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制曲微生物及蛋白质分解力的关系初探 被引量:15
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作者 蒋红军 范光先 《酿酒科技》 2003年第1期32-34,共3页
通过对高温大曲入室发酵机理的探索,寻找高温大曲发酵过程中的各种微生物消长规律、微生物与蛋白质分解力的关系。结果表明,高温大曲在发酵初期微生物的数量、种类都最多,中后期芽孢菌占优势;而由于需满足微生物的生长及形成多种香味物... 通过对高温大曲入室发酵机理的探索,寻找高温大曲发酵过程中的各种微生物消长规律、微生物与蛋白质分解力的关系。结果表明,高温大曲在发酵初期微生物的数量、种类都最多,中后期芽孢菌占优势;而由于需满足微生物的生长及形成多种香味物质或其前驱物质,因而中期发酵大曲蛋白质分解力是最高的,可达16~19μg/g·min(酪氨酸计)。 展开更多
关键词 制曲 高温大曲 发酵机理 蛋白质分解力 微生物消长规律 香味物质 茅台大曲
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新工艺黄酒麦曲的工艺及性能检测 被引量:6
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作者 胡卫明 高永强 《酿酒》 CAS 2013年第1期103-106,共4页
阐述新工艺黄酒中的生麦曲与熟麦曲的的操作工艺,对黄酒的两种不同工艺麦曲的性能指标作了系统比对,并加以说明。说明在黄酒生产发酵阶段,应注意醪液中糖化酶、液化酶和酸性蛋白酶三个主要酶系活力的协调与平衡。
关键词 黄酒 麦曲 糖化力 液化力 蛋白质分解力
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新工艺黄酒麦曲的工艺及性能检测
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作者 胡卫明 高永强 《山东食品发酵》 2013年第1期25-28,共4页
本文阐述新工艺黄酒中的生麦曲与熟麦曲的的操作工艺,对黄酒的两种不同工艺麦曲的性能指标作了系统比对,并加以说明。说明在黄酒生产发酵阶段,应注意醪液中糖化酶、液化酶和酸性蛋白酶三个主要酶系活力的协调与平衡。
关键词 黄酒 麦曲 糖化力 液化力 蛋白质分解力
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Palmitate induces fat accumulation by activating C/EBPβ-mediated G0S2 expression in HepG2 cells 被引量:4
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作者 Nai-Qian Zhao Xiao-Yan Li +4 位作者 Li Wang Zi-Ling Feng Xi-Fen Li Yan-Fang Wen Jin-Xiang Han 《World Journal of Gastroenterology》 SCIE CAS 2017年第43期7705-7715,共11页
AIM To determine the role of G0/G1 switch gene 2(G0 S2) and its transcriptional regulation in palmitate-induced hepatic lipid accumulation.METHODS Hep G2 cells were treated with palmitate,or palmitate in combination w... AIM To determine the role of G0/G1 switch gene 2(G0 S2) and its transcriptional regulation in palmitate-induced hepatic lipid accumulation.METHODS Hep G2 cells were treated with palmitate,or palmitate in combination with CCAAT/enhancer binding protein(C/EBP)β si RNA or G0 S2 si RNA. The m RNA expression of C/EBPβ,peroxisome proliferator-activated receptor(PPAR)γ and PPARγ target genes(G0 S2,GPR81,GPR109 A and Adipoq) was examined by q PCR. The protein expression of C/EBPβ,PPARγ,and G0 S2 was determined by Western blotting. Lipid accumulation was detected with Oil Red O staining and quantified by absorbance value of the extracted Oil Red O dye. Lipolysis was evaluated by measuring the amount of glycerol released into the medium. RESULTS Palmitate caused a dose-dependent increase in lipid accumulation and a dose-dependent decrease in lipolysis in Hep G2 cells. In addition,palmitate increased the m RNA expression of C/EBPβ,PPARγ,and PPARγ target genes(G0 S2,GPR81,GPR109 A,and Adipoq) and the protein expression of C/EBPβ,PPARγ,and G0 S2 in a dose-dependent manner. Knockdown of C/EBPβ decreased palmitate-induced PPARγ and its target genes(G0 S2,GPR81,GPR109 A,and Adipoq) m RNA expression and palmitate-induced PPARγ and G0 S2 protein expression in Hep G2 cells. Knockdown of C/EBPβ also attenuated lipid accumulation and augmented lipolysis in palmitate-treated Hep G2 cells. G0 S2 knockdown attenuated lipid accumulation and augmented lipolysis,while G0 S2 knockdown had no effects on the m RNA expression of C/EBPβ,PPARγ,and PPARγ target genes(GPR81,GPR109 A and Adipoq) in palmitate-treated Hep G2 cells. CONCLUSION Palmitate can induce lipid accumulation in Hep G2 cells by activating C/EBPβ-mediated G0 S2 expression. 展开更多
关键词 Obesity Nonalcoholic fatty liver disease Saturated fatty acid G0/G1 switch gene 2 CCAAT/enhancer binding protein β ADIPOGENESIS LIPOLYSIS Proliferator-activated receptor γ
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