MOLECULAR-CLONING AND CONSTRUCTION OF THE CODING REGION FOR HUMAN ACETYLCHOLINESTERASE REVEALS A G+C-RICH ATTENUATING STRUCTURE

被引:213
作者
SOREQ, H [1 ]
BENAZIZ, R [1 ]
PRODY, CA [1 ]
SEIDMAN, S [1 ]
GNATT, A [1 ]
NEVILLE, L [1 ]
LIEMANHURWITZ, J [1 ]
LEVLEHMAN, E [1 ]
GINZBERG, D [1 ]
LAPIDOTLIFSON, Y [1 ]
ZAKUT, H [1 ]
机构
[1] TEL AVIV UNIV,SACKLER FAC MED,EDITH WOLFSON MED CTR,DEPT OBSTET & GYNECOL,IL-69978 TEL AVIV,ISRAEL
关键词
Attenuator sequence; Butyrylcholinesterase; DNA secondary structure; Gene amplification;
D O I
10.1073/pnas.87.24.9688
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
To study the primary structure of human acetylcholinesterase (AcChoEase; EC 3.1.1.7) and its gene expression and amplification, cDNA libraries from human tissues expressing oocyte-translatable AcChoEase mRNA were constructed and screened with labeled oligodeoxynucleotide probes. Several cDNA clones were isolated that encoded a polypeptide with ≥50% identically aligned amino acids to Torpedo AcChoEase and human butyrylcholinesterase (BtCho-Ease; EC 3.1.1.8). However, these cDNA clones were all truncated within a 300-nucleotide-long G+C-rich region with a predicted pattern of secondary structure having a high Gibbs free energy (-117 kcal/mol) downstream from the expected 5′ end of the coding region. Screening of a genomic DNA library revealed the missing 5′ domain. When ligated to the cDNA and constructed into a transcription vector, this sequence encoded a synthetic mRNA translated in microinjected oocytes into catalytically active AcChoEase with marked preference for acetylthiocholine over butyrylthiocholine as a substrate, susceptibility to inhibition by the AcChoEase inhibitor BW284C51, and resistance to the BtChoEase inhibitor tetraisopropylpyrophosphoramide. Blot hybridization of genomic DNA from different individuals carrying amplified AcChoEase genes revealed variable intensities and restriction patterns with probes from the regions upstream and downstream from the predicted G+C-rich structure. Thus, the human AcChoEase gene includes a putative G+C-rich attenuator domain and is subject to structural alterations in cases of AcChoEase gene amplification. (.
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页码:9688 / 9692
页数:5
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