The human L-threonine 3-dehydrogenase gene is an expressed pseudogene

被引:63
|
作者
Edgar, AJ [1 ]
机构
[1] Univ London Imperial Coll Sci Technol & Med, Chelsea & Westminster Hosp, Fac Med, Div Invest Sci,Tissue Engn & Regenerat Med Ctr, London, England
关键词
D O I
10.1186/1471-2156-3-18
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background: L-threonine is an indispensable amino acid. One of the major L-threonine degradation pathways is the conversion of L-threonine via 2-amino-3-ketobutyrate to glycine. L-threonine dehydrogenase (EC 1.1.1.103) is the first enzyme in the pathway and catalyses the reaction: L-threonine + NAD(+) = 2-amino-3-ketobutyrate + NADH. The murine and porcine L-threonine dehydrogenase genes (TDH) have been identified previously, but the human gene has not been identified. Results: The human TDH gene is located at 8p23-22 and has 8 exons spanning 10 kb that would have been expected to encode a 369 residue ORF. However, 2 cDNA TDH transcripts encode truncated proteins of 157 and 230 residues. These truncated proteins are the result of 3 mutations within the gene. There is a SNP, A to G, present in the genomic DNA sequence of some individuals which results in the loss of the acceptor splice site preceding exon 4. The acceptor splice site preceding exon 6 was lost in all 23 individuals genotyped and there is an in-frame stop codon in exon 6 (CGA to TGA) resulting in arginine-214 being replaced by a stop codon. These truncated proteins would be non-functional since they have lost part of the NAD(+) binding motif and the COOH terminal domain that is thought to be involved in binding L-threonine. TDH mRNA was present in all tissues examined. Conclusions: The human L-threonine 3-dehydrogenase gene is an expressed pseudogene having lost the splice acceptor site preceding exon 6 and codon arginine-214 (CGA) is mutated to a stop codon (TGA).
引用
收藏
页数:13
相关论文
共 50 条
  • [1] ROLE OF L-THREONINE DEAMINASE AND L-THREONINE 3-DEHYDROGENASE IN THE UTILIZATION OF L-THREONINE BY PSEUDOMONAS-AERUGINOSA
    LAM, VMS
    CHAN, IPR
    YEUNG, YG
    JOURNAL OF GENERAL MICROBIOLOGY, 1980, 117 (APR): : 539 - 542
  • [2] Highly selective L-threonine 3-dehydrogenase from Cupriavidus necator and its use in determination of L-threonine
    Ueatrongchit, Techawaree
    Asano, Yasuhisa
    ANALYTICAL BIOCHEMISTRY, 2011, 410 (01) : 44 - 56
  • [3] Threonine is catabolized by L-threonine 3-dehydrogenase and threonine dehydratase in hepatocytes from domestic cats (Felis domestica)
    Hammer, VA
    Rogers, QR
    Freedland, RA
    JOURNAL OF NUTRITION, 1996, 126 (09): : 2218 - 2226
  • [4] Discovery of novel monomeric L-threonine 3-dehydrogenase and elucidation of product release mechanism
    Motoyana, Tomoharu
    Nakano, Shogo
    Yamamoto, Yuta
    Tokiwa, Hiroaki
    Asano, Yasuhisa
    Ito, Sohei
    FASEB JOURNAL, 2018, 32 (01):
  • [5] Elucidation of product release mechanism associated with structural changes in L-threonine 3-dehydrogenase
    Motoyama, Tomoharu
    Nakano, Shogo
    Yamamoto, Yuta
    Tokiwa, Hiroaki
    Asano, Yasuhisa
    Ito, Sohei
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 258
  • [6] Product Release Mechanism Associated with Structural Changes in Monomeric L-Threonine 3-Dehydrogenase
    Motoyama, Tomoharu
    Nakano, Shogo
    Yamamoto, Yuta
    Tokiwa, Hiroaki
    Asano, Yasuhisa
    Ito, Sohei
    BIOCHEMISTRY, 2017, 56 (43) : 5758 - 5770
  • [8] Chemoenzymatic synthesis of 3-ethyl-2,5-dimethylpyrazine by L-threonine 3-dehydrogenase and 2-amino-3-ketobutyrate CoA ligase/L-threonine aldolase
    Tomoharu Motoyama
    Shogo Nakano
    Fumihito Hasebe
    Ryo Miyata
    Shigenori Kumazawa
    Noriyuki Miyoshi
    Sohei Ito
    Communications Chemistry, 4
  • [9] Chemoenzymatic synthesis of 3-ethyl-2,5-dimethylpyrazine by L-threonine 3-dehydrogenase and 2-amino-3-ketobutyrate CoA ligase/L-threonine aldolase
    Motoyama, Tomoharu
    Nakano, Shogo
    Hasebe, Fumihito
    Miyata, Ryo
    Kumazawa, Shigenori
    Miyoshi, Noriyuki
    Ito, Sohei
    COMMUNICATIONS CHEMISTRY, 2021, 4 (01)
  • [10] How to design artificial protein surpassing native enzyme function ∼ Design and multidisciplinary analysis of artificial L-threonine 3-dehydrogenase ∼
    Nakano, Shogo
    Motoyama, Tomoharu
    Miyashita, Yurina
    Ishizuka, Yuki
    Matsuo, Naoya
    Tokiwa, Hiroaki
    Shinoda, Suguru
    Asano, Yasuhisa
    Ito, Sohei
    FASEB JOURNAL, 2018, 32 (01):