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白色念珠菌的微粒体几丁质酶活性

Microsomal chitinase activity from Candida albicans.

作者信息

Dickinson K, Keer V, Hitchcock C A, Adams D J

机构信息

Department of Microbiology, University of Leeds, U.K.

出版信息

Biochim Biophys Acta. 1991 Jan 23;1073(1):177-82. doi: 10.1016/0304-4165(91)90199-q.

Abstract

Chitinase (E.C. 3.2.1.14) was characterized in microsomal fractions from yeast cells of Candida albicans. Following six washes with buffer (50 mM Bis-Tris.Cl, pH 6.5), enzyme activity of microsomes fell markedly to 0.3% of total and 6% of the specific activity detected in the low-speed supernatant (9000 X g) of a cell lysate. An apparently zymogenic, microsomal chitinase activity became more readily detectable with washing and after six washes enzyme activity was activated 1.7-fold following pre-incubation with trypsin. The following properties of microsomal chitinase were closely comparable with those for cytosolic chitinase (indicated in parentheses): Km = 2.1 mg chitin per ml (2.9 mg chitin per ml); temperature optimum = 45 degrees C (45 degrees C); inhibition by allosamidin competitive, Ki = 0.29 microM (competitive, Ki = 0.23 microM). A range of detergents solubilized and activated microsomal chitinase in a highly specific manner. Following density gradient centrifugation of microsomes, chitinase was distributed approximately evenly throughout the gradient suggesting that microsomal chitinase is not associated exclusively with any one membrane component. The possible morphogenetic role of microsomal chitinase is discussed in relation to the potential of this enzyme as a target for highly specific antifungal agents.

摘要

对白色念珠菌酵母细胞微粒体部分的几丁质酶(E.C. 3.2.1.14)进行了特性研究。用缓冲液(50 mM 双三羟甲基氨基甲烷 - Cl,pH 6.5)洗涤六次后,微粒体的酶活性显著下降至总活性的0.3%,以及细胞裂解液低速上清液(9000×g)中检测到的比活性的6%。一种明显具有酶原性的微粒体几丁质酶活性在洗涤过程中变得更容易检测到,洗涤六次后,用胰蛋白酶预孵育后酶活性被激活了1.7倍。微粒体几丁质酶的以下特性与胞质几丁质酶的特性(括号内所示)密切可比:Km = 每毫升2.1毫克几丁质(每毫升2.9毫克几丁质);最适温度 = 45℃(45℃);别洛沙米丁竞争性抑制,Ki = 0.29 μM(竞争性,Ki = 0.23 μM)。一系列去污剂以高度特异性的方式溶解并激活了微粒体几丁质酶。对微粒体进行密度梯度离心后,几丁质酶在整个梯度中分布大致均匀,这表明微粒体几丁质酶并非仅与任何一种膜成分相关。结合该酶作为高度特异性抗真菌剂靶点的潜力,讨论了微粒体几丁质酶可能的形态发生作用。

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