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Genetic element (GENE)
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published: 08 Oct 2025 last updated: 20 Oct 2025
General information
Acetolactate synthase
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  • ALS or StALS
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  • Acetohydroxyacid synthase (AHAS)
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  • Modified acetolactate synthase (StmALS)
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CS-ahas-SOLTU
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Protein coding sequence
No
Donor organism
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Characteristics of the protein coding sequence
Acetolactate synthase
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StALS is an acetohydroxyacid synthase (AHAS), also known as acetolactate synthase (ALS), produced by Solanum tuberosum. It is a chloroplast-localized enzyme of 659 amino acids (~72 kDa) that catalyzes the first step in the biosynthesis of branched-chain amino acids (valine, leucine, and isoleucine). It requires cofactors thiamine diphosphate, Mg²⁺ and flavin adenine dinucleotide, and condenses either two pyruvate molecules or pyruvate with 2-oxobutanoate, releasing CO₂ to form 2-acetolactate or 2-aceto-2-hydroxybutyrate, respectively. The overall reactions are: 1) 2 pyruvate + H⁺ → 2-acetolactate + CO₂ (valine, leucine biosynthesis) 2) pyruvate + 2-oxobutanoate + H⁺ → 2-aceto-2-hydroxybutyrate + CO₂ (isoleucine biosynthesis) The StmALS protein in BG25 is a modified version of acetolactate synthase from S. tuberosum. The protein consist of 659 amino acids and its predicted size is ~65 kDa. StmALS is 99.7% identical to native StALS present in S. tuberosum, differing only by two amino acids (W563L and S642I).
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Additional Information
AHAS is the target of herbicides such as sulfonylureas and imidazolinones, and point mutations (e.g., proline to serine or tryptophan to arginine) can confer resistance by reducing herbicide binding. In biotechnology, modified AHAS genes are used in crops, including potato, as plant-derived selectable markers or to generate herbicide-tolerant varieties.
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Records referencing this document Show in search
Record type Field Record(s)
Living Modified Organism Introduced or modified genetic element(s) 1
Living Modified Organism Genetic elements construct 1