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Cis/Transgene Optimization


Cis/Transgene Optimization

Systematic Discovery of Novel Gene Expression Elements Using Bioinformatics and Computational Biology Approaches
SpringerBriefs in Systems Biology

von: Saeid Kadkhodaei, Farahnaz Sadat Golestan Hashemi, Morvarid Akhavan Rezaei, Sahar Abbasiliasi, Joo Shun Tan, Hamid Rajabi Memari, Faruku Bande, Ali Baradaran, Mahdi Moradpour, Arbakariya B, Ariff

53,49 €

Verlag: Springer
Format: PDF
Veröffentl.: 16.05.2018
ISBN/EAN: 9783319903910
Sprache: englisch

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Beschreibungen

<p>This book is a practical review which focuses on computational analysis and on <i>in silico</i> approaches towards the systematic discovery of various key functional gene expression elements in microalgae as a model. So far, in this regard very little information is available. Efficient stepwise procedures for analysing the matrix attachment regions (MARs) are outlined, as well as for translation initiation sites (TIS), signal peptide (SP) sequences, gene optimization and transformation systems. These outlines can be efficiently deployed as practical models for the systematic discovery of key expression elements and for the optimization of cis/transgenes in other micro/organisms.&nbsp;</p> <p>The first chapter is an introduction on the key gene expression elements analysed in this book, including scaffold/matrix attachment regions, translation initiation sites, signal peptides as well as gene optimization. Chapter 2 focuses on systematic strategies and computational approaches toward <i>in silico </i>analysis of each factor. The analyses outcomes is assessed individually in chapter 3 followed by developing the specific conceptual models for each element in Chapter 4. The concluding remarks are discussed in Chapter 5.<b>&nbsp;</b></p> <p>This work is of interest to computational and experimental biologists interested in transcriptional regulation analysis as well as to researchers and scientists who wish to consider the use of bioinformatics and computational biology in design, analysis, or regulatory reviews of key gene expression elements for the production of recombinant proteins experiments.</p>
<p>1. Introduction.- 2. Systematic Strategies.- 3. Outcomes Assessment.- 4. Conceptual Models.</p>
<p>This book is a practical review which focuses on computational analysis and on&nbsp;<i>in silico</i>approaches towards the systematic discovery of various key functional gene expression elements in microalgae as a model. So far, in this regard very little information is available. Efficient stepwise procedures for analysing the matrix attachment regions (MARs) are outlined, as well as for translation initiation sites (TIS), signal peptide (SP) sequences, gene optimization and transformation systems. These outlines can be efficiently deployed as practical models for the systematic discovery of key expression elements and for the optimization of cis/transgenes in other micro/organisms.&nbsp;</p><p>The first chapter is an introduction on the key gene expression elements analysed in this book, including scaffold/matrix attachment regions, translation initiation sites, signal peptides as well as gene optimization. Chapter 2 focuses on systematic strategies and computational approaches toward&nbsp;<i>in silico&nbsp;</i>analysis of each factor. The analyses outcomes is assessed individually in chapter 3 followed by developing the specific conceptual models for each element in Chapter 4. The concluding remarks are discussed in Chapter 5.<b>&nbsp;</b></p><p>This work is of interest to computational and experimental biologists interested in transcriptional regulation analysis as well as to researchers and scientists who wish to consider the use of bioinformatics and computational biology in design, analysis, or regulatory reviews of key gene expression elements for the production of recombinant proteins experiments.</p>
Explains how in silico tools could be efficiently used in gene expression studies Broadens the understanding of bioinformatics and computational biology applications Offers step-by-step procedures for systematic discovery of key gene expression elements

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