1.Quantitative studies of the production phase in rHSA fermentation.
Ming-Zhi HUANG ; Mei-Jin GUO ; Ju CHU ; Hai-Feng HANG ; Ying-Ping ZHUANG ; Si-Liang ZHANG
Chinese Journal of Biotechnology 2003;19(1):81-86
The model equations of the production phase of rHSA fermentation were derived on the base of both elemental balance and metabolic balance, then the unknown parameters of the model were estimated by multivariable optimization. The possible reasons of discrepancy of production rate between different period of fermentation were discussed. The model could preferably described the relations between different macroscopic reaction rates of the process and keys for the high-efficiency expression of HAS were deduced.
Fermentation
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physiology
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Humans
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Models, Biological
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Pichia
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genetics
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metabolism
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Recombinant Proteins
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biosynthesis
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genetics
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Serum Albumin
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biosynthesis
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genetics
2.The construction of a human serum albumin small gene.
Hong-mei ZHANG ; Xiao-ling JIANG ; Huo-sheng WANG ; Li-xiong LI ; Liu-mei XU ; Ping LIN ; Mei-zhong LI ; Min WANG ; Bo-ping ZHOU
Chinese Journal of Hepatology 2006;14(6):461-462
3.Expression and purification of IFNbeta-HSA fusion protein in Pichia pastoris.
Qi ZHANG ; Jianyong LEI ; Yuedi DING ; Yun CHEN ; Lin QU ; Shuxian CHEN ; Jian JIN
Chinese Journal of Biotechnology 2009;25(11):1746-1752
In order to obtain enough fusion protein for developing preclinical studies of IFNbeta-HAS, we screened Pichia pastoris transformants expressing high-level protein by immunology method. The yield of IFNbeta-HSA was about 500 mg/L by fed-batch fermentation. The purity of IFNbeta-HSA reached 96% through the steps of ultrafiltration, Blue Sepharose FF, Ni2+-IMAC and DEAE Sepharose FF. Analysis of Western blotting showed that IFNbeta-HSA had the antigenicity of IFNbeta and HSA. The specific activity was about 1.96 x 10(7) IU/mg by standard survival activity test on WISH cells challenged with VSV virus. This study provided a method to produce IFNbeta-HSA.
Fermentation
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Humans
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Interferon-beta
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biosynthesis
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genetics
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Pichia
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genetics
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metabolism
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Recombinant Fusion Proteins
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biosynthesis
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genetics
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isolation & purification
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Serum Albumin
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biosynthesis
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genetics
4.Genetic Polymorphism of the Serum Proteins of Horses in Jeju.
Jin Ah SHIN ; Young Hoon YANG ; Hee Seok KIM ; Young Min YUN ; Kyoung Kap LEE
Journal of Veterinary Science 2002;3(4):255-263
The study was carried out to investigate the genetic polymorphism of the serum proteins of horses in Cheju. They were assigned to three groups; 45 Cheju native horses(CNH), 60 Cheju racing horses(CRH) and 60 Thoroughbreds(TB). We analyzed the phenotypes and gene frequencies of serum proteins which were albumin (Alb), vitamin-D binding protein(GC), esterase (ES), A1B glycoprotein(A1B) and transferrin(TF) loci using horizontal polyacrylamide gel electrophoresis (HPAGE).All of the loci, except A1B in TB, showed polymorphisms and different allelic and phenotypic frequencies in all three groups. ESS and TFF1 were not observed in CNH. Allelic frequencies of AlbB, ESI, TFD and TFF1 were high in TB. All of the loci, except ES locus in CRH, appeared to be in a state of Hardy-Weinberg equilibrium from goodness-of-fit test in all three groups Heterozygosity estimates at Alb, ES and TF loci were high, but GC and A1B loci were low in all three groups. Average heterozygosities in CNH, CRH and TB were 0.3535, 0.3555 and 0.2726, respectively. Results showed differences in the frequencies of alleles and phenotypes of several serum protein loci between CNH and CRH, suggested that CRH might be crossed with other breeds of horses in some degree.
Alleles
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Animals
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Blood Proteins/*genetics
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Electrophoresis, Polyacrylamide Gel
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Esterases/genetics
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Genetic Variation
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Horses/blood/*genetics
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Polymorphism, Genetic
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Serum Albumin/genetics
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Transferrin/genetics
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Vitamin D-Binding Protein/genetics
5.Progresses in recombinant human serum albumin.
Riga MANCHU ; Yingxia ZHANG ; Yun ZHANG
Journal of Biomedical Engineering 2009;26(4):900-903
Human serum albumin (HSA) is an important biological product in clinical pharmacy practice at present. Its main clinical use is in maintaining colloid osmotic pressure and increasing circulating plasma volume so as to cure hemorrhagic shock, burn, cancer, hypercytosis, hypoalbuminosis, etc. HSA is isolated by fractionating human plasma, which entails possible contamination by viruses or prions. Recombinant human serum albumin (rHSA) has been successfully produced by biological engineering. The structural and functional properties of rHSA are similar to those of plasma derived human serum albumin (pdHSA). Preclinical and clinical trials have confirmed the safety and efficacy of using this rHSA preparation in the treatment of certain diseases.
Escherichia coli
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genetics
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metabolism
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Genetic Vectors
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genetics
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Humans
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Pichia
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genetics
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metabolism
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Recombinant Proteins
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biosynthesis
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genetics
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pharmacology
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Saccharomyces cerevisiae
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genetics
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metabolism
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Serum Albumin
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biosynthesis
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genetics
6.Construction, expression and characterization of recombinant fusion protein HSA-PTH (1-34) in Pichia pastoris.
Jing CHEN ; Hong-ying SUN ; Ying YANG ; Xue-fen WANG ; Shu-qing CHEN
Journal of Zhejiang University. Medical sciences 2008;37(2):126-133
OBJECTIVETo obtain recombinant fusion protein HSA (human serum albumin)-PTH(1-34) in Pichia pastoris.
METHODSHSA and PTH(1-34) cDNA were obtained with PCR and the DNA segments were cloned into vector pPIC9 with linker. The linearized plasmids were transformed GS115 competent cells treated with LiCl, and mut+ transformants were screened on MD plate. With AOX promoter and alpha-MF signal sequences leading, fusion protein was expressed in GS115. PCR and SDS-PAGE were employed to confirm the integration and expression of HSA-PTH(1-34). The fusion protein was identified by Western blotting and classical adenylate cyclase assay.
RESULTThe PCR results showed that the gene of HSA-PTH(1-34) was integrated into GS115 genome. Western bolt approved the existence of two domains of HSA and PTH(1-34). The bioactivity assay in rabbit cortical membranes indicated that HSA-PTH (1-34) activated adenylate cyclase, but the activity was lower than that of the synthetic PTH(1-34).
CONCLUSIONActive fusion protein HSA-PTH (1-34) is successfully expressed in Pichia pastoris.
Escherichia coli ; genetics ; metabolism ; Genetic Vectors ; genetics ; Humans ; Peptide Fragments ; biosynthesis ; genetics ; Pichia ; genetics ; metabolism ; Recombinant Fusion Proteins ; biosynthesis ; genetics ; Serum Albumin ; biosynthesis ; genetics ; Teriparatide ; analogs & derivatives
7.High-level expression of fusion protein GGH in Pichia pastoris GS115 by constructing a double plasmid co-expression system.
Hui WANG ; Wenfang DOU ; Xiaomei ZHANG ; Hongyu XU ; Zhenghong XU
Chinese Journal of Biotechnology 2011;27(7):983-989
In order to make a large-scale preparation of(GLP-1A2G)2-HAS (GGH), the double-plamid pPICZalphaB and pPIC9K co-expression system was introduced into Pichia pastoris GS115. Firstly, the GGH fusion gene was amplified by PCR to create the recombinant expression plasmid pPICZalphaB-ggh, which was transformed into P. pastoris GS 115/F2 that was integrated by another recombinant expression plasmid pPIC9K-ggh. The immunology method combined with high concentration antibiotic was used to screen recombinant strain P. pastoris GS115/F3 capable of high-level expression of GGH protein. The GGH fusion protein expressed by GS115/F3 increased 49.7% compared with the GS 115/F2 in the expression conditions of 3% methanol inducing 80 h at 30 degrees C. At the same time, the quantitative PCR results showed that GGH gene dose in GS115/F3 increased 26.7% with respect to that of GS 115/F2. Furthermore, the Western blotting experiment indicated that the recombinant GGH possess the two antigenicities of GLP-1 and HSA.
Genetic Vectors
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genetics
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Glucagon-Like Peptide 1
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biosynthesis
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genetics
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Humans
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Pichia
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genetics
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metabolism
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Plasmids
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genetics
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Polymerase Chain Reaction
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methods
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Recombinant Fusion Proteins
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biosynthesis
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genetics
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Serum Albumin
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biosynthesis
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genetics
8.Purification and activity assay of HSA-AX15 (R13K) fusion protein expressed in Pichia pastoris.
Hong-Liang ZHAO ; Chong XUE ; Xiang-Hua XIONG ; Wei ZHANG ; Bing-Fen YANG ; Zhi-Min LIU
Chinese Journal of Biotechnology 2005;21(2):254-258
To increase the in vivo half-life of human CNTF mutein AX15 (R13K), HSA-AX15 (R13K) fusion protein was constructed by the fusion of the C-terminus of HSA to the N-terminus of AX15 (R13K) via an 11 amino acids linker. HSA-AX15 (R13K) fusion protein was purified to homogeneity by cation exchange chromatography, reverse phase chromatography and gel filtration after expressed in pichia pastoris. TF-1 cell survival bioassay showed the biological activity of AX15 (R13K) was not affected by the fusion to HSA. It was demonstrated that tertian injection of 4.8 mg/kg HSA-AX15 (R13K) fusion protein could produce more potent anti-obesity effects on KM mice than daily injection of 1.6 mg/kg AX15 (R13K). The long-acting form of hCNTF variant has the potential to reduce discomfort by requiring fewer injections and to minimize the side-effects by decreasing the dosage and fluctuation of plasma concentration, and thus has superior clinical application.
Animals
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Ciliary Neurotrophic Factor
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genetics
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Humans
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Mice
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Mutant Proteins
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biosynthesis
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genetics
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Pichia
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genetics
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metabolism
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Recombinant Fusion Proteins
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biosynthesis
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genetics
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isolation & purification
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Serum Albumin
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genetics
9.A Pichia pastoris with alpha-1, 6-mannosyltransferases deletion and its use in expression of HSA/GM-CSF chimera.
Yue WANG ; Xin GONG ; Shao-Hong CHANG ; Bo LIU ; Miao SONG ; Hai-Hua HUANG ; Jun WU
Chinese Journal of Biotechnology 2007;23(5):907-914
Yeast is a widely used host for recombinant protein expression. However, glycoproteins derived from yeast contain N-glycan of high mannose type and are usually hyperglycosylated. alpha-1,6-mannosyltransferases gene (och1) encodes the enzyme that initiates the first step of out-chain elongation of high mannose type N-glycan in yeast, which is different from that in human. So, a high efficient method to knockout target gene by two-step recombination was established and was used to delete och1. In the first recombinant, a plasmid with och1::ADE1 and ura3 gene was linearized in the downstream of och1 and inserted to the och1 site of P. pastoris genome, where the upstream and downstream of och1 were duplicated. In the second recombinant, the duplicated fragments of och1 were exchanged and the och1 deletion strains were selected on the plates containing 5-FOA, but no adenine. Then the och1 deletion strain was applied to express an human serum albumin (HSA) granulocyte-macrophage colony-stimulating factor (GM-CSF) chimera. Different with the hyperglycosylated HSA/GM-CSF chimera expressed in wild type P. pastoris, the chimera expressed in the och1 deletion strain, contained smaller N-glycan. The results suggested that the och1 mutant yeast may be more suitable for production of recombinant glycoproteins. And the och 1 deletion strain could be used for further re-engineering to produce complex human glycoproteins.
Chimera
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Gene Deletion
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Gene Knockout Techniques
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Granulocyte-Macrophage Colony-Stimulating Factor
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biosynthesis
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genetics
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Mannosyltransferases
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genetics
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Pichia
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enzymology
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genetics
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metabolism
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Recombinant Fusion Proteins
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biosynthesis
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genetics
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Serum Albumin
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biosynthesis
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genetics
10.Expression in Pichia pastoris and properties of human serum albumin-interferon alpha2b chimera.
Shao-Hong CHANG ; Xin GONG ; Zhi-Yu YANG ; Tong-Ying WANG ; Guo-Chang MA ; Qing-Jun MA ; Jun WU
Chinese Journal of Biotechnology 2006;22(2):173-179
To reduce the serum clearance of interferon alpha2b, a chimeric gene encoding an human serum albumin(HSA)--human interferon alpha2b(IFNalpha2b) fusion protein was overexpressed in Pichia pastoris. After fermentation in a 5L bioreactor, the fusion protein, capable of cross-reacting with anti-IFN alpha and anti-HSA antibody, was purified from the culture of the recombinant yeast by ultrafiltration, blue Sepharose affinity, phenyl hydrophobic interaction and Q ion exchange chromatography. Its IFNa2b moiety exhibits antiviral activity similar to that of recombinant human IFNa2b. In Cynomolgus monkeys model, The fusion protein was detectable in plasma, even 336h after a single does of 90 microg/kg injection intravenously or subcutaneously. The elimination phase half-life of the fusion protein was 101h after intravenous injection and 68.2h after subcutaneous injection. Its Subcutaneous bioavailability was 67.9%. The enhanced pharmacokinetics of interferon a2b fused to human serum albumin suggest its promissing application in clinic medicine.
Animals
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Bioreactors
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microbiology
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Fermentation
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Humans
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Interferon-alpha
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biosynthesis
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genetics
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Macaca fascicularis
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Pichia
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genetics
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metabolism
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Recombinant Fusion Proteins
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biosynthesis
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genetics
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pharmacokinetics
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Recombinant Proteins
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Serum Albumin
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biosynthesis
;
genetics