Molecular Biology

Q4 Pharmacology, Toxicology and Pharmaceutics
Marina Gabriel Fontes, G. Monteiro
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引用次数: 0

Abstract

This chapter aims to molecular biology techniques and concepts in the study, development and production of various compounds of industrial pharmaceutical interest. To better understand this cascade of events that might influence the druggability of therapeutic targets, let's now look at how communication, signalling and cellular regulation work. Prokaryotes have two characteristic forms of transcription termination: dependent or independent of Rho protein. Understanding gene expression in both prokaryotes and eukaryotes helps us to genetically manipulate organisms for biotechnology purposes. Unlike prokaryotes, eukaryotes have three types of RNA polymerases specific for different gene pools. The regulation of gene expression in prokaryotes and eukaryotes differs in aspects. One of the best known and widely used drugs in the world is aspirin; the active ingredient of this drug is salicin that was isolated in 1828 from the bark of the willow tree, despite the use of willow as an anti-inflammatory or pain reliever having been recorded in medical texts for millennia.
分子生物学
本章的目的是分子生物学技术和概念的研究,开发和生产各种化合物的工业制药利益。为了更好地理解这一系列可能影响治疗靶点的可药物性的事件,现在让我们来看看通讯、信号和细胞调节是如何工作的。原核生物有两种典型的转录终止形式:依赖或独立于Rho蛋白。了解原核生物和真核生物的基因表达有助于我们对生物技术进行基因操纵。与原核生物不同,真核生物有三种特定于不同基因库的RNA聚合酶。原核生物和真核生物的基因表达调控在很多方面是不同的。阿司匹林是世界上最著名、最广泛使用的药物之一;这种药物的有效成分是水杨苷,于1828年从柳树的树皮中分离出来,尽管在医学文献中使用柳树作为消炎或止痛药已经记录了几千年。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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