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图书章节
Acetate via Glycine: A Different Form of Acetogenesis
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通过甘氨酸的醋酸盐:不同形式的乙酸发生
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作者
Jan R. Andreesen
关键词
Xanthine Dehydrogenase ;Acetyl Phosphate ;Serine Hydroxymethyltransferase ;Acetogenic Bacterium ;Glycine Decarboxylase
关键词译文
黄嘌呤脱氢酶;乙酰磷酸;丝氨酸羟甲基转移酶;产乙酸细菌;甘氨酸脱羧酶
页码
568-629
DOI
10.1007/978-1-4615-1777-1_23
来源信息
Acetogenesis
ISBN:9781461357162, 1994年, 568-629页
摘要
In contrast to acetogenesis via the acetyl-CoA pathway, acetogenesis via glycine has never been reviewed in detail. The carbon flow of the glycine-dependent process was earlier depicted mostly as the “serine bypass” modification rather than the “direct reduction” process (Fuchs, 1986; Ljungdahl, 1984, 1986; Ljungdahl and Wood, 1982, Waber and Wood, 1979; Wood et al., 1986; Ragsdale, 1991; Wood and Ljungdahl, 1991). The glycine reductase modification was dealt with briefly as one of the two possibilities by Wood (1989), although it had been earlier proposed as the likely candidate if the cells are supplemented with trace elements necessary to express enzymes such as formate dehydrogenase/CO
2
reductase and glycine reductase (Dürre and Andreesen, 1982d, 1983; Dürre et al., 1983).
摘要译文
与通过乙酰辅酶A途径的乙酰化相反,通过甘氨酸的乙酸发生从未被详细评述过。甘氨酸依赖过程的碳流量早先主要描述为“丝氨酸旁路”修饰,而不是“直接还原”过程(Fuchs,1986; Ljungdahl,1984年,1986年; Ljungdahl and Wood,1982,Waber and Wood,1979; Wood等,1986; Ragsdale,1991; Wood和Ljungdahl,1991)。甘氨酸还原酶修饰作为Wood(1989)的两种可能性之一被简要地处理,尽管如果细胞补充了表达酶如甲酸脱氢酶/ CO 2还原酶所必需的微量元素,它早先被提议作为候选物。和甘氨酸还原酶(Dürre和Andreesen,1982d,1983; Dürre等,1983)。
Eubacterium Acidaminophilum, an Organism Able to Interact in Interspecies H-Transfer Reactions or to Transfer Electrons to Different Terminal Reductase Systems
Eubacterium Acidaminophilum,一种能够进行种间H-转移反应或将电子转移到不同末端还原酶系统的生物体
Mechanism and Control of Mitochondrial Glycine Oxidation
线粒体甘氨酸氧化的机理与控制
Comparative aspects of aminooxyacetate inhibition of glycine oxidation and aminotransferase activity of pea leaf mitochondria
氨氧基乙酸盐抑制豌豆叶片线粒体甘氨酸氧化和氨基转移酶活性的比较
Predominant localization of mitochondria enriched with glycine-decarboxylating enzymes in bundle sheath cells of Alternanthera tenella, a C
3
–C
4
intermediate species
富含甘氨酸甲基化酶的线粒体富含甘氨酸鞘细胞的主要定位,C 3-C 4中间物种
The Influence of High Glycine Diets on the Activity of Glycine-Catabolizing Enzymes and on Glycine Catabolism in Rats
高甘氨酸饮食对大鼠甘氨酸 - 分发酶活性和甘氨酸分解代谢的影响
Mitochondria from leaf mesophyll cells of C4 plants are deficient in the H protein of glycine decarboxylase complex
C4植物的叶片叶片细胞的线粒体缺乏甘氨酸脱羧酶复合物的H蛋白
Properties of recombinant glycine decarboxylase P- and H-protein subunits from the cyanobacterium Synechocystis sp. strain PCC 6803
来自蓝藻细菌集胞藻PCC 6803的重组甘氨酸脱羧酶P-和H蛋白亚基的性质
Effects of Cellular Glycine on Cell Proliferation
细胞甘氨酸对细胞增殖的影响
Genetic manipulation of glycine decarboxylation
甘氨酸脱羧的遗传操作
Properties of recombinant glycine decarboxylase P- and H-protein subunits from the cyanobacterium Synechocystis sp. strain PCC 6803
从蓝细菌集胞藻重组甘氨酸脱羧酶P-和H-蛋白质亚基的属性。株6803
Jan R. Andreesen. Acetate via Glycine: A Different Form of Acetogenesis. Acetogenesis[M].DE: Springer, 1994: 568-629