Results for ' Polysaccharides'

6 found
Order:
  1.  58
    Technique, task definition, and the transition from genetics to molecular genetics: Aspects of the work on protein synthesis in the laboratories of J. Monod and P. Zamecnik.Richard M. Burian - 1993 - Journal of the History of Biology 26 (3):387-407.
    In biology proteins are uniquely important. They are not to be classed with polysaccharides, for example, which by comparison play a very minor role. Their nearest rivals are the nucleic acids....The main function of proteins is to act as enzymes....In the protein molecule Nature has devised a unique instrument in which an underlying simplicity is used to express great subtlety and versatility; it is impossible to see molecular biology in proper perspective until this peculiar combination of virtues has been (...)
    Direct download (4 more)  
     
    Export citation  
     
    Bookmark   18 citations  
  2.  25
    Bacteroides thetaiotaomicron: a dynamic, niche‐adapted human symbiont.Laurie E. Comstock & Michael J. Coyne - 2003 - Bioessays 25 (10):926-929.
    The coevolution of humans with their intestinal microflora has resulted in cooperative relationships that have shaped the biology and the genomes of these symbiotic partners. Bacteroides thetaiotaomicron is one such bacterial symbiont that is a dominant member of the intestinal microbiota of humans and other mammals. The recent report of the genome sequence of B. thetaiotaomicron1 is the first reported for an abundant Gram‐negative organism of the human colonic microbiota and, as such, provides the first glimpse on a genomic scale (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  3.  28
    Cell wall composition and candidate biosynthesis gene expression during rice development.Fan Lin, Chithra Manisseri, Alexandra Fagerström, Matthew L. Peck, Miguel E. Vega-Sánchez, Brian Williams, Dawn M. Chiniquy, Prasenjit Saha, Sivakumar Pattathil, Brian Conlin, Lan Zhu, Michael G. Hahn, William G. T. Willats, Henrik V. Scheller, Pamela C. Ronald & Laura E. Bartley - unknown
    © The Author 2016. Published by Oxford University Press on behalf of Japanese Society of Plant Physiologists. All rights reserved.Cell walls of grasses, including cereal crops and biofuel grasses, comprise the majority of plant biomass and intimately influence plant growth, development and physiology. However, the functions of many cell wall synthesis genes, and the relationships among and the functions of cell wall components remain obscure. To better understand the patterns of cell wall accumulation and identify genes that act in grass (...)
    No categories
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  4.  41
    Defensive weapons and defense signals in plants: Some metabolites serve both roles.Daniel Maag, Matthias Erb, Tobias G. Köllner & Jonathan Gershenzon - 2015 - Bioessays 37 (2):167-174.
    The defense of plants against herbivores and pathogens involves the participation of an enormous range of different metabolites, some of which act directly as defensive weapons against enemies (toxins or deterrents) and some of which act as components of the complex internal signaling network that insures that defense is timed to enemy attack. Recent work reveals a surprising trend: The same compounds may act as both weapons and signals of defense. For example, two groups of well‐studied defensive weapons, glucosinolates and (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark  
  5.  23
    Plant cell enlargement and the action of expansins.Daniel J. Cosgrove - 1996 - Bioessays 18 (7):533-540.
    Plant cells are caged within a distended polymeric network (the cell wall), which enlarges by a process of stress relaxation and slippage (creep) of the polysaccharides that make up the load‐bearing network of the wall. Protein mediators of wall creep have recently been isolated and characterized. These proteins, called expansins, appear to disrupt the noncovalent adhesion of matrix polysaccharides to cellulose microfibrils, thereby permitting turgor‐driven wall enlargement. Expansin activity is specifically expressed in the growing tissues of dicotyledons and (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark   3 citations  
  6.  22
    The initiation of glycogen synthesis.William J. Whelan - 1986 - Bioessays 5 (3):136-140.
    The claim that glycogen contains protein was first made exactly 100 years ago and has been the subject of contention ever since. It has now been established that rabbit‐muscle glycogen contains a covalently bound protein of Mr 37,000, present in equimolar proportion to glycogen. The protein, named glycogenin, is joined to muscle glycogen via a novel linkage involving the hydroxyl group of tyrosine, a fact of possible significance in the light of insulin's message being transmitted by tyrosine phosphorylation. The protein (...)
    Direct download (2 more)  
     
    Export citation  
     
    Bookmark