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木醋杆菌酶系统与鸟苷三磷酸、聚乙二醇及一种蛋白质因子协同相互作用激活,实现1,4-β-D-葡聚糖体外合成的高产率

Achievement of high rates of in vitro synthesis of 1,4-beta-D-glucan: activation by cooperative interaction of the Acetobacter xylinum enzyme system with GTP, polyethylene glycol, and a protein factor.

作者信息

Aloni Y, Delmer D P, Benziman M

出版信息

Proc Natl Acad Sci U S A. 1982 Nov;79(21):6448-52. doi: 10.1073/pnas.79.21.6448.

Abstract

Regulatory properties of a cellulose synthase (UDP-forming)(UDPglucose:1,4-beta-D-glucan 4-beta-D-glucosyltransferase, EC 2.4.1.12) have been demonstrated by using enzyme preparations derived from cells of Acetobacter xylinum. Preparation of a particulate fraction in the presence of 20% (wt/vol) polyethylene glycol-4000 (PEG-4000) yields enzyme with activity 3- to 10-fold higher than that previously reported. The enzyme prepared in this fashion also shows a further marked, specific activation by GTP. The Ka for GTP is 34 microM. Guanosine 5'-[gamma-thio]triphosphate, an analog of GTP, is even more effective than GTP (Ka for guanosine 5'-[gamma-thio]triphosphate = 17 microM). A large number of other nucleotides and nucleotide derivatives were tested with no effect. Enzyme prepared in the absence of PEG-4000 does not respond to GTP because it lacks a protein factor necessary for GTP activation. PEG-4000 promotes the interaction of the protein factor with the enzyme. The factor itself has no synthase activity nor does it stimulate activity of the enzyme in the absence of GTP. In the presence of GTP, protein factor, and PEG-4000, initial rates of enzyme activity 200 times greater than those previously reported can be achieved. Such rates exceed 40% of the in vivo rate of cellulose synthesis from glucose.

摘要

利用从木醋杆菌细胞中提取的酶制剂,已证明了一种纤维素合酶(形成UDP)(UDP葡萄糖:1,4-β-D-葡聚糖4-β-D-葡糖基转移酶,EC 2.4.1.12)的调控特性。在20%(重量/体积)聚乙二醇-4000(PEG-4000)存在的情况下制备颗粒部分,所得到的酶活性比先前报道的高3至10倍。以这种方式制备的酶还显示出被GTP进一步显著的特异性激活。GTP的Ka为34微摩尔。鸟苷5'-[γ-硫代]三磷酸,一种GTP类似物,比GTP更有效(鸟苷5'-[γ-硫代]三磷酸的Ka = 17微摩尔)。测试了大量其他核苷酸和核苷酸衍生物,均无效果。在没有PEG-4000的情况下制备的酶对GTP无反应,因为它缺乏GTP激活所需的蛋白质因子。PEG-4000促进了蛋白质因子与酶的相互作用。该因子本身没有合酶活性,在没有GTP的情况下也不刺激酶的活性。在GTP、蛋白质因子和PEG-4000存在的情况下,酶活性的初始速率可以达到比先前报道的高200倍。这样的速率超过了从葡萄糖体内合成纤维素速率的40%。

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