Page 159 - 《精细化工》2023年第11期
P. 159

第 11 期                  石婷婷,等:  磁性磷脂酶 D 交联酶聚集体的制备及其酶学性质                                 ·2471·


            小具有工业应用潜力。                                             RSC Advances, 2013, 3(31): 12485-12511.
                                                               [14]  BARBOSA O, ORTIZ C, BERENGUER M A,  et al. Cheminform
            参考文献:                                                  abstract: Glutaraldehyde in bio-catalysts design: A useful crosslinker
                                                                   and a versatile tool in enzyme immobilization[J]. RSC Advances,
            [1]   CENACCHI T, BERTOLDIN T, FARINA C, et al. Cognitive decline   2013, 4(4): 1583-1600.
                 in the elderly: A double-blind, placebo-controlled multicenter study   [15]  CERDOBBEL  A, DE WINTER  K, DESMET T,  et al. Sucrose
                 on efficacy of phosphatidylserine administration[J]. Aging Clinical   phosphorylase as cross-linked enzyme aggregate: Improved thermal
                 and Experimental Research, 1993, 5(2): 123-133.   stability for industrial applications[J]. Biotechnology Journal, 2010,
            [2]   PELLOW J, SOLOMON E M, BARNARD C N. Complementary   5(11): 1192-1197.
                 and alternative medical therapies for children with attention-   [16]  LAN X D (兰雄雕),CHEN X H (陈锡鸿),LIAO D K (廖丹葵),
                 deficit/hyperactivity disorder  (ADHD)[J]. Alternative Medicine   et al.  Preparation  and properties of magnetic  agarose microsphere
                 Review, 2011, 16(4): 323-337.                     immobilized angiotensin converting enzyme[J]. Fine Chemicals(精细
            [3]   HELLHAMMER J, FRIES E, BUSS C, et al. Effects of soy lecithin   化工), 2014, 31(12): 1461-1465, 1470.
                 phosphatidic acid  and phosphatidylserine complex (PAS) on the   [17]  BONAZZA H L, MANZO R M, DOS SANTOS J, et al. Operational
                 endocrine and psychological responses to mental stress[J]. Stress,   and thermal stability analysis of thermomyces lanuginosus lipase
                 2004, 7(2): 119-126.                              covalently immobilized onto modified chitosan supports[J]. Applied
            [4]   TAKAMI M, SUZUKI  Y. Transphosphatidylation  reaction  of   Biochemistry and Biotechnology, 2018, 184(1): 182-196.
                 phosphatidylcholine to 4-methoxyphenol in water-immiscible organic   [18]  XIE  W L, MA N. Immobilized lipase on Fe 3O 4 nanoparticles as
                 solvents with immobilized phospholipase D[J]. Journal of Fermentation &   biocatalyst for biodiesel production[J]. Energy & Fuels, 2009, 23(3):
                 Bioengineering, 1995, 79(4): 313-316.             1347-1353.
            [5]   OGINO  C, KANEMASU M, FUKUMOTO  M,  et al. Continuous   [19]  MURZA A, FERNÁNDEZ-LAFUENTE R, GUISÁN J M. Essential
                 production  of  phospholipase D using immobilized recombinant   role of the concentration of immobilized ligands in affinity
                 streptomyces lividans[J]. Enzyme and  Microbial Technology, 2007,   chromatography: Purification of guanidinobenzoatase on an ionized
                 41(1): 156-161.                                   ligand[J]. Journal of Chromatography B: Biomedical Sciences and
            [6]   LI B, JIAO W, ZHANG X  L,  et al. An enzyme net coating the   Applications, 2000, 740(2): 211-218.
                 surface of nanoparticles: A simple and efficient method for the   [20]  RAKHIMOV M M, KALENDAREVA  T I, SSH R,  et al. Role of
                 immobilization of phospholipase D[J]. Industrial & Engineering   calcium ions in the development of the catalytic  activity of
                 Chemistry Research, 2016, 55(40): 10555-10565.    phospholipase D[J]. Biokhimiia, 1982, 47(10): 1649-1662.
            [7]   WU R, CAO J, LIU F X,  et al. High-level soluble expression  of   [21]  HWANG S, LEE K T, PARK J W, et al. Stability analysis of Bacillus
                 phospholipase D from streptomyces chromofuscus in escherichia coli   stearothermophilus L1 lipase immobilized on surface-modified silica
                 by combinatorial optimization[J]. Electronic Journal of Biotechnology,   gels[J]. Biochemical Engineering Journal, 2004, 17(2): 85-90.
                 2021, 50: 1-9.                                [22]  HIRCHE F, KOCH M H J, KÖNIG S, et al. The influence of organic
            [8]   RANJBAKHSH E, BORDBAR  A K,  ABBASI M,  et al.   solvents  on  phospholipid transformations by phospholipase D in
                 Enhancement of stability and catalytic activity of immobilized lipase   emulsion  systems[J]. Enzyme and Microbial Technology,  1997,
                 on silica-coated modified magnetite nanoparticles[J]. Chemical   20(6): 453-461.
                 Engineering Journal, 2012, 179: 272-276.      [23]  PARK J W. Phosphatidic acid production by PLD covalently immobilized
            [9]   FEDELI C, CARREA G, MONTI D. On the effects of site-specific   on porous membrane[J]. Clean Technology, 2015, 21(4): 224-228.
                 mutations  on activity and expression of  the streptomyces PMF   [24]  LI B L, JIAO W,  ZHANG X L, et al. An enzyme net coating the
                 phospholipase D[J]. Journal of Molecular Catalysis B: Enzymatic,   surface of nanoparticles: A simple and efficient method for the
                 2006, 41(1/2): 1-7.                               immobilization of  phospholipase D[J]. Industrial and Engineering
            [10]  BRADFORD M  M. A rapid method for the quantitation  of   Chemistry Research, 2016, 55(40): 10555-10565.
                 microgram quantities of protein utilizing the principle of protein dye   [25]  HAN  Q  Q, ZHANG H Y, SUN J A,  et al. Immobilization of
                 binding[J]. Analytical Biochemistry, 1973, 72: 249-254.   phospholipase D on silica-coated magnetic nanoparticles for the
                                                         2+
            [11]  ITO  Y,  NAKASHIMA S, KANOH H,  et al. Implication of Ca    synthesis of functional phosphatidylserine[J]. Catalysts, 2019, 9(4):
                 dependent  protein  tyrosine phosphorylation in carbachol-induced   361-373
                 phospholipase D activation in rat pheochromocytoma PC12 cells[J].   [26]  LI  Y, WU J Q, LONG N B,  et al.  Efficient immobilization of
                 Journal of Neurochemistry, 2002, 68(1): 419-425.   phospholipase D on novel  polymer supports with hierarchical pore
            [12]  DINÇER A, TELEFONCU A. Improving the stability of cellulase by   structures[J]. International Journal  of  Biological Macromolecules,
                 immobilization  on modified polyvinyl alcohol coated chitosan   2019, 141: 60-67.
                 beads[J]. Journal of Molecular Catalysis B: Enzymatic, 2007, 45(1):   [27]  WU J Q, XU X M, WANG D L, et al. Immobilization of phospholipase D
                 10-14.                                            on macroporous SiO 2/cationic polymer nano-composited support for
            [13]  TALEKAR S, JOSHI A, JOSHI G, et al. Parameters in preparation   the highly efficient synthesis of phosphatidylserine[J]. Enzyme and
                 and characterization of cross linked enzyme aggregates (CLEAs)[J].     Microbial Technology, 2020, 142: 109696-109728.
   154   155   156   157   158   159   160   161   162   163   164