产品推荐:气相|液相|光谱|质谱|电化学|元素分析|水分测定仪|样品前处理|试验机|培养箱


化工仪器网>技术中心>其他文章>正文

欢迎联系我

有什么可以帮您? 在线咨询

微波解决了蛋白质研究的极限

来源:培安有限公司   2012年11月15日 16:34  

        one of the greatest advances in solid phase peptide synthesis (SPPS) and proreomics over the past decade is the lise of microwave irradiation to overcome incomplete and slow reactions typical of conventional SPPS and  prorcomic sample preparation.

        Microwave energy has beell applied SlICcessfully in both manual and automated
approaches for enhancing the synthesis of pepridcs and peptidomimctics.

       During the course of conventional pcptide synthesis, the growing peptide chain can form aggregates with itself or neighboring chains, leading to the production of low-quality pcptides. Due to its highly charged resonance structure, the peptide bond will readily absorb microwave energy, which induces molecular morion within the peptide. This random morion can overcome chain aggregation within the peptide, allowing for free access to the N-terminus of the growing peptide chain and resulting in a significant increase in peptide purity.

        Microwave irradiation also call COllsiderably increase the speed at which peptides arc synrhesized. Traditionally, peptide coupling reactions require from 30 minutes up to two hours to reach completion. Microwave energy allows the amino acid coupling to be completed
in just five minutes.

        The Fmoc deprotection reaction can be accelerated in the microwave to decrease
the reaction time from at least 15 minutes to only three minutes. We recendy demonstrated
U. Pept. Sci., 2007) that common side reactions such as racemization and aspartimide formation are easily controllable with optimized methods that can be applied routinely.


 

更多详情,请培安公司:
:北京: 上海:  成都: 广州:
: sales@pynnco.comwww.pynnco.com

免责声明

  • 凡本网注明“来源:化工仪器网”的所有作品,均为浙江兴旺宝明通网络有限公司-化工仪器网合法拥有版权或有权使用的作品,未经本网授权不得转载、摘编或利用其它方式使用上述作品。已经本网授权使用作品的,应在授权范围内使用,并注明“来源:化工仪器网”。违反上述声明者,本网将追究其相关法律责任。
  • 本网转载并注明自其他来源(非化工仪器网)的作品,目的在于传递更多信息,并不代表本网赞同其观点和对其真实性负责,不承担此类作品侵权行为的直接责任及连带责任。其他媒体、网站或个人从本网转载时,必须保留本网注明的作品第一来源,并自负版权等法律责任。
  • 如涉及作品内容、版权等问题,请在作品发表之日起一周内与本网联系,否则视为放弃相关权利。
企业未开通此功能
详询客服 : 0571-87858618