Literature DB >> 18936211

Alpha-aminoadipate delta-semialdehyde synthase mRNA knockdown reduces the lysine requirement of a mouse hepatic cell line.

Beth M Cleveland1, Aaron S Kiess, Kenneth P Blemings.   

Abstract

Alpha-aminoadipate delta-semialdehyde synthase (AASS) is the bifunctional enzyme containing the lysine alpha-ketoglutarate reductase (LKR) and saccharopine dehydrogenase activities responsible for the first 2 steps in the irreversible catabolism of lysine. A rare disease in humans, familial hyperlysinemia, can be caused by very low LKR activity and, as expected, reduces the lysine "requirement" of the individual. This concept was applied to a murine hepatic cell line (ATCC, FL83B) utilizing RNA interference (RNAi) to achieve AASS mRNA knockdown. Cells were antibiotic selected for stable transfection of 2 plasmids that express different short hairpin RNA sequences for AASS knockdown. Compared with the wild-type cell line, AASS mRNA abundance was reduced 79.0 +/- 6.4% (P < 0.05), resulting in a 29.8 +/- 5.2% (P < 0.05) reduction in AASS protein abundance, 41.3 +/- 10.0% (P < 0.05) less LKR activity, and a reduction in lysine oxidation by 50.7 +/- 11.8%. To determine the effect of AASS knockdown on the lysine requirement, cells were grown in media containing 12.5, 25.0, 50.0, 100, or 200 micromol/L lysine. Using a segmented model approach for growth rate analysis, the lysine requirement of the cell line with AASS silencing was 43.4 +/- 1.7 micromol/L, approximately 26% lower (P < 0.05), than the lysine requirement of the wild-type cell line. These results indicate AASS knockdown decreases the lysine requirement of the cell via a reduction of lysine catabolism through the saccharopine pathway, providing the initial proof in principle that RNAi can be used to reduce the nutrient requirement of a system.

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Year:  2008        PMID: 18936211     DOI: 10.1093/jn/138.11.2143

Source DB:  PubMed          Journal:  J Nutr        ISSN: 0022-3166            Impact factor:   4.798


  4 in total

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Authors:  Olin D Anderson; Devin Coleman-Derr; Yong Q Gu; Sekou Heath
Journal:  BMC Plant Biol       Date:  2010-06-16       Impact factor: 4.215

2.  A single transcription factor is sufficient to induce and maintain secretory cell architecture.

Authors:  Hei-Yong G Lo; Ramon U Jin; Greg Sibbel; Dengqun Liu; Anju Karki; Matthew S Joens; Blair B Madison; Bo Zhang; Valerie Blanc; James A J Fitzpatrick; Nicholas O Davidson; Stephen F Konieczny; Jason C Mills
Journal:  Genes Dev       Date:  2017-02-07       Impact factor: 11.361

3.  Dose-response of different dietary leucine levels on growth performance and amino acid metabolism in piglets differing for aminoadipate-semialdehyde synthase genotypes.

Authors:  Micol Bertocchi; Paolo Bosi; Diana Luise; Vincenzo Motta; Chiara Salvarani; Anisa Ribani; Samuele Bovo; Aude Simongiovanni; Keiko Matsunaga; Tetsuya Takimoto; Makoto Bannai; Etienne Corrent; Luca Fontanesi; Tristan Chalvon-Demersay; Paolo Trevisi
Journal:  Sci Rep       Date:  2019-12-06       Impact factor: 4.379

4.  Untargeted Metabolomics Reveals Intestinal Pathogenesis and Self-Repair in Rabbits Fed an Antibiotic-Free Diet.

Authors:  Tao Tang; Ya Li; Jie Wang; Mauricio A Elzo; Jiahao Shao; Yanhong Li; Siqi Xia; Huimei Fan; Xianbo Jia; Songjia Lai
Journal:  Animals (Basel)       Date:  2021-05-27       Impact factor: 2.752

  4 in total

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