OXYGEN BINDING AND OTHER PHYSICAL-PROPERTIES OF HUMAN HEMOGLOBIN MADE IN YEAST

被引:36
作者
ADACHI, K [1 ]
KONITZER, P [1 ]
LAI, CH [1 ]
KIM, J [1 ]
SURREY, S [1 ]
机构
[1] UNIV PENN,SCH MED,DEPT HUMAN GENET,PHILADELPHIA,PA 19104
来源
PROTEIN ENGINEERING | 1992年 / 5卷 / 08期
关键词
HEMOGLOBIN-A; OXYGEN-BINDING PROPERTIES; RECOMBINANT HEMOGLOBIN; STABILITY; YEAST EXPRESSION VECTOR;
D O I
10.1093/protein/5.8.807
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Wagenbach et al. (1991, BioTechnology, 9, 57-61) have recently developed a system for producing soluble recombinant tetrameric hemoglobin in yeast: hemoglobin begins to appear 4 - 5 h after induction with galactose, alpha- and beta-globin chains fold in vivo and endogeneously produced heme is incorporated into hemoglobin tetramers. We have further characterized the oxygen-binding properties, as well as the tetramer stability, of recombinant human Hb A made in yeast. After purification by ion-exchange chromatography, a single band at the same position as normal human Hb A was obtained using cellulose acetate electrophoresis. Although the oxy and deoxy forms of purified recombinant Hb A made m yeast were spectrophotometrically identical to native human Hb A, the oxygen-binding curve was shifted slightly left of that for native human Hb A. Further purification of recombinant hemoglobin by FPLC revealed two fractions: one (fraction B) with low cooperativity and high oxygen affinity and the other (fraction A) with almost identical cooperativity and oxygen affinity compared with native human Hb A. The Bohr effect of fraction A was also identical to native human Hb A. Hemoglobin in fraction B with lowered cooperativity precipitated approximately 1.5 times faster than normal human Hb A during mechanical agitation, while hemoglobin in fraction A with normal cooperativity precipitated with kinetics identical to native human Hb A. These results suggest that some of the recombinant molecules made in yeast fold improperly, and that these molecules may exhibit decreased cooperatively for oxygen binding and decreased stability. This system should now allow the evaluation of the folding differences which promote hemoglobin function, and should also provide an efficient system which will facilitate the production of various hemoglobin mutants for studying biochemical and biophysical properties of hemoglobin.
引用
收藏
页码:807 / 810
页数:4
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