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肌苷菌核酸代谢关键酶缺失和形成选育腺苷菌的研究 被引量:8
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作者 柏建新 朱晓宏 +4 位作者 张一平 王红连 邓崇亮 杜郭君 罗先勇 《微生物学通报》 CAS CSCD 北大核心 2003年第2期52-56,共5页
以肌苷产生菌BacillusSubtilisJSIM 1 0 1 9为出发菌株 ,根据B subtilis核酸代谢理论设计不同筛选模型 ,用物理、化学诱变剂对亲株进行诱变处理 ,先后有序地获得不同关键酶的缺失或回复即特殊的营养缺陷型以及抗某些代谢类似物的突变株 ... 以肌苷产生菌BacillusSubtilisJSIM 1 0 1 9为出发菌株 ,根据B subtilis核酸代谢理论设计不同筛选模型 ,用物理、化学诱变剂对亲株进行诱变处理 ,先后有序地获得不同关键酶的缺失或回复即特殊的营养缺陷型以及抗某些代谢类似物的突变株 ,解除终产物对代谢物的抑制和阻遏 ,获得了几株黄嘌呤营养缺陷型并对 8氮鸟嘌呤具有抗性的突变株X 1 3等 ,获得的突变株经单菌分离后得到X 1 3 4 ,36℃培养 72h在培养基中最高积累 1 2 4 3g/L腺苷。 展开更多
关键词 核酸代谢酶 酶缺失 选育 腺苷菌 黄嘌呤 酸脱氢酶 酸脱氨酶 酸还原酶
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利用重组Pichia pastoris生产腺苷甲硫氨酸 被引量:43
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作者 李东阳 于健 +2 位作者 田露 吉鑫松 袁中一 《生物工程学报》 CAS CSCD 北大核心 2002年第3期295-299,共5页
为改造甲醇利用型酵母Pichiapastoris来生产腺苷甲硫氨酸 (SAM ,S adenosyl L methionine) ,我们将一个带有SAM合成酶基因的胞内表达质粒转化入Pichiapastoris菌株GS115 ,经过G418抗性筛选得到一株有两个基因拷贝的转化子。该菌在含有... 为改造甲醇利用型酵母Pichiapastoris来生产腺苷甲硫氨酸 (SAM ,S adenosyl L methionine) ,我们将一个带有SAM合成酶基因的胞内表达质粒转化入Pichiapastoris菌株GS115 ,经过G418抗性筛选得到一株有两个基因拷贝的转化子。该菌在含有甲醇和甲硫氨酸的培养基中生长 5d后 ,其细胞内的SAM的产量比原始菌株提高了 30余倍。对该菌生产SAM的培养基中的碳源与氮源进行了优化 ,结果显示碳源的控制对该菌SAM产量的影响很大。在试管水平 ,该菌在含有 0 .75 %的L methionine并且碳源和有机氮源经过一定程度优化的培养基中 ,生长 6d后SAM产量达到 1.5 8g L。 展开更多
关键词 甲硫氨酸高产 重组 SAM合成酶
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An EAL domain protein and cyclic AMP contribute to the interaction between the two quorum sensing systems in Escherichia coli 被引量:2
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作者 Xianxuan Zhou Xiaoming Meng Baolin Sun 《Cell Research》 SCIE CAS CSCD 2008年第9期937-948,共12页
Quorum sensing (QS) is a bacterial cell-cell communication process by which bacteria communicate using extracellular signals called autoinducers. Two QS systems have been identified in Escherichia coli K-12, includi... Quorum sensing (QS) is a bacterial cell-cell communication process by which bacteria communicate using extracellular signals called autoinducers. Two QS systems have been identified in Escherichia coli K-12, including an intact QS system 2 that is stimulated by the cyclic AMP (cAMP)-cAMP receptor protein (CRP) complex and a partial QS system 1 that consists of SdiA (suppressor of cell division inhibitor) responding to signals generated by other microbial species. The relationship between QS system 1 and system 2 in E. coli, however, remains obscure. Here, we show that an EAL domain protein, encoded by ydiV, and cAMP are involved in the interaction between the two QS systems in E. coli. Expression of sdiA and ydiV is inhibited by glucose. SdiA binds to the ydiV promoter region in a dose-dependent, but nonspecific, manner; extracellular autoinducer 1 from other species stimulates ydiV expression in an sdiA-depen- dent manner. Furthermore, we discovered that the double sdiA-ydiV mutation, but not the single mutation, causes a 2-fold decrease in intracellular cAMP concentration that leads to the inhibition of QS system 2. These results indicate that signaling pathways that respond to important environmental cues, such as autoinducers and glucose, are linked together for their control in E. coli. 展开更多
关键词 quorum sensing ydi V CAMP
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