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·2444·                            精细化工   FINE CHEMICALS                                 第 40 卷

            [9]   CARSON D A,  WASSON D B,  ESPARZA L M,  et al. Oral   Low-temperature synthesis of 2′-deoxyadenosine using immobilized
                 antilymphocyte activity and induction of apoptosis by 2-chloro-2′-   psychrotrophic microorganisms[J]. Biotechnology & Bioengineering,
                 arabino-fluoro-2′-deoxyadenosine[J]. Proceedings of the National   2008, 100(2): 213-222.
                 Academy of Sciences, 1992, 89(7): 2970-2974.   [22]  CARDINAUD R, HOLGUIN J. Nucleoside deoxyribosyltransferase-
            [10]  GARG R,  GUPTA S P, GAO H,  et al. Comparative quantitative   Ⅱ  from  Lactobacillus helveticus substrate specificity studies
                 structure-activity relationship studies on anti-HIV drugs[J]. Reviews   pyrimidine bases as acceptors[J]. Biochimica  et Biophysica Acta
                 Chemical, 1999, 99: 3525-3601.                    (BBA)-Enzymology, 1979, 568(2): 339-347.
            [11]  MICHAILIDIS E, MARCHAND  B, KODAMA E  N,  et al.   [23]  FERNANDEZ-LUCAS J, CONDEZO L A, MARTINEZ-LAGOS F,
                 Mechanism of inhibition of HIV-1 reverse transcriptase by 4′-ethynyl-   et al. Synthesis  of 2′-deoxyribosylnucleosides using new 2′-
                 2-fluoro-2′-deoxyadenosine triphosphate, a  translocation-defective   deoxyribosyltransferase  microorganism producers[J]. Enzyme and
                 reverse transcriptase inhibitor[J]. Chemistry Biological of Journal,   Microbial Technology, 2007, 40(5): 1147-1155.
                 2009, 284(51): 35681-35691.                   [24]  HONG Y H  (洪云海), DING Q  B (丁庆豹), OU  L (欧伶),  et al.
            [12]  DE CLERCQ E. Highlights  in the discovery of antiviral  drugs: A   Enzymatic synthesis of 2′-deoxyadenosine by Brevibacterium acetylium[J].
                 personal retrospective[J]. Chemistry Medicinal of Journal, 2010,   Industrial Microbiology (工业微生物), 2006, (1): 30-33.
                 53(4): 1438-1450.                             [25]  LIU G S (刘国生), CHEN L (陈琳), XING S  T (邢善涛),  et al.
            [13]  FLIEGERT R, BAUCHE A, PEREZ A M W, et al. 2′-Deoxyadenosine   Synthesis of  β-2′-deoxyadenosine from  β-2′-deoxythymidine by
                 5′-diphosphoribose is an endogenous TRPM2 superagonist[J]. Biology   immobilized cells[J]. Chinese Journal of Biochemical  and
                 Chemical Nature, 2017, 13(9): 1036-1044.          Pharmaceuticals, 2012, 33(5): 563-567.
            [14]  LIU L, ZHOU  M, PAN J. Composite hydrogel microspheres   [26]  LIANG S H, LI W Z, GAO T, et  al. Enzymatic synthesis  of  2′-
                 encapsulating hollow mesoporous imprinted nanoparticles for   deoxyadenosine and 6-methylpurine-2′-deoxyriboside by Escherichia
                 selective capture and separation of 2′-deoxyadenosine[J]. Molecules   coli DH5α overexpressing nucleoside phosphorylases from Escherichia
                 2022, 27: 7444.                                   coli BL21[J]. Journal of Bioscience and Bioengineering, 2010,
            [15]  KAZIMIERCZUK  Z, COTTAM H  B, REVANKAR G  R,  et al.   110(2): 165-168.
                 Synthesis of 2′-deoxytubercidin, 2′-deoxyadenosine, and related   [27]  DRENICHEV M S, OSLOVSKY V E, ZENCHENKO  A A,  et al.
                 2′-deoxynucleosides  via a novel direct stereospecific sodium salt   Comparative analysis of enzymatic transglycosylation using E. coli
                 glycosylation procedure[J]. Journal of the American Chemical   nucleoside phosphorylases: A synthetic concept for the preparation of
                 Society, 1984, 106(21): 6379-6382.                purine modified 2′-deoxyribonucleosides from ribonucleosides[J].
            [16]  ZHAO H  E ( 赵洪 娥 ), CUI L ( 崔励 ). The purification of   International Journal of Molecular Sciences, 2022, 23(5): 2795.
                 2′-deoxyadenosine by crystallization[J]. Journal of Dalian Polytechnic   [28]  LIU X D (刘袖洞), WU C K (吴春凯), PEI J  (裴婕). Research
                 University (大连工业大学学报), 2012, 31(2): 115-117.      progress of cell immobilization catalysis in fine chemicals production[J].
            [17]  KOMATSU  H, AWANO H, ISHIBASHI H,  et al. Development of   Fine Chemicals (精细化工), 2022, 39(4): 657-664, 805.
                 chemo-enzymatic process and manufacture of deoxynucleosides[C]//   [29]  WU Y, CHEN T, LIU Y, et al. Design of a programmable biosensor-
                 Nucleic Acids Symposium Series. Oxford University Press, 2001,   CRISPRi genetic circuits for dynamic and autonomous dual-control
                 1(1): 49-50.                                      of metabolic flux in Bacillus subtilis[J]. Research Acids Nucleic,
            [18]  LU Y C ( 路有昌 ),  ZHANG H P  ( 张换 平 ). Synthesis of   2020, 48(2): 996-1009.
                 2′-deoxyadenosine[J]. Applied Chemical Industry (应用化工), 2006,   [30]  KANG W, MA T, LIU M,  et al. Modular enzyme assembly for
                 35(7): 564-565.                                   enhanced cascade biocatalysis and metabolic flux[J]. Nature
            [19]  JIANG Z L (蒋忠良), LI Q K (李乾坤), QI X B (齐湘兵),  et al.   Communications, 2019, 10: 4248.
                 Synthesis research of  2′-deoxyadenosine[J]. Journal  of Tongji   [31]  WAN L, ZHU  Y, CHEN G,  et al.  Efficient production of 2′-
                 University: Natural Science (同济大学学报:  自然科学版), 2007,   fucosyllactose from L-fucose via self-assembling multienzyme complexes
                 (9): 1264-1268.                                   in engineered  Escherichia coli[J]. ACS Synthetic Biology, 2021,
            [20]  WANG J K (王建琨). Synthesizing 2′-deoxyadenosine by microbial   10(10): 2488-2498.
                 transformation method[D]. Xinxiang: Henan Normal University (河  [32]  PAN X R (潘鑫茹), LIU J Z (刘均忠), ZHANG H J (张宏娟), et al.
                 南师范大学), 2011.                                     Synthesis of L-theanine by whole cell catalyst co-expressing PPK
            [21]  FERNANDEZ-LUCAS J, CONDEZO L A, QUEZADA M A, et al.   and GMAS[J]. Fine Chemicals (精细化工), 2019, 36(9): 1827-1832.
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