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Showing posts with label Biochemistry. Show all posts
Showing posts with label Biochemistry. Show all posts

Sunday, 30 December 2012

Rice University Scientists Turn Soy Mash Into Succinic Acid

The humble soybean could become an inexpensive new source of a widely used chemical for plastics, textiles, drugs, solvents and as a food additive.

Succinic acid, traditionally drawn from petroleum, is one focus of research by Rice chemists George Bennett and Ka-Yiu San. In 2004, the Department of Energy named succinic acid one of 12 "platform" chemicals that could be produced from sugars by biological means and turned into high-value materials.

Several years ago, Rice patented a process by Bennett and San for the bio-based production of succinic acid that employed genetically modified E. coli bacteria to convert glucose into succinic acid in a way that would be competitive with petroleum-based production.

The new succinate process developed by Bennett, San and Chandresh Thakker and reported recently in Bioresource Technology promises to make even better use of a cheap and plentiful feedstock, primarily the indigestible parts of the soybean.

"We are trying to find a cheaper, renewable raw material to start with so the end product will be more profitable," said Thakker, a research scientist in the Bennett lab at Rice's BioScience Research Collaborative and lead author of the study. "The challenge has been to make this biomass process cost-competitive with the petrochemical methods people have been using for many years."

Bennett feels they have done that with soybean-derived feedstock as an inexpensive source of the carbon that microorganisms digest to produce the desired chemical via fermentation. "A lot of people use plant oils for cooking - corn or soybean or canola - instead of lard, as they did in the old days," he said. "The oils are among the main products of these seeds. Another product is protein, which is used as a high-quality food.

"What's left over is indigestible fiber and small carbohydrates," said Bennett, Rice's E. Dell Butcher Professor of Biochemistry and Cell Biology. "It's used in small amounts in certain animal feeds, but overall it's a very low-value material."

The Rice researchers are changing that with the help of E. coli bacteria engineered to process soy meal that generally gets discarded. Certain microbes naturally produce succinic acid from such feedstock, but manipulating E. coli's metabolic pathways (by eliminating pathways that produce other chemicals like ethanol, for instance) can make it far more efficient.

Expanding on their success in producing succinic acid from glucose, the new microbes are engineered to metabolize a variety of sugars found in soybean meal. The theoretical ideal is a 1:1 ratio of feedstock (the extracted sugars) to product, which they feel is achievable by industry. In the lab, under less controlled conditions, they still found the process highly efficient. "We're demonstrating a very high yield," Thakker said. "We're achieving in a flask a non-optimized formation of succinate that is close to the theoretical goal."

Bennett said his lab has been looking at soybeans for nearly three years. "We're always interested in low-cost feedstock," he said. "We were able to get a connection with a soybean group that is very interested in technologies to make better and more profitable use of their crop.

"There's a fair amount of oilseed residuals available, including cottonseed carbohydrates, that are not used for any high-value product, and we're in the space of microbial engineering to enable these sorts of materials to be used in a good way," he said.

Friday, 23 November 2012

Student Companion to Accompany Fundamentals of Biochemistry, 4th Edition, 2012



Student Companion to Accompany Fundamentals of Biochemistry
Akif Uzman, Jerry Johnson, Wiliam Widger and Joseph Eichberg
  • ISBN-10: 1118218272
  • ISBN-13: 978-1118218273

 Welcome to biochemistry! You are about to become acquainted with one of the most exciting scientific disciplines. The biotechnologyindustry, with its roots in molecular genetics, is one of the most visible manifestations of the explosion of biochemical knowledge that has occurred during our lifetime. Drug design and novel approaches such as gene therapy rely on the fundamental knowledge of the chemistry of biological molecules, particularly proteins. Our most common diseases (e.g., diabetes and heart disease) have pleiotropic multifaceted physiological effects that are best understood in terms ofbiochemistry. You will soon discover that biochemistry’s impact on our lives cannot be over-emphasized. We are excited to bring you an ever-expanding understanding of this magnificent subject!





Tuesday, 6 November 2012

Biochemistry of Lipids, Lipoproteins and Membranes, 5Th Edition, 2008


Biochemistry of Lipids, Lipoproteins and Membranes, Fifth Edition
J.E. Vance, Dennis E. Vance, "Biochemistry of Lipids, Lipoproteins and Membranes, Fifth Edition"
English | ISBN: 0444532196 | 5 edition (May 12, 2008) | PDF | 624 pages | 14,7 MB


Research on the biochemistry and molecular biology of lipids and lipoproteins has experienced remarkable growth in the last 20 years, particularly with the realization that many different classes of lipids play fundamental roles in diseases such as heart disease, obesity, diabetes, cancer and neurodegenerative disorders. The 5th edition of this book has been written with two major objectives. The first objective is to provide students and teachers with an advanced up-to-date textbook covering the major areas of current interest in the lipid field. The chapters are written for students and researchers familiar with the general concepts of lipid metabolism but who wish to expand their knowledge in this area. The second objective is to provide a reference text for scientists who are about to enter the field of lipids, lipoproteins and membranes and who wish to learn more about this area of research. All of the chapters have been extensively updated since the 4th edition appeared in 2002.

Key Features:
* Represents a bridge between the superficial coverage of the lipid field found in basic biochemistry text books and the highly specialized material contained in scientific review articles and monographs.

* Allows scientists to become familiar with recent developments related to their own research interests, and will help clinical researchers and medical students keep abreast of developments in basic science that are important for subsequent clinical advances.

* Serves as a general reference book for scientists studying lipids, lipoproteins and membranes and as an advanced and up-to-date textbook for teachers and students who are familiar with the basic concepts of lipid biochemistry.





Download:

http://uploaded.net/file/r7io72pj/Biochemistry%20of%20Lipids%2C%20Lipoproteins%20and%20Membranes%205th%20ed.%20-%20J.%20Vance%2C%20et.%20al.%2C%20%28Elsevier%2C%202008%29%20WW.pdf