...
首页> 外文期刊>Journal of proteomics >Homogenization of tissues via picosecond-infrared laser (PIRL) ablation: Giving a closer view on the in-vivo composition of protein species as compared to mechanical homogenization
【24h】

Homogenization of tissues via picosecond-infrared laser (PIRL) ablation: Giving a closer view on the in-vivo composition of protein species as compared to mechanical homogenization

机译:通过皮秒红外激光(PIRL)消融组织的均质化:与机械均质化相比,可以更仔细地观察蛋白质种类的体内组成

获取原文
获取原文并翻译 | 示例
           

摘要

Posttranslational modifications and proteolytic processing regulate almost all physiological processes. Dysregulation can potentially result in pathologic protein species causing diseases. Thus, tissue species proteomes of diseased individuals provide diagnostic information. Since the composition of tissue proteomes can rapidly change during tissue homogenization by the action of enzymes released from their compartments, disease specific protein species patterns can vanish. Recently, we described a novel, ultrafast and soft method for cold vaporization of tissue via desorption by impulsive vibrational excitation (DIVE) using a picosecond-infrared-laser (PIRL). Given that DIVE extraction may provide improved access to the original composition of protein species in tissues, we compared the proteome composition of tissue protein homogenates after DIVE homogenization with conventional homogenizations. A higher number of intact protein species was observed in DIVE homogenates. Due to the ultrafast transfer of proteins from tissues via gas phase into frozen condensates of the aerosols, intact protein species were exposed to a lesser extent to enzymatic degradation reactions compared with conventional protein extraction. In addition, total yield of the number of proteins is higher in DIVE homogenates, because they are very homogenous and contain almost no insoluble particles, allowing direct analysis with subsequent analytical methods without the necessity of centrifugation.
机译:翻译后修饰和蛋白水解过程调节几乎所有生理过程。调节异常可能会导致病理性蛋白质物种引起疾病。因此,患病个体的组织物种蛋白质组学提供了诊断信息。由于组织蛋白质组的组成在组织均质化过程中可以通过从其区室释放的酶的作用而快速变化,因此疾病特异性蛋白质种类的模式可能消失。最近,我们描述了一种新颖,超快,柔软的方法,用于通过使用皮秒红外激光(PIRL)的脉冲振动激发(DIVE)进行解吸来使组织冷蒸发。鉴于DIVE提取可以提供对组织中蛋白质种类原始组成的更佳访问,我们将DIVE均质后的组织蛋白匀浆的蛋白质组组成与常规匀浆进行了比较。在DIVE匀浆中观察到更高数量的完整蛋白种类。由于蛋白质通过气相从组织快速转移到气溶胶的冷冻浓缩物中,与常规蛋白质提取相比,完整的蛋白质种类较少地受到酶促降解反应的影响。此外,DIVE匀浆中蛋白质数量的总产率更高,因为它们非常均质并且几乎不包含不溶性颗粒,从而可以使用后续的分析方法进行直接分析而无需离心。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号