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Sökning: WFRF:(Hedhammar Åke) > (2002-2004)

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1.
  • Gräslund, Torbjörn, et al. (författare)
  • Integrated strategy for selective expanded bed ion-exchange adsorption and site-specific protein processing using gene fusion technology
  • 2002
  • Ingår i: Journal of Biotechnology. - : Elsevier BV. - 0168-1656 .- 1873-4863. ; 96:1, s. 93-102
  • Tidskriftsartikel (refereegranskat)abstract
    • The highly charged domain Z(basic) can be used as a fusion partner to enhance adsorption of target proteins to cation exchanging resins at high pH-values. In this paper, we describe a strategy for purification of target proteins fused to Z(basic) at a constant physiological pH using cation exchange chromatography in an expanded bed mode. We show that two proteins, Klenow DNA polymerase and the viral protease 3C, can be efficiently purified from unclarified Escherichia coli homogenates in a single step with a selectivity analogous to what is normally achieved by affinity chromatography. The strategy also includes an integrated site-specific removal of the Z(basic) purification handle to yield a free target protein.
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2.
  • Gräslund, Torbjörn, et al. (författare)
  • Strategy for highly selective ion-exchange capture using a charge-polarizing fusion partner
  • 2002
  • Ingår i: Journal of Chromatography A. - 0021-9673 .- 1873-3778. ; 942:1-2, s. 157-166
  • Tidskriftsartikel (refereegranskat)abstract
    • To achieve efficient recovery of recombinantly produced target proteins using cation-exchange chromatography, a novel basic protein domain is used as a purification handle. The proteolytic instability usually encountered for basic peptide tags is avoided by the use of a highly constrained α-helical domain based on staphylococcal protein A into which positively charged amino acids have been introduced. Here we show that this domain, consisting of 58 amino acids with a calculated isoelectric point (pI) of 10.5, can be used to efficiently capture different fused target proteins, such as a bacterial DNA polymerase (Klenow fragment), a viral protease (3C) and a fungal lipase (Cutinase). In contrast to standard cation-exchange chromatography, efficient capture can be achieved also at a pH value higher than the pI of the fusion protein, demonstrated here by Zbasic-Klenow polymerase (pI≈5.8) and ZZ-Cutinase-Zbasic (pI≈7.2) both purified at a pH of 7.5. These results show that the Zbasic domain is able to confer a regional concentration of positive charge on the fusion protein even at a relatively high pH. Hence, the data suggest that this domain could be used for highly efficient and selective capture of target proteins at conditions where most host-cell proteins do not bind to the chromatographic resin. The obtained purity after this one-step procedure suggests that the strategy could be an alternative to standard affinity chromatography. Methods for site-specific proteolysis of the fusion proteins to release native target proteins are also discussed.
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  • Resultat 1-2 av 2
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Uhlén, Mathias (2)
Hober, Sophia (2)
Gräslund, Torbjörn (2)
Nygren, Per-Åke (2)
Hedhammar, My (2)
Ehn, Maria (1)
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