Saha Soma Pal, Patra A, Paul A K
Department of Botany, University of Calcutta, 35 Ballygunge Circular Road, Kolkata 700019, India.
J Biotechnol. 2007 Nov 1;132(3):325-30. doi: 10.1016/j.jbiotec.2007.03.012. Epub 2007 Apr 18.
Azotobacter chroococcum MAL-201 accumulates poly(3-hydroxybutyric acid) [PHB] when grown in glucose containing nitrogen-free Stockdale medium. The same medium supplemented with valerate alone and valerate plus polyethylene glycol (PEG) leads to the accumulation of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) [PHBV] and PEG containing PHBV-PEG polymers, respectively. The intracellular degradation of these polymers as studied in carbon-free Stockdale medium showed a rapid degradation of PHB followed by PHBV, while it was least in case of PHBV-PEG. The rate of such degradation was 44.16, 26.4 and 17.0 mg h(-1)l(-1) for PHB, PHBV and PHBV-PEG, respectively. During the course of such of PHBV and PHBV-PEG degradation the 3HB mol% of polymers decreased significantly with increase of 3HV mol fraction, the EG mol% in PHBV-PEG, however, remained constant. After 50h of degradation the decrease in intrinsic viscosity and molecular mass of PHBV-PEG were 37.5 and 43.6%, respectively. These values appeared low compared to PHB and PHBV. Moreover, the increasing EG content of polymer retarded their extent of degradation. Presence of PEG, particularly of low molecular weight PEG was inhibitory to intracellular PHA depolymerise (i-PHA depolymerase) activity and the relative substrate specificity of the i-PHA depolymerase of MAL-201 appeared to be PHB > PHBV > PHBV-PEG.
在不含氮的Stockdale葡萄糖培养基中生长时,褐球固氮菌MAL-201会积累聚(3-羟基丁酸酯)[PHB]。单独添加戊酸以及戊酸加聚乙二醇(PEG)的相同培养基分别导致聚(3-羟基丁酸酯-co-3-羟基戊酸酯)[PHBV]和含PEG的PHBV-PEG聚合物的积累。在无碳Stockdale培养基中研究这些聚合物的细胞内降解情况时发现,PHB先快速降解,随后是PHBV,而PHBV-PEG的降解最少。PHB、PHBV和PHBV-PEG的这种降解速率分别为44.16、26.4和17.0 mg h⁻¹l⁻¹。在PHBV和PHBV-PEG降解过程中,聚合物的3HB摩尔百分比随着3HV摩尔分数的增加而显著降低,然而,PHBV-PEG中的EG摩尔百分比保持不变。降解50小时后,PHBV-PEG的特性粘度和分子量分别降低了37.5%和43.6%。与PHB和PHBV相比,这些值显得较低。此外,聚合物中EG含量的增加阻碍了它们的降解程度。PEG的存在,尤其是低分子量PEG的存在,对细胞内PHA解聚酶(i-PHA解聚酶)活性具有抑制作用,并且MAL-201的i-PHA解聚酶的相对底物特异性似乎是PHB > PHBV > PHBV-PEG。