Isolation of Free Amino Acids via Enzymatic Hydrolysis of Tobacco-Derived F1 Protein

Author:

Ashraf-Khorassani Mehdi1,Coleman William M.2,Dube Michael F.3,Taylor Larry T.1

Affiliation:

1. Department of Chemistry , Virginia Tech , Blacksburg , VA 24061 , USA

2. iii Consulting , 210 Jessamine Street, Conway , SC 29526 , USA

3. R.J. Reynolds Tobacco Company , 950 Reynolds Blvd, Winston Salem , NC 27105 , USA

Abstract

Summary Free amino acids have been isolated via optimized enzymatic hydrolysis of F1 tobacco protein using two cationic resins (Amberlite IR120 and Dowex MAC-2). Optimized enzymatic conversions of the protein as a result of systematic variations in conditions (e.g., time, temperature, pH, enzyme type, enzyme concentration, anaerobic/aerobic environments, and protein concentration) employing commercially available enzymes, were consistently higher than 50% with qualitative amino acid arrays that were consistent with the known composition of tobacco F1 protein. Amberlite IR120 was shown to have a much higher efficiency and capacity for isolation of amino acids from standard solutions and from hydrolysate when compared with the results using Dowex MAC-2. Two columns packed with conditioned Amberlite IR120 (120 × 10 mm,12–15 g resin) and (200 × 25.4 mm, 60–65 g resin) were used to isolate two batches (2.5–3.0 mg and 13–15 mg) of free amino acids, respectively. A relatively inexpensive analytical methodology was developed for rapid analysis of the free amino acids contained within the enzyme hydrolysate. Commercially available enzymes, when employed in optimized reaction conditions, are very effective for enzymatic conversion of tobacco F1 protein to free amino acids.

Publisher

Walter de Gruyter GmbH

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Optimization of α-Hydroxyketone and Pyrazine Syntheses Employing Preliminary Reactions of Glucose and Buffer Solutions;Beiträge zur Tabakforschung International/Contributions to Tobacco Research;2019-12-01

2. Optimal Synthesis of Substituted and Branched Pyrazines via Reaction of Alpha Hydroxy Ketones with Selected Nitrogen Sources;Beiträge zur Tabakforschung International/Contributions to Tobacco Research;2019-08-01

3. Synthesis of Pyrazines Using Sugar Derived from Tobacco Cellulose and Hydrolyzed Tobacco F1 Protein as an Amino Acid Source;Beiträge zur Tabakforschung International/Contributions to Tobacco Research;2018-08-01

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