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The status of free amino groups in cobrotoxin was studied by stepwise modification with trinitrobenzene sulfonate. Lys-27 was selectively modified without altering the activity of cobrotoxin. However, complete loss of activity was observed when Lys-27 and Lys-47 were trinitrophenylated, suggesting that the epsilon-amino group of Lys-47 is essential for the activity of cobrotoxin. The alpha-amino group of N-terminal leucine had no correlation with activity, demonstrated by the guanidination of the lysine residues with O-methylisourea followed by trinitrophenylation of the alpha-amino group. The carboxyl groups in cobrotoxin were modified with glycine methyl ester after activation with water-soluble carbodiimide. Six out of seven free carboxyls reacted in the absence of guanidine.HCl without altering the biological activity. When the remaining carboxyl was modified in the presence of 5 M guanidine.HCl, the resulting toxin was devoid of activity. This "buried" carboxyl is essential for activity and was identified as the gamma-carboxyl group of Glu-21.  相似文献   

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Modification of carboxyl groups in pepsin   总被引:2,自引:0,他引:2  
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Esterification of the carboxyl groups in wool   总被引:1,自引:0,他引:1       下载免费PDF全文
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Frater R 《FEBS letters》1971,12(4):186-188
The reactivities of carboxyl groups to carbodiimides in non-reduced, S-carboxymethyl, and S-cyanoethyl proteins have been compared. When disulphide bonds are split, a decrease in reactivity was found, relatively minor in the S-carboxymethyl derivative and almost complete loss of reactivities in the S-cyanoethyl derivative.  相似文献   

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The extracellular peroxidase from cultures of Inonotus radiatus and of peanut (Arachis hypogeaL.) cells as well as the mycelial peroxidase from Trametes versicolor were used for studies of immobilizing this protein either by its free amino or its carboxyl groups. The immobilization process was carried out either on keratin proteins derived from feathers or on polyamide coated over silica gel. Coupling was established either through the free amino or carboxyl groups. In general the indolyl-3-acetic acid oxidase activity of fungal peroxidases exceeds that of peanut peroxidase. When the peroxidase of the three sources was immobilized on the matrices by the free amino groups, little if any effect on the IAA oxidase activity could be measured. However, immobilization through the carboxyl groups resulted in a drastic reduction of indole-3-acetic acid oxidase activity. Since identical amounts of peroxidase were linked in all cases, the loss of indolyl-3-acetic acid oxidase activity implies that the carboxyl group is essential for the active site.  相似文献   

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Amphotericin B is a medically important antifungal antibiotic that is also active against human immunodeficiency virus, Leishmania parasites, and prion diseases. The therapeutic use of amphotericin B is restricted by severe side effects that can be moderated by liposomal formulation or structural alteration. Chemical modification has shown that suppression of charge on the exocyclic carboxyl group of amphotericin B substantially reduces toxicity. We report targeted deletions of the amphN cytochrome P450 gene from the chromosome of the amphotericin-producing bacterium Streptomyces nodosus. The mutant strains produced amphotericin analogues in which methyl groups replace the exocyclic carboxyl groups. These compounds retained antifungal activity and had reduced hemolytic activity.  相似文献   

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Guanidinated mercuri-papain (Gu-papain) was reacted with N-ethylbenzisoxazolium tetrafluoroborate at pH 4.2, 0 degree C, to yield highly reactive N-ethylsalicylamide esters. On varying the amount of reagent applied 2.5-10 carboxyl groups were modified. Appropriate plotting of the data indicated that all 12 groups exposed in the X-ray structure were modified to an extent of 80% in the final preparation, concomitant with a similar loss of activity towards N alpha-benzoyl-L-arginine ethyl ester. The preparations regained complete activity on saponification of the ester groups and removal of some oligomeric material by gel filtration. Considerable activity was recovered when the ester groups were completely replaced by amide groups by subjecting the esters to ammonolysis in 2 M ammonium acetate/ammonia (pH 9.2). The final preparation, after gel filtration, exhibited Km = 57 +/- 1 mM and kcat = 26 +/- 0.2 s-1 towards BAEE (native papain Km = 18 mM and kcat = 26 s-1). It may be concluded that replacement of a bulky modifying group by an isosteric one may cause considerable recovery of activity, emphasizing the importance of isostericity in suppressing the ionizing ability of ionizable groups; furthermore, that a large shift in overall charge, caused by amidation of all accessible carboxyl groups, does not affect the catalytic steps. The absence of effect of side-chain charges on the ion pair in the active site is briefly discussed.  相似文献   

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The reactivity of the carboxyl groups of hemoglobin S to form amide bonds with glycine ethyl ester by carbodiimide-activated coupling, and the influence of this derivatization on the functional properties of the protein have been investigated. Incubation of carbonmonoxy or oxyhemoglobin S with 20 mM 1-ethyl-3-(3'-dimethylaminopropyl)carbodiimide in the presence of 100 mM [14C]glycine ethyl ester, at pH 6.0 and 23 degrees C for 1 h resulted in the modification of, on an average, three carboxyl groups of the protein. The Hill coefficient of the modified hemoglobin S was 2.7, indicating normal subunit interactions. The derivatization increased the oxygen affinity of the molecule (the P50 was lowered from 8.0 to 5.0). The derivatization also resulted in an increase in the minimum gelling concentration of hemoglobin S from 16 to 24 g/100 ml. The reaction conditions used for the derivatization of the carboxyl groups of hemoglobin S are very selective for the protein carboxyl groups; very little of the label is associated with the heme carboxyls. Tryptic peptide mapping of the modified hemoglobin S indicated that the peptide beta T5, i.e. the segment representing amino acid residues 41 to 59 of beta-chain, accounted for nearly 75% of the label associated with the globin, demonstrating the high selectivity of the derivatization. Sequence analysis of the derivatized beta T5 demonstrated that at least 65% of the label incorporated into hemoglobin S is targeted toward the carboxyl group of Glu-43(beta), identifying it as the most reactive carboxyl group in hemoglobins. The results suggest that modification of the carboxyl group of hemoglobins S, presumably the gamma-carboxyl of Glu-43(beta), reduces the propensity of deoxyhemoglobin S to polymerize.  相似文献   

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A two-step procedure for introduction of sulfhydryl groups at protein carboxyl groups is described. The resultant proteins contain 2-aminoethanethiol residues bound by amide linkages to the protein carboxyl groups. First an amide bond is formed between a carboxyl group of the protein and one of the amino groups of cystamine. Then the disulfide bond is reduced with dithiothreitol, yielding the amide of 2-aminoethanethiol. This procedure was used to incorporate sulfhydryl groups into carbonic anhydrase and adrenocorticotropic hormone. The effect of carbodiimide concentration and pH of the coupling reaction on stoichiometry of sulfhydryl group incorporation was examined. The method was used to prepare bovine carbonic anhydrase containing up to nine sulfhydryl groups per molecule with no loss of enzymatic activity and biologically active adrenocorticotropic hormone containing one sulfhydryl group per molecule.  相似文献   

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