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1.
类弹性蛋白(Elastin-like polypeptides,ELPs)是属于弹性蛋白中的一种且具有温控性的生物大分子,本文研究拥挤试剂对不同拓扑结构ELPs相变温度的影响,利用温控-紫外分光光度计研究其相变特性,结果发现,随着PEG2000浓度的增加,T-E-F的相变温度下降11.9~17.1℃;在固定Tadpole-like-E浓度下,随着PEG2000浓度的增加,Tadpole-like-E的相变温度降低11.5~16℃,其中,25 μmol/L的Tadpole-like-E其相变速度缓慢;ELPs浓度越大,其相变温度降低愈大,且PEG2000影响ELPs相变温度的趋势与ELPs的拓扑结构关系不大。另外,在简单的PBS缓冲溶液中加入PEG2000,可以使E-C在浓度<0.5 mol/L的Na2CO3中发生相变,且随着PEG2000浓度的增加,E-C相变温度逐渐降低。本研究为今后ELPs在复杂体系的应用提供前期的基础研究。  相似文献   

2.
生物活材料的研究主要集中在利用单一细菌生产生物膜、水塑料等体外应用。由于菌株尺寸较小,当其应用于体内时,容易发生逃逸,导致滞留效果较差。为解决这一难题,本研究借助大肠杆菌(Escherichia coli)表面展示系统(Neae),在两个菌株表面分别展示SpyTag和SpyCatcher,构建一种双菌“锁扣”型生物活材料生产系统。两菌株之间通过SpyTag和SpyCatcher的结合,发生原位交联,从而长时间滞留在肠道部位。体外实验表明两菌株混合几分钟后,会发生明显的沉降。此外,利用共聚焦成像和微流控平台进一步证明了该系统在流动状态下的粘附效果。最后,为了验证该系统在体内应用的可行性,小鼠连续3d口服A菌(p15A-Neae-SpyTag/sfGFP)和B菌(p15A-Neae-SpyCatcher/mCherry),收集肠道组织进行冷冻切片染色。结果表明,相较于未结合菌株,该双菌系统能更多滞留在小鼠肠道,为生物活材料进一步的体内应用奠定了基础。  相似文献   

3.
生物钟的分子机制研究进展   总被引:1,自引:2,他引:1  
RecentDevelopmentsinMolecularMechanismsofBiologicalClockHouBingkai(DepartmentofBiology,ShandongUniversity,Jinan250100)YuHuimin(DepartmentofBiochemistry,ShandongEducationCollege,Jinan250013)生物的昼夜节奏表现,从单细胞生物到多细胞生物,从原校生物到真核生物都曾被描述过。由于这种现象在生物界广泛存在,关于它的特征、意义和机理的研究日益受到人们重视。其中最重要和最吸引人的方面是它的测时系统—一生物钟(biologicalclock),也称生物振荡器(oscillators)。近年来,人们从分子水平对生物钟的研究比较活…  相似文献   

4.
高等植物NADP^+-依赖型异柠檬酸脱氢酶(ICDHs)定位于细胞质、线粒体、叶绿体和过氧化物酶体等植物细胞的不同部位,由不同的基因编码,属于一个高度保守的多同工酶蛋白家族。对近年来关于植物NADP^+-依赖型异柠檬酸脱氢酶的分子进化及功能研究进行综述,同时提出了未来植物ICDHs的研究重点和方向。最新的分子系统学分析显示,植物中不同细胞定位的ICDH同工酶聚在各自相应的进化枝上,动物或植物中不同细胞器的ICDH同工酶均来源于各自祖先ICDH基因的独立倍增。最新的功能研究表明,ICDHs催化合成的α-酮戊二酸可为植物细胞对氨的吸收同化提供碳骨架,而NADPH可以维系细胞内的氧化还原平衡,帮助植物抵御氧化胁迫。  相似文献   

5.
在原核生物、真核生物及病毒中,一些蛋白质的折叠不符合Anfinsen原则,即依靠自身的氨基酸序列是不够的,还需一段被称为分子内分子伴侣(IMC)的肽段来协助折叠.根据机制不同,IMC可分为两类:第一类IMC引导成熟肽折叠为具有空间结构的蛋白质;第二类IMC协助成熟肽的多聚化而使其获得生物学功能.IMC能提供比分子伴侣更契合的结构,更有效地引导成熟肽折叠,是一种更优的折叠策略.研究IMC分子机制,不仅能够确定IMC上哪些残基的协同作用引导成熟肽折叠,而且可通过改变或修饰其侧链来改造成熟肽,拓展传统的蛋白质工程.  相似文献   

6.
共生珊瑚的异养营养指有虫黄藻共生的珊瑚在同化作用过程中,除通过虫黄藻光合作用获取营养之外,还可以从外界环境中直接摄取现成的有机物,经消化吸收后转变为自身的组成物质或储存为能量.国内外异地养殖或繁育虫黄藻共生珊瑚的研究多集中在光照、水流、水质等条件对珊瑚生长的影响,对共生珊瑚异养营养需求与供应方面的关注较少.本文从共生珊瑚异养营养来源、影响共生珊瑚异养营养供应的因素以及研究手段等方面,对国内外研究进展进行了综述,探讨异养营养供应对共生珊瑚的意义.总的来说,目前共生珊瑚异养营养的研究尚处于起步阶段,不论是研究方法或者珊瑚选择摄食的内在机制,都需要深入探究.  相似文献   

7.
林麝(Moschus berezovskii)是国家Ⅰ级重点保护野生动物,以分泌麝香而闻名。麝香是雄性林麝的香腺分泌的特殊物质。由于过度猎杀取香、栖息地破碎等原因,野生林麝的数量急剧下降至濒危。自1950年代以来,我国开展了人工养殖林麝,积累了丰富经验,取得了一定成果,但在林麝营养需要、饲料加工与饲养管理、遗传特征与选育、繁殖、泌香机理与取香等基础理论及关键技术方面研究进展不大,所以,林麝种群扩繁速度低,种群规模不大,麝香产量不高。本文综述了近年来有关林麝香腺的显微与超微结构、麝香的分泌形成过程、利用分子标记研究麝香的分泌、性激素基因与林麝麝香分泌的关系、林麝泌香相关基因组与转录组研究等方面的研究进展,以期为深入研究林麝泌香的分子机制提供参考。  相似文献   

8.
干旱胁迫是严重限制全球农业生产的环境因素,造成了牧草大量减产.综述了4种重要苜蓿在干旱胁迫下的相关基因以及抗旱育种方面的主要进展,并对苜蓿耐旱性研究的前景及存在问题进行了讨论.提出可充分利用生物技术,挖掘抗旱相关基因资源,在豆科模式植物蒺藜苜蓿中验证基因功能,阐明苜蓿抗旱应答网络机制,进而从黄花苜蓿中克隆抗旱相关基因,...  相似文献   

9.
心血管疾病严重威胁人类健康,其诱发的进行性心肌重塑是导致心功能逐步恶化的关键因素。新近发现多种心血管疾病危险因素能够调控AngⅡ、IGF-1、TGF-β1、ACh等信号分子表达,进而影响PI3K-Akt、TAK1/Smads、JAK-STAT等重塑相关信号通路,在心肌重塑过程中发挥着重要作用。本文将概括介绍病理条件下心肌重塑的分子调节机制和新治疗靶点的研究进展。  相似文献   

10.
牙齿发育不全是一类十分常见的人类颅面部发育异常.目前的研究表明,其病因与遗传因素、环境因素及后天因素都有关联.加之,牙齿发育的分子遗传学机制已然成为现代分子生物学的研究热点.本文就牙齿发育的简要过程、分子机制和牙齿发育不全的最新分子遗传学研究进展方面作一综述.  相似文献   

11.
Protein cage nanoparticles are widely used as targeted delivery nanoplatforms, because they have well-defined symmetric architectures, high biocompatibility, and enough plasticity to be modified to produce a range of different functionalities. Targeting peptides and ligands are often incorporated on the surface of protein cage nanoparticles. In this research, we adopted the SpyTag/SpyCatcher protein ligation system to covalently display target-specific affibody molecules on the exterior surface of bacteriophage P22 virus-like particles (VLP) and evaluated their modularity and efficacy of targeted delivery. We genetically introduced the 13 amino acid SpyTag peptide into the C-terminus of the P22 capsid protein to construct a target-tunable nanoplatform. We constructed two different SpyCatcher-fused affibody molecules as targeting ligands, SC-EGFRAfb and SC-HER2Afb, which selectively bind to EGFR and HER2 surface markers, respectively. We produced target-specific P22 VLP-based delivery nanoplatforms for the target cell lines by selectively combining SpyTagged P22 VLP and SC-fused affibody molecules. We confirmed its target-switchable modularity through cell imaging and verified the target-specific drug delivery efficacy of the affibody molecules displaying P22 VLP using cell viability assays. The P22 VLP-based delivery nanoplatforms can be used as multifunctional delivery vehicles by ligating other functional proteins, as well as affibody molecules. The interior cavity of P22 VLP can be also used to load cargoes like enzymes and therapeutic proteins. We anticipate that the nanoplatforms will provide new opportunities for developing target-specific functional protein delivery systems.  相似文献   

12.
天然蛋白质在生物体内主要以线性形式存在,由于多数蛋白质(酶)热稳定性较差,制约了其在工业催化、食品制造、医药领域的高效应用。自然界中发现的天然环肽类物质具有首尾相连的环化结构,使蛋白质具有较高的稳定性,为改造酶的结构、提高其热稳定性及拓宽其应用范围提供了新思路。本文根据国内外在蛋白质环化领域的新动态并结合本实验室的研究,系统介绍了内含肽介导的蛋白质反式剪接、表达蛋白连接、转肽酶催化的转肽作用等几种传统蛋白质环化方法,着重介绍了基于新型超强分子粘合剂Spy Tag/Spy Catcher介导的蛋白质环化的研究。  相似文献   

13.
SpyTag and SpyCatcher can spontaneously and rapidly conjugate to form an irreversible and stable covalent bond. The trehalose synthase (TreS) from Thermomonospora curvata was successfully cyclized after the fusion of a SpyTag to its C-terminus and SpyCatcher to the N-terminus. Cyclized TreS retained more than 85% of its activity at temperatures ranging from 40 to 50°C and more than 95% at a pH range of 8 to 10, while the wild type kept only 60 and 80% of its activity under the same conditions. These results demonstrated that cyclized TreS had better resistance to high temperature and alkali than the wild type. Furthermore, structural analysis revealed that cyclized TreS had better conformational stability and was able to fold correctly at a higher temperature than the wild type. Our findings indicate that the use of SpyTag and SpyCatcher to cyclize enzymes is a promising strategy to increase their stability.  相似文献   

14.
The Split-Cre system is a powerful tool for genetic manipulation and can be used to spatiotemporally control gene expression in vivo. However, the low activity of the reconstituted NCre/CCre recombinase in the Split-Cre system limits its application as an indicator of the simultaneous expression of a pair of genes of interest. Here, we describe two approaches for improving the activity of the Split-Cre system after Cre reconstitution based on self-associating split GFP (Split-GFP) and SpyTag/SpyCatcher conjugation. First, we created the Split-GFP-Cre system by constructing fusion proteins of NCre and CCre with the N-terminal and C-terminal subunits of GFP, respectively. Reconstitution of Cre by GFP-mediated dimerization of the two fusion proteins resulted in recombinase activity approaching that of full-length Cre in living cells. Second, to further increase recombinase activity at low levels of Split-Cre expression, the Split-Spy-GCre system was established by incorporating the sequences for SpyTag and SpyCatcher into the components of the Split-GFP-Cre system. As anticipated, covalent conjugation of the SpyTag and SpyCatcher segments improved Split-GFP dimerization to further increase Cre recombinase activity in living cells. The increased efficiency and robustness of this dual-split system (Split-Cre and Split-GFP) minimize the problems of incomplete double gene-specific KO or low labeling efficiency due to poor NCre/CCre recombinase activity. Thus, this Split-Spy-GCre system allows more precise gene manipulation of cell subpopulations, which will provide advanced analysis of genes and cell functions in complex tissue such as the immune system.  相似文献   

15.
16.
A SpyRing cyclized cephalosporin C acylase (SRCCA) was obtained by fusing SpyTag and SpyCatcher to the N- and C- termini of cephalosporin C acylase (CCA), respectively. The results suggested that the introduction of the SpyRing (head-to-tail cyclization via SpyTag and SpyCatcher) did not affect the active center of the SRCCA (the specific activities of CCA and SRCCA are 15.71 U/mg and 13.11 U/mg, respectively). Also, the thermostability, organic solvents tolerance, and denaturant tolerance of the free enzyme SRCCA were improved. Since glyoxyl agarose carrier favors the covalent immobilization of enzymes through its surface regions having the highest lysine residues density, SRCCA permitted its multipoint and oriented immobilization because SpyRing is very rich in Lys residues, while CCA is quite poor in Lys residues and immobilization is via less enzyme support-bonds. When the enzyme loading amount was 10 mg/g carrier, the expressed activity of SRCCA was 22 % higher than that of CCA. The stability of the immobilized SRCCA was also significantly improved; the half-life of the immobilized SRCCA at 50 °C was 125 min, which was about 5 times the half-life of the immobilized CCA.  相似文献   

17.
SpyTagr和SpyCatche可通过自发反应形成共价键,产生稳定的分子自组装体。酶分子自组装体因具有高效有序的催化特性在合成生物学和纳米技术领域具有重要的应用价值。为探索SpyTag/SpyCatcher在大肠杆菌胞内多酶复合体系形成有序自组装分子能力,将SpyTagr和SpyCatche分别与P450BM3m单加氧酶和葡萄糖脱氢酶GDH进行融合表达,以期产生具有辅酶再生循环系统、高效生物合成靛蓝分子的SpyTag/SpyCatcher双酶自组装复合体。首先,通过电泳及质谱对重组工程菌表达蛋白进行分析,证实SpyCatcher-P450BM3m与SpyTag-GDH在胞内成功形成了自组装多酶复合体;然后,系统分析不同培养条件下组装体合成靛蓝的能力。结果发现,经0.5mmol/L IPTG诱导后,菌体在16℃继续培养18h后,工程菌对吲哚(2mmol/L)与葡萄糖(4mmol/L)的全细胞催化能力最强,靛蓝产量最高达258mg/L,是未组装多酶系统的1.9倍,比P450BM3m单酶表达系统高约2.4倍;反应70min后达到反应平衡,转化率为52%。成功实现了SpyTag/SpyCatcher介导的多酶体系在大肠杆菌细胞中的自组装和高效转化体系,为胞内多酶复合物组装体的设计提供了新思路。  相似文献   

18.
柠檬酸合酶的分子生物学研究进展   总被引:1,自引:0,他引:1  
柠檬酸合酶(citrate synthase,CS)是细胞内多种重要代谢途径的关键酶。CS可催化草酰乙酸和乙酰辅酶A之间的缩合反应生成柠檬酸和辅酶A。通常革兰氏阳性细菌、古菌以及真核细胞的CS为同源二聚体,而革兰氏阴性细菌的CS为同源六聚体。根据其在细胞内的定位不同,CS可分为线粒体CS、乙醛酸循环体CS、过氧化物酶体CS。这些同工酶在能量代谢、植物脂肪的代谢、脂肪酸的氧化及细胞解毒过程中起着重要作用。不同来源的CS空间结构、催化机制和动力学性质十分相似。针对其生化特性、空间结构特点、催化机制以及分子进化等研究进展进行综述。  相似文献   

19.
本文利用SpyTag/SpyCatcher特性构建了三臂星型结构的类弹性蛋白多肽(elastin like polypeptides, ELPs),考察其在不同溶剂,如分子拥挤试剂、osmolytes及深共熔溶剂(deep eutectic solvents,DESs)中的相变温度及行为,并与含有相同ELPs重复数的线性ELPs120作对比。结果表明:在不同浓度拥挤试剂PEG2000作用下,两种结构的ELPs相变温度均降低,当其各自浓度均为25 μmol/L时,三臂星型ELPs相变温度降低3℃~13℃,而ELPs120相变温度仅降低1.5℃~10.8℃。此外,在添加PEG2000后,三臂星型ELPs相变缓慢;在不同类型和浓度的osmolytes溶液中,25 μmol/L三臂星型ELPs相变温度明显要比线性ELPs高8℃左右;在DESs体系中,三臂星型ELPs有类似与水溶液中的相变行为,且其相变温度受到抑制,另外三臂星型ELPs和ELPs120在DESs/PBS体系中,与在(氯化胆碱+尿素)/PBS体系中的相变行为一致,其中当DESs体积含量为50%,ELPs120相变温度是最低的。由于ELPs在非单一缓冲液体系中的相变行为不同,这丰富了ELPs作为纯化标签的应用,且在非单一缓冲液体系中因降低了相变温度,节约了纯化融合蛋白的经济成本,同时也为研究ELPs拓扑结构与其相变行为之间的关系奠定理论基础。  相似文献   

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