Braun P C, Calderone R A
J Bacteriol. 1978 Mar;133(3):1472-7. doi: 10.1128/jb.133.3.1472-1477.1978.
Chitin synthesis was studied in both yeast and hyphae of the dimorphic fungus Candida albicans. Incorporation of N-acetyl-d-[1-(3)H]glucosamine ([(3)H]GluNAc) into an acid-alkali-insoluble fraction was 10 times greater in hyphal-phase cells. A crude preparation of chitin synthetase was obtained from sonically treated protoplasts of both forms of Candida. Enzyme activity, which was determined by using [(14)C]UDP-GLuNAc as a substrate, was exclusively associated with the 80,000 x g pellet from sonically treated protoplasts of both forms. It was determined that enzyme activity (nanomoles of [(14)C]UDP-GluNAc incorporated per milligram of protein) was approximately 2 times greater in hyphae versus yeast cells. Enzyme activity in both yeast and hyphae increased six- to sevenfold when the enzyme preparations were preincubated with trypsin. A vacuolar fraction, obtained from yeast cells but not from hyphae, stimulated enzyme activity when incubated with either yeast or hyphal enzyme preparations. Membrane fractions from protoplasts coated with [(3)H]concanavalin A before disruption were isolated by Renografin density gradient centrifugation. Chitin synthetase activity was preferentially associated with the concanavalin A-labeled fraction, suggesting that the enzyme was located on the plasma membrane. In addition, enzyme activity in protoplasts treated with cold glutaraldehyde before disruption was significantly greater than in protoplasts that were sonically disrupted and then treated with cold glutaraldehyde, indicating that the enzyme resides on the inner side of the plasma membrane.
对二态真菌白色念珠菌的酵母和菌丝中的几丁质合成进行了研究。在菌丝相细胞中,N-乙酰-d-[1-(3)H]葡糖胺([(3)H]GluNAc)掺入酸碱不溶性部分的量比酵母相细胞高10倍。从白色念珠菌两种形态的经超声处理的原生质体中获得了几丁质合成酶的粗制品。以[(14)C]UDP-GluNAc为底物测定的酶活性仅与两种形态经超声处理的原生质体的80,000×g沉淀相关。已确定菌丝中的酶活性(每毫克蛋白质掺入的[(14)C]UDP-GluNAc的纳摩尔数)比酵母细胞高约2倍。当酶制剂与胰蛋白酶预孵育时,酵母和菌丝中的酶活性均增加了6至7倍。从酵母细胞而非菌丝中获得的液泡部分,与酵母或菌丝酶制剂一起孵育时可刺激酶活性。在破坏前用[(3)H]伴刀豆球蛋白A包被的原生质体的膜部分通过泛影葡胺密度梯度离心分离。几丁质合成酶活性优先与伴刀豆球蛋白A标记的部分相关,表明该酶位于质膜上。此外,在破坏前用冷戊二醛处理的原生质体中的酶活性明显高于经超声破坏后再用冷戊二醛处理的原生质体,表明该酶位于质膜内侧。