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Ji Liu

Publications and source records attributed to Ji Liu.

21 records · Page 2Linked to original sources

[Study of encapsulation of suicide gene in poly(D,L-lactic-co-glycolic acid) nanoparticles and its characteristics in vitro].

We constructed the AFP promotor, suicide gene and EGFP eukaryotic expression vector recombinant plasmid, and this plasmid DNA was encapsulated by biodegradable, biocompatible polymer PLGA to prepare nanoparticles. The results demonstrate that the mean diameter of DNA-PLGA-NP is 68 nm, the encapsulation ratio reaches to 80%, and the PLGA nanoparticles can protect plasmid DNA from digestion by deoxyribonuclease I (DNaseI) and sonication-induced shearing in vitro.

Biocompatible Materials↗

[Expression of human nerve growth factor gene in E. coli].

OBJECTIVE: To investigate the structure and function of human nerve growth factor (beta-NGF) and the gene encoding beta-NGF. METHODS: A pair of specific primers (29 mer) for the sequence encoding human beta-NGF was designed and synthesized. A 380 bp fragment was amplified from human blood genomic DNA by polymerase chain reaction, and cloned into pGEM-T Easy vector. The identified insert fragment from the recombinant pGEM-T-NGF was directionally ligated with linearized pGEX-5T with the compatible termini. E. coli JM 109 was transformed with the expression recombinant p5TNGF and induced by IPTG. RESULTS: The cloned DNA fragment was identified as the full-length sequence encoding human beta-NGF by restriction analysis and DNA sequencing. SDS-PAGE and Western blot revealed the cloned NGF gene expressed as a fusion protein (40.5 x 10(3) u) in the cells transformed by p5TNGF. The soluble fusion protein was determined to be 503.2 mg/L, accounting for 6.8% of the total soluble protein (7.4 g/L) of bacterial cells. This fusion protein was found to have antigenic activities of NGF. CONCLUSION: The clone containing the full-length sequence encoding human beta-NGF is obtained and successfully expressed in E. coli to be of use for studying the biological functions of human beta-NGF gene.

Base Sequence↗

Mechanistic Study of the Jacobsen Asymmetric Epoxidation of Indene.

The asymmetric epoxidation of indene using aqueous NaOCl, catalyzed by Jacobsen's chiral manganese salen complex, provides indene oxide in 90% yield and 85-88% enantioselectivity. The axial ligand, 4-(3-phenylpropyl)pyridine N-oxide (P(3)NO), increases the rate of epoxidation without affecting enantioselectivity and also stabilizes the catalyst. These two effects afford a reduction in catalyst loading to <1%. The turnover-limiting step in the catalytic cycle has been determined to be the oxidation of the manganese catalyst, based on reaction orders of 0 in indene and 1 in catalyst and also based on the dependence of the rate on the hypochlorite concentration. In the presence of the ligand P(3)NO, this rate-limiting oxidation occurs in the organic phase with HOCl as oxidant, as shown by the dependence of the rate on the NaOH concentration. P(3)NO assists the transport of HOCl to the organic layer as demonstrated by titration studies and by measuring the rates of oxidation of a redox indicator, diphenylbenzidine. On the other hand, stirring speed studies indicate that, in the absence of the ligand, oxidation occurs at the interface. Thus, the axial ligand plays at least two roles in the epoxidation of indene: it stabilizes the catalyst, presumably by ligation, and it increases the epoxidation reaction rate by drawing the active oxidant, HOCl, into the organic layer.

Journal Article↗