乙醛酸循环
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乙醛酸循环(英语:Glyoxylate cycle)又称乙醛酸途径、乙醛酸旁路,其名称来自于此路径经由产生乙醛酸来节省柠檬酸循环所会损失的两个二氧化碳。此路径只存在于植物和微生物中。其与柠檬酸循环的差异在于以透过乙醛酸途径使异柠檬酸转为琥珀酸与乙醛酸,后者再与乙酰-CoA藉酵素转为苹果酸,从而回到柠檬酸循环。
单词 | Glyoxylate cycle |
释义 |
Glyoxylate cycle
中文百科
乙醛酸循环![]() ![]() ![]() ![]() 乙醛酸循环(英语:Glyoxylate cycle)又称乙醛酸途径、乙醛酸旁路,其名称来自于此路径经由产生乙醛酸来节省柠檬酸循环所会损失的两个二氧化碳。此路径只存在于植物和微生物中。其与柠檬酸循环的差异在于以透过乙醛酸途径使异柠檬酸转为琥珀酸与乙醛酸,后者再与乙酰-CoA藉酵素转为苹果酸,从而回到柠檬酸循环。
英语百科
Glyoxylate cycle 乙醛酸循环![]() ![]() ![]() ![]() The glyoxylate cycle, a variation of the tricarboxylic acid cycle, is an anabolic pathway occurring in plants, bacteria, protists, and fungi. The glyoxylate cycle centers on the conversion of acetyl-CoA to succinate for the synthesis of carbohydrates. In microorganisms, the glyoxylate cycle allows cells to utilize simple carbon compounds as a carbon source when complex sources such as glucose are not available. The cycle is generally assumed to be absent in animals, with the exception of nematodes at the early stages of embryogenesis. In recent years, however, the detection of malate synthase (MS) and isocitrate lyase (ICL), key enzymes involved in the glyoxylate cycle, in some animal tissue has raised questions regarding the evolutionary relationship of enzymes in bacteria and animals and suggests that animals encode alternative enzymes of the cycle that differ in function from known MS and ICL in non-metazoan species. |
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