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首页> 外文期刊>Journal of Bioscience and Bioengineering >Lipase Localization in Rhizopus oryzae Cells Immobilized within Biomass Support Particles for Use as Whole-Cell Biocatalysts in Biodiesel-Fuel Production
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Lipase Localization in Rhizopus oryzae Cells Immobilized within Biomass Support Particles for Use as Whole-Cell Biocatalysts in Biodiesel-Fuel Production

机译:固定在生物质支持颗粒中的米根霉细胞中的脂肪酶定位,用作生物柴油燃料生产中的全细胞生物催化剂

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摘要

To identify the lipase responsible for the methanolysis activity of fungus whole-cell biocatalysts,the lipase localization of Rhizopus oryzae cells was determined.Western blot analysis showed that R.oryzae cells produce two types of lipase with different molecular masses of 34 and 31 kDa;the former (ROL34) was bound to the cell wall,whereas the latter (ROL31) was mainly bound to the cell membrane.It was found that cell immobilization within reticulated polyurethane foam biom-ass support particles strongly inhibits the secretion of membrane-bound lipase into the culture medium.An investigation of the relationship between ROL34 and ROL31 suggested that ROL31 originates from the cleavage of a 28-amino-acid residue at the N-terminus of ROL34.The addition of olive oil to the culture medium led to the retention of increased amounts of lipase within the cell.This phenomenon was further confirmed by an immunofluorescence labeling of hyphal cells.When cells were cultivated with various substrate-related compounds,such as olive oil and oleic acid,the intracellular methanolysis activity strongly correlated with the relative amounts of the membrane-bound lipase,which suggests that ROL31 localized in the membrane plays a crucial role in the methanolysis activity of R.oryzae cells.
机译:为了鉴定负责真菌全细胞生物催化剂甲醇分解活性的脂肪酶,确定了米根霉细胞的脂肪酶定位。Western blot分析表明,米色根瘤菌细胞产生两种类型的脂肪酶,分子量分别为34和31 kDa。前者(ROL34)结合在细胞壁上,而后者(ROL31)主要结合在细胞膜上。发现网状聚氨酯泡沫生物质支撑颗粒内的细胞固定作用强烈抑制膜结合脂肪酶的分泌对ROL34和ROL31之间关系的研究表明,ROL31起源于ROL34 N端28个氨基酸残基的切割,向培养基中添加橄榄油导致其保留细胞内脂肪酶含量的增加。这种现象通过菌丝细胞的免疫荧光标记进一步证实。橄榄油和油酸等电子相关化合物的细胞内甲醇分解活性与膜结合脂肪酶的相对含量密切相关,这表明位于膜中的ROL31在米曲霉的甲醇分解活性中起着至关重要的作用。细胞。

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