累尿苷、核糖基-4-甲酰-4-咪唑-2-酮和吡啶同型苏氨酸。【结论】尼可霉素生物合成基因簇成功异源表达,并分离鉴定了尼可霉素产物及其生物合成中间体。本研究将为尼可霉素核苷和肽基缩合的酶学机制研究以及尼可霉素与其它核苷类抗生素组合合成新型杂合抗生素提供理论依据和指导。
王璐杜德尧李金娥田宇清刘浩牛国清谭华荣
关键词:圈卷产色链霉菌尼可霉素生物合成基因簇异源表达抗菌活性
Reconstruction of a hybrid nucleoside antibiotic gene cluster based on scarless modification of large DNA fragments被引量:5
2017年
Genetic modification of large DNA fragments(gene clusters) is of great importance in synthetic biology and combinatorial biosynthesis as it facilitates rational design and modification of natural products to increase their value and productivity.In this study,we developed a method for scarless and precise modification of large gene clusters by using RecET/RED-mediated polymerase chain reaction(PCR) targeting combined with Gibson assembly.In this strategy,the biosynthetic genes for peptidyl moieties(HPHT) in the nikkomycin biosynthetic gene cluster were replaced with those for carbamoylpolyoxamic acid(CPOAA)from the polyoxin biosynthetic gene cluster to generate a^40 kb hybrid gene cluster in Escherichia coli with a reusable targeting cassette.The reconstructed cluster was introduced into Streptomyces lividans TK23 for heterologous expression and the expected hybrid antibiotic,polynik A,was obtained and verified.This study provides an efficient strategy for gene cluster reconstruction and modification that could be applied in synthetic biology and combinatory biosynthesis to synthesize novel bioactive metabolites or to improve antibiotic production.
Jiming ZhuoBinbin MaJingjing XuWeihong HuJihui ZhangHuarong TanYuqing Tian
Improvement of oxytetracycline production mediated via cooperation of resistance genes in Streptomyces rimosus被引量:10
2017年
Increasing the self-resistance levels of Streptomyces is an effective strategy to improve the production of antibiotics.To increase the oxytetracycline(OTC) production in Streptomyces rimosus,we investigated the cooperative effect of three co-overexpressing OTC resistance genes:one gene encodes a ribosomal protection protein(otrA) and the other two express efflux proteins(otrB and otrC).Results indicated that combinational overexpression of otrA,otrB,and otrC(MKABC) exerted a synergetic effect.OTC production increased by 179%in the recombinant strain compared with that of the wild-type strain M4018.The resistance level to OTC was increased by approximately two-fold relative to the parental strain,thereby indicating that applying the cooperative effect of self-resistance genes is useful to improve OTC production.Furthermore,the previously identified cluster-situated activator OtcR was overexpressed in MKABC in constructing the recombinant strain MKRABC;such strain can produce OTC of approximately7.49 g L^((-1)),which represents an increase of 19%in comparison with that of the OtcR-overexpressing strain alone.Our work showed that the cooperative overexpression of self-resistance genes is a promising strategy to enhance the antibiotics production in Streptomyces.
Shouliang YinXuefeng WangMingxin ShiFang YuanHuizhuan WangXiaole JiaFang YuanJinliang SunTiejun LiuKeqian YangYuxiu ZhangKeqiang FanZilong Li
关键词:OXYTETRACYCLINE
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