Krauzova V I, Komarova G N, Il'chenko A P, Gulevskaia S A
Mikrobiologiia. 1984 Jul-Aug;53(4):621-7.
A number of enzyme systems involved in the first steps of hexadecane oxidation can be induced by hexadecanol, an intermediate product of hexadecane degradation. It has also been found that, in Candida guilliermondii cells and in their mitochondrial fraction, an oxidase system is induced when the cells are grown on hexadecanol. This system is similar to that in cells grown on hexadecane; it oxidises higher alcohols at a high rate and is not inhibited by the inhibitors of the man phosphorylating respiration chain. The membrane-bound alcohol dehydrogenase and aldehyde dehydrogenase activities resistant to pyrazole, an inhibitor of cytosol ethanol dehydrogenase, are induced together with the oxidase activity when the cells are grown on hexadecanol as well as on hexadecane. The oxidation of higher alcohols by whole cells is entirely inhibited by azide although their oxidation by mitochondria is resistant to the action of azide; apparently, azide inhibits the transport of alcohols into the cell.
十六烷氧化第一步所涉及的一些酶系统可被十六烷醇诱导,十六烷醇是十六烷降解的中间产物。还发现,在季也蒙假丝酵母细胞及其线粒体部分中,当细胞在十六烷醇上生长时会诱导出一种氧化酶系统。该系统与在十六烷上生长的细胞中的系统相似;它能高速氧化高级醇,且不受磷酸化呼吸链抑制剂的抑制。当细胞在十六烷醇以及十六烷上生长时,对胞质乙醇脱氢酶抑制剂吡唑有抗性的膜结合醇脱氢酶和醛脱氢酶活性会与氧化酶活性一起被诱导。完整细胞对高级醇的氧化完全被叠氮化物抑制,尽管线粒体对高级醇的氧化对叠氮化物的作用有抗性;显然,叠氮化物抑制醇进入细胞的运输。