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Agar

Company: Sigma-Aldrich
Catalog#: A7002
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In vivo and in vitro 31P-NMR Study of the Phosphate Transport and Polyphosphate Metabolism in Hebeloma cylindrosporum in Response to Plant Roots Signals
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Date:
2018-08-20
[Abstract]  We used in vivo and in vitro phosphorus-31 nuclear magnetic resonance (31P-NMR) spectroscopy to follow the change in transport, compartmentation and metabolism of phosphate in the ectomycorrhizal fungus Hebeloma cylindrosporum in response to root signals originating from host (Pinus pinaster) or non-host (Zea mays) plants. A device was developed for the in vivo studies allowing the circulation of a continuously oxygenated mineral solution in an NMR tube containing the mycelia. The in vitro studies were performed on fungal material after several consecutive treatment steps (freezing in liquid nitrogen; crushing with perchloric acid; elimination of perchloric acid; freeze-drying; dissolution in an appropriate liquid ... [摘要]  我们使用体内和体外磷-31核磁共振( 31 P-NMR)光谱来跟踪运输,分区和 外生菌根真菌 Hebeloma cylindrosporum 中的磷酸盐代谢响应来自宿主( Pinus pinaster )或非宿主( Zea mays )的根信号植物。 开发了一种用于体内研究的装置,其允许连续氧化的矿物质溶液在含有菌丝体的NMR管中循环。 在几个连续的处理步骤(在液氮中冷冻;用高氯酸压碎;消除高氯酸;冷冻干燥;在适当的液体培养基中溶解)后,对真菌材料进行体外研究。

【背景】 菌根真菌和植物之间的关联改善了宿主植物的P营养(Smith和Read,2008; Plassard和Dell,2010; Cairney,2011; Smith 等人,,2015)。这种积极效应主要归因于真菌菌丝对磷酸盐(Pi)的吸收,探测了在活跃吸收根周围的耗竭区以外的大量土壤(Smith和Read,2008; Cairney,2011; Smith et al。< em="">,2015)和真菌细胞分泌细胞外磷酸酶(Quiquampoix和Mousain,2005)。吸收的Pi部分地掺入磷酸化的代谢物,磷脂和核酸中,并且部分地浓缩成多磷酸盐(PolyP),其中它们构成液泡中的储存池(Ashford 等人,,1994)。该协议详述了一种装置,该装置允许通过 31 ...

In vitro Analysis of Ubiquitin-like Protein Modification in Archaea
Author:
Date:
2018-05-20
[Abstract]  The ubiquitin-like (Ubl) protein is widely distributed in Archaea and involved in many cellular pathways. A well-established method to reconstitute archaeal Ubl protein conjugation in vitro is important to better understand the process of archaeal Ubl protein modification. This protocol describes the in vitro reconstitution of Ubl protein modification and following analysis of this modification in Haloferax volcanii, a halophilic archaeon serving as the model organism. [摘要]  泛素样(Ubl)蛋白广泛分布于古细菌中并参与许多细胞途径。 为了更好地理解古细菌Ub1蛋白质修饰的过程,重建体外古细菌Ubl蛋白质缀合物的完善方法是很重要的。 该协议描述了Ubl蛋白质修饰的体外重建以及在作为模型生物的嗜盐古细菌Haloferax volcanii 中对这种修饰进行分析。

【背景】泛素(Ub)与靶蛋白共价连接的过程被称为泛素化,其控制真核细胞中大量的细胞过程(Glickman和Ciechanover,2002; Komander和Rape,2012)。遍在蛋白化由一系列酶(包括Ub激活酶(E1),Ub结合酶(E2s)和Ub连接酶(E3s))催化。泛素化的体外重建是确定酶之间或E3与蛋白质底物之间特异性的有用测定法(Zhao等人,2012)。在古细菌中,Ubl蛋白SAMP采用Ub折叠,并且与E1样酶UbaA催化的蛋白靶标异肽连接[Maupin-Furlow,(2014)综述]。尽管E1同系物在古细菌中广泛存在,但基于一级序列比较,在大多数古细菌中未预测经典E2或E3酶。我们最近对Haloferax volcanii的研究表明甲硫氨酸亚砜还原酶A(MsrA)是Ubl蛋白质修饰(sampylation)与UbaA一起在体内温和的氧化条件下和< (体外)(fu="">

Laminarin Quantification in Microalgae with Enzymes from Marine Microbes
Author:
Date:
2018-04-20
[Abstract]  The marine beta-glucan laminarin is an abundant storage polysaccharide in microalgae. High production rates and rapid digestion by heterotrophic bacteria turn laminarin into an ideal carbon and energy source, and it is therefore a key player in the marine carbon cycle. As a main storage glucan laminarin also plays a central role in the energy metabolism of the microalgae (Percival and Ross, 1951; Myklestad, 1974; Painter, 1983). We take advantage of enzymes that digest laminarin selectively and can thereby quantify only this polysaccharide in environmental samples. These enzymes hydrolyze laminarin into glucose and oligosaccharides, which are measured with a standard reducing sugar assay to obtain the laminarin concentration. Prior to this assay, the three enzymes need to be produced via ... [摘要]  海洋β-葡聚糖昆布多糖是微藻中丰富的储存多糖。高生产率和异养细菌的快速消化将昆布多糖转化为理想的碳源和能源,因此它是海洋碳循环的关键参与者。作为主要的储存葡聚糖昆布多糖也在微藻的能量代谢中发挥核心作用(Percival and Ross,1951; Myklestad,1974; Painter,1983)。我们利用可以选择性消化昆布多糖的酶,从而可以对环境样品中的这种多糖进行定量。这些酶将昆布多糖水解成葡萄糖和寡糖,用标准的还原糖测定法测定得到昆布多糖浓度。在此测定之前,需要通过异源表达和纯化产生三种酶。该测定可用于监测环境微藻中的昆布多糖浓度,其通过过滤从海水中浓缩,或用来自藻类实验室培养物的样品中浓缩。

【背景】海洋多糖在海洋碳循环中起着重要作用,是浮游植物生理学的重要组成部分,但受到严重影响。几十年来,农业食品工业一直使用基于酶分析的即用试剂盒来分析各种不同的多糖(Whitaker,1974)。这些快速,稳健和特异性的基于酶的方法评估源自陆地植物即淀粉的多糖,因为它们广泛用于食品,饲料和其他工业应用中(Brunt等人, ,1998)。然而,海洋多糖的类似测定仍然缺乏。受到使用酶在藻类中进行多糖定量的想法的启发,我们开发了一种基于酶的方法来量化在硅藻和其他微藻中生态相关的β-葡聚糖昆布氨酸,也称为菊科金刚烷。

这种应用的三种糖苷水解酶(GH)来自福尔摩沙(Formosa)。并且它们的特征如下:FbGH30是GH30家族的外切型β-1,6-葡聚糖酶,特别是水解与昆布多糖骨架连接的β-1,6-连接的葡萄糖单体分支;并且FaGH17A和FbGH17A是GH家族17的两种内作用β-1,3-葡聚糖酶,其特异性地作用于β-1,3-连接的昆布多糖主链上(Becker等人,2017年, ...

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