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The shikimate pathway―a metabolic tree with many branches

TLDR
The Shikimate Pathway as mentioned in this paper is a metabolic tree with many branches, which is a tree-structured approach for the analysis of the human metabolic pathway. Critical Reviews in Biochemistry and Molecular Biology: Vol. 25, No. 5, pp 307-384.
Abstract
(1990). The Shikimate Pathway — A Metabolic Tree with Many Branche. Critical Reviews in Biochemistry and Molecular Biology: Vol. 25, No. 5, pp. 307-384.

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The shikimate pathway.

TL;DR: The shikimate pathway links metabolism of carbohydrates to biosynthesis of aromatic compounds, the precursor of the aromatic amino acids and many aromatic secondary metabolites, and is the sole target for the herbicide glyphosate.
Journal ArticleDOI

The shikimate pathway and aromatic amino acid biosynthesis in plants.

TL;DR: The pathway organization and the transcriptional/posttranscriptional regulation of the AAA biosynthetic network is summarized and the current limited knowledge of the subcellular compartmentalization and the metabolite transport involved in the plant AAA pathways is identified.
Journal ArticleDOI

Mycosporine-Like Amino Acids and Related Gadusols: Biosynthesis, Accumulation, and UV-Protective Functions in Aquatic Organisms

TL;DR: Probing the regulation and biosynthesis of MAAs provides insight to the physiological evolution and utility of UV protection and of biochemically associated antioxidant defenses.
Journal ArticleDOI

The Shikimate Pathway: Early Steps in the Biosynthesis of Aromatic Compounds.

TL;DR: This review gives a short overview of the shikimate pathway and briefly introduces the seven enzymes that catalyze the sequential steps of the pathway, and discusses some regulatory features of severa1 of the enzymes.
References
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Journal ArticleDOI

Prediction of the Occurrence of the ADP-binding βαβ-fold in Proteins, Using an Amino Acid Sequence Fingerprint

TL;DR: An amino acid sequence “fingerprint” has been derived that can be used to test if a particular sequence will fold into aβαβ-unit with ADP-binding properties, which is in fact a set of 11 rules describing the type of amino acid that should occur at a specific position in a peptide fragment.
Journal ArticleDOI

Role of a phenazine antibiotic from Pseudomonas fluorescens in biological control of Gaeumannomyces graminis var. tritici.

TL;DR: Results indicate that sequences required for phenazine production were present in the cloned DNA and support the importance of the phenazine antibiotic in disease suppression in the rhizosphere.
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