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Microbial growth on C1 compounds. Incorporation of C1 units into allulose phosphate by extracts of Pseudomonas methanica

机译:C1化合物上的微生物生长。甲烷假单胞菌提取物将C1单元整合到磷酸阿洛糖中

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摘要

1. Incubation of cell-free extracts of methane- or methanol-grown Pseudomonas methanica with [14C]formaldehyde and d-ribose 5-phosphate leads to incorporation of radioactivity into a non-volatile product, which has the chromatographic properties of a phosphorylated compound. 2. Treatment of this reaction product with a phosphatase, followed by chromatography, shows the presence of two compounds whose chromatographic properties are consistent with their being free sugars. 3. The minor component of the dephosphorylated products has been identified as fructose. The major component has been identified as allulose (psicose) on the basis of co-chromatography, co-crystallization of the derived phenylosazone and dinitrophenylosazone with authentic derivatives of allulose and behaviour towards oxidation with bromine water. 4. It is suggested that the bacterial extracts catalyse the condensation of a C1 unit identical with, or derived from, formaldehyde with ribose 5-phosphate to give allulose 6-phosphate. 5. Testing of hexose phosphates and pentose phosphates as substrates has so far shown the reaction to be specific for ribose 5-phosphate. 6. The condensation reaction is not catalysed by extracts of methanol-grown Pseudomonas AM1. 7. A variant of the pentose phosphate cycle, involving this condensation reaction, is suggested as an explanation for the net synthesis of C3 compounds from C1 units by P. methanica.
机译:1.将无甲烷提取物或甲醇生长的假单胞菌甲烷甲烷与[ 14 C]甲醛和d-核糖5-磷酸一起孵育,导致放射性掺入非挥发性产物中,具有磷酸化化合物的色谱性质。 2.用磷酸酶处理该反应产物,然后进行色谱分析,表明存在两种化合物,其色谱性质与其游离糖一致。 3.脱磷产物中的次要成分已被确定为果糖。根据共色谱法,衍生的苯基osazone和dinitrophenylosazone与真正的Allulose衍生物的共结晶以及对溴水的氧化行为,已鉴定出主要成分为阿洛糖(阿胶糖)。 4.建议细菌提取物催化与甲醛相同或衍生自甲醛的C1单元与5-磷酸核糖的缩合,生成6-磷酸阿洛糖。 5.迄今为止,对己糖磷酸酯和磷酸戊糖磷酸酯的测试表明该反应对5-磷酸核糖具有特异性。 6.甲醇生长的假单胞菌AM1的提取物不催化缩合反应。 7.建议涉及该缩合反应的磷酸戊糖循环的变体,以解释甲烷甲烷菌从C1单元净合成C3化合物。

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