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Glucose-induced secretion of Trichoderma reesei xylanases.

机译:葡萄糖诱导的里氏木霉木聚糖酶的分泌。

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To produce two xylanases with Trichoderma reesei grown on glucose, recombinant strains which carry either the xyn1 or the xyn2 (xylanase I and II [XYN I and XYN II]-encoding) structural genes under the expression signals of the homologous pki1 (pyruvate kinase-encoding) gene were constructed. The two types of transformants secreted XYN I or II, respectively, during growth on glucose, as demonstrated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and immunostaining. The corresponding specific xylanase activities of the best transformants on glucose were 76 and 145 U/mg of protein for XYN I and XYN II, respectively, as opposed to that obtained by the parent strain (26 U/mg of protein). When related to the amount of biomass formed, however, they produced only about 4 to 5 U/g, in contrast to much higher activities (10 to 12 U/g) during growth on xylan. The ultrastructural location of XYN II in the transformant strain producing the highest constitutive XYN II formation (ATX2-12) was investigated by immunoelectron microscopy and compared with that in the wild-type strain growing on xylan. Cell extracts from both types of transformants grown on glucose exhibited a higher intracellular xylanase activity than did the parent strain grown on xylan. By using electron microscopy and immunogold labelling, XYN II was detected in the endoplasmic reticulum, Golgi-like vesicles, secretory vesicles, vacuoles, and cell walls. The immunolabel in the vacuoles was detected preferentially in subapical cells. When a recombinant strain which expressed xyn2 from the pki1 promoter was compared with the parent strain during growth on xylan, the former exhibited a less proliferated endoplasmic reticulum and a smaller number of secretory vesicles; however, a higher density of labelling was observed. The relationship of these findings to the efficacy of protein secretion during growth on glucose is discussed.
机译:为了用在葡萄糖上生长的里氏木霉产生两种木聚糖酶,重组菌株在同源pki1(丙酮酸激酶-β)的表达信号下携带xyn1或xyn2(木聚糖酶I和II [XYN I和XYN II]编码)结构基因。编码)基因被构建。十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和免疫染色证明,两种类型的转化子分别在葡萄糖上生长时分泌XYN I或II。最佳转化体对葡萄糖的相应木聚糖酶活性对XYN I和XYN II分别为76和145 U / mg蛋白质,与之相比,其亲本菌株获得的木聚糖酶活性为26 U / mg蛋白质。然而,当与形成的生物量相关时,它们仅产生约4至5 U / g,而在木聚糖上生长期间的活性却高得多(10至12 U / g)。通过免疫电子显微镜研究了XYN II在产生最高组成型XYN II形成的转化菌株(ATX2-12)中的超微结构位置,并将其与在木聚糖上生长的野生型菌株进行了比较。来自两种在葡萄糖上生长的转化体的细胞提取物显示出比在木聚糖上生长的亲本菌株更高的细胞内木聚糖酶活性。通过使用电子显微镜和免疫金标记,在内质网,高尔基样小泡,分泌小泡,液泡和细胞壁中检测到XYN II。液泡中的免疫标记优先在根尖下的细胞中检测到。当在木聚糖上生长期间将表达自pki1启动子的xyn2的重组菌株与亲本菌株进行比较时,前者表现出较少的内质网增殖和较少的分泌性囊泡。然而,观察到更高的标记密度。讨论了这些发现与葡萄糖生长过程中蛋白质分泌功效的关系。

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