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Asparagine biosynthesis

Yoshida, S., K. Tazaki, and T. Minami-kawa. Occurrence of shikimic and quinic acids in angiosperms. Phytochemistry 1975 14 195-197. Kanamori, T., and H. Matsumoto. Role of glutamine in asparagine biosynthesis in rice plant roots. Z Pflan-zenphysiol 1974 74 264. [Pg.411]

Ressler, C., Y. H. Giza, and S. N. Nigam P-Cyanoalanine, product of cyanide fixation and intermediate in asparagine biosynthesis in certain species of Lathyrus and Vicia. J. Amer. Chem. Soc. 91,2766 (1969). [Pg.279]

Ting, I. P., Zschoche,W.C Asparagine biosynthesis by cotton roots. Plant Physiol. 45, 429-434 (1970)... [Pg.195]

Alqueres SM, Cardoso AM, Brito-Moreira J, Baldani JI, Martins OB (2012) Transfer RNA-dependent asparagine biosynthesis in Gluconacetobacter diazotrophicus and its influence on biological nitrogen fixation. Plant Soil 356 209-216 Alqueres S, Meneses C, Rouws L, Rothballer M, Baldani I, Schmid M, Hartmann A (2013) The bacterial superoxide dismutase and glutathione reductase are crucial for endophytic colonization of rice roots by Gluconacetobacter diazotrophicus PALS. Mol Plant Microbe Interact 26 937-945... [Pg.116]

Glycosydation AChE and BChE carry 3 and 9, respectively, N-glycosylation consensus sequences attaching carbohydrate residues to the core protein via asparagines. Different molecular forms of the enzymes in various tissues, show different number and composition of carbohydrate residues. N-glycosylation at all sites was shown to be important for effective biosynthesis, secretion and clearance of ChEs from the circulation. Altered patterns of AChE glycosylation have been observed in the brain and cerebrospinal fluid of Alzheimer s disease (AD) patients, with potential diagnostic value. [Pg.359]

Scheme 16 Biosynthesis of L-asparagine through the intermediate L-3-cyanoalanine. ... Scheme 16 Biosynthesis of L-asparagine through the intermediate L-3-cyanoalanine. ...
L. J. Reitzer, Ammonia Assimilation and the Biosynthesis of Glutamine, Glutamate, Aspartate, Asparagine, L-alanine, and D-alanine. In Escherichia coll and Salmonella, Cellular and Molecular Biology F. C. Neidhardt, Ed. ASM Press Washington, DC, 1996 Vol. 1, pp 391 07. [Pg.425]

Many proteins have structures related to those of aminoacyl-tRNA synthetases.282 283 For example, asparagine synthetase A functions via an aspartyl-adenylate intermediate (Chapter 24, Section B), and its structure resembls that of aspartyl-tRNA synthetase.284 The his G gene of histidine biosynthesis (Fig. 25-13) encodes an ATP phosphoribosyltransferase with structural homology to the catalytic domain of histidyl-tRNA synthetase.284 The reason is not clear, but some aminoacyl-tRNA synthetases, especially the histidyl-tRNA synthetase, are common autoantigens for the inflammatory disease polymyosititis.285 286... [Pg.1698]

Scheme 3.—Biosynthesis of the Core Oligosaccharide AT-Glycosylically Linked to L-Asparagine in Yeast Mannans.10 11 86 11 111-117-1 8-160-161... Scheme 3.—Biosynthesis of the Core Oligosaccharide AT-Glycosylically Linked to L-Asparagine in Yeast Mannans.10 11 86 11 111-117-1 8-160-161...
Biosynthesis of amino acids is by one of several broad pathways as shown in Fig. 2.1. They are formed by enzyme-assisted reactions of common metabolites. By these routes, oxaloacetate yields aspartate and asparagine, and a-ketoglutarate... [Pg.53]


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See also in sourсe #XX -- [ Pg.435 ]

See also in sourсe #XX -- [ Pg.323 ]

See also in sourсe #XX -- [ Pg.99 ]




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Asparagin

Asparagine

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