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Fisher ScientificTM Model 100 Sonic Dismembrator

公司名称: Fisher Scientific
产品编号: 100
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Assay to Measure Interactions between Purified Drp1 and Synthetic Liposomes
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Date:
2017-05-05
[Abstract]  A mitochondrion is a dynamic intracellular organelle that actively divides and fuses to control its size, number and shape in cells. A regulated balance between mitochondrial division and fusion is fundamental to the function, distribution and turnover of mitochondria (Roy et al., 2015). Mitochondrial division is mediated by dynamin-related protein 1 (Drp1), a mechano-chemical GTPase that constricts mitochondrial membranes (Tamura et al., 2011). Mitochondrial membrane lipids such as phosphatidic acid and cardiolipin bind Drp1, and Drp1-phospholipid interactions provide key ... [摘要]  线粒体是一种动态的细胞内细胞器,主动分裂和融合以控制细胞的大小,数量和形状。线粒体分裂和融合之间的调节平衡是线粒体功能,分布和周转的基础(Roy等,2015)。线粒体分化是由动力蛋白相关蛋白1(Drp1)介导的,其是限制线粒体膜的机械化学GTP酶(Tamura等人,2011)。线粒体膜脂质如磷脂酸和心磷脂结合Drp1,并且Drp1磷脂相互作用提供线粒体分裂的关键调控机制(Montessuit等人,2010; Bustillo-Zabalbeitia等人2014年; Macdonald等人,2014年; Stepanyants等人,2015; Adachi等人,2016)。在这里,我们描述了使用纯化的重组Drp1和具有定义的一组磷脂的合成脂质体定量测量Drp1与脂质的相互作用的生物化学实验。该测定使得可以定义蛋白质 - 脂质相互作用的特异性以及头基和酰基链的作用。

背景 蛋白质和膜脂质的相互作用对于细胞如细胞器分裂中生物膜的重塑至关重要。在线粒体分裂中,Drp1限制线粒体膜并驱动该膜重塑过程。我们最近显示,信号磷脂,磷脂酸与Drp1相互作用,并通过限制线粒体上的组装分裂机制(Adachi等人,2016)产生启动步骤。 Drp1识别磷脂酸的头基和酰基链。为了分析Drp1-磷脂酸结合,我们建立了几种蛋白质 - ...

Adhesion and Invasion Assay Procedure Using Caco-2 Cells for Listeria monocytogenes
Author:
Date:
2017-05-05
[Abstract]  Listeria monocytogenes is an important Gram-positive foodborne pathogen that is a particular problem in ready-to-eat food. It has an ability to survive in harsh conditions like refrigeration temperatures and high salt concentrations and is known to cross intestinal, placental and blood-brain barriers. Several cancerous cell lines like cervical, liver, dendritic, intestinal and macrophages have been used to study in vitro propagation and survival of listeria in human cells. Human intestinal epithelial cells have been used to study how listeria crosses the intestinal barrier ... [摘要]  单核细胞增生利斯特氏菌是一种重要的革兰氏阳性食源性病原体,是即食食品中的一个特殊问题。它具有在诸如制冷温度和高盐浓度的恶劣条件下生存的能力,并且已知可以穿过肠,胎盘和血脑屏障。已经使用了诸如子宫颈,肝脏,树突状细胞,肠和巨噬细胞的几种癌细胞系来研究人细胞中李斯特菌的体外扩增和存活。人肠上皮细胞已被用于研究李斯特菌如何穿过肠屏障并引起感染。本文中的方案描述了生长Caco-2细胞的过程,维持细胞并将其用于粘附和侵袭测定。在粘附测定期间,将细胞与李斯特菌孵育30分钟,但是在侵袭测定中,细胞生长在感染后的几个时间点被停止以监测细胞中李斯特菌的生长和存活率。

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