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1.
聚乙二醇对菠萝蛋白酶的化学修饰   总被引:5,自引:0,他引:5  
方法:用琥珀酸酐法活化的聚乙二醇对菠萝蛋白酶进行化学修饰,得到菠萝蛋白酶的修饰酶,对比研究三种菠萝蛋白酶:修饰酶、混合酶、天然酶的热稳定性及酸碱稳定性,考察金属离子对三种菠萝蛋白酶的影响。结果:当在55℃水浴保温100min后天然酶活力只保留20%,混合酶活力保留37%,修饰酶活力保留58%;在pH3.0-4.5及pH6.0-7.0的条件下,修饰酶活力高于天然酶活力。当Ca2 的浓度达到0.05mg/mL时,修饰酶的活力高达257.66%;当Mg2 的浓度达到0.035mg/mL时,修饰酶的活力高达147.25%。一价离子Na 对三种菠萝蛋白酶无明显影响。结论:修饰的菠萝蛋白酶对温度和pH值的稳定性均比天然酶有很大程度的提高。混合酶的活力介于天然酶和修饰酶之间说明聚乙二醇对菠萝蛋白酶有一定的保护作用。二价离子Ca2 、Mg2 对三种菠萝蛋白酶活力均有不同程度的激活作用。  相似文献   

2.
牛血清白蛋白对超氧化物歧化酶的化学修饰   总被引:3,自引:0,他引:3  
目的:通过化学修饰提高超氧化歧化酶(SOD)的稳定性,考察金属离子在不同浓度下对SOD活性的影响。方法:用戊二醛作为交联剂,用牛血清白蛋白(BSA)将牛红细胞超氧化物歧化酶进行化学修饰,得到SOD的修饰酶。对比研究三种SOD:修饰酶,混合酶及天然酶的理化性质。结果:修饰酶等电点降低,对温度、pH的稳定性较天然酶有很大提高,对胰蛋白酶和胃蛋白酶也表现出很强的耐水解性。二价离子Mg^2 、Mn^2 对天种SOD活力均有不同程度的抵制作用,Ca^2 、Zn^2 、Cu^2 对修饰酶活力有激活作用,一价离子K^ 对三种OSD活力均无明显影响.结论:修饰酶较天然酶的稳定性有很大的提高,加入Ca^2 、Zn^2 、Cu^2 可提高修饰酶的活力。  相似文献   

3.
α-半乳糖苷酶进行氨基酸组分分析,结果为含有较多的酸性及巯水性氨基酸,较少的组氨酸、酪氨酸及半胱氨酸。 用几种蛋白质侧链修饰试剂对α-半乳糖苷酶进行化学修饰。在一定条件下,当巯基及酪氨酸残基分别被NEM、IAA及NAI修饰后,酶活力不受影响,说明这些基团与活力无关。当羟基、组氨酸及色氨酸残基分别被EDC、DEP、NBS及HNBB修饰后,酶活力大幅度下降,说明这些基团或者参与了酯催化作用或者位于酯活性位区附近。  相似文献   

4.
棕榈酰化超氧化物歧化酶的制备及性质研究   总被引:3,自引:0,他引:3  
为了增强超氧化物歧化酶的稳定性,用棕榈酸对其进行了修饰,在修饰条件下,酶分子表面氨基修饰率为55%时,酶的活力回收为63%。修饰后的酶在耐热、耐酸、耐碱、抗有机溶剂变性和抗蛋白水解能力上均高于天然超氧化物歧化酶,为将超氧化物歧化酶作成实用药物和进一步扩大其应用范围创造了条件。  相似文献   

5.
尿卟啉原Ⅲ脱羧酶是植物血红素和叶绿素合成的一个关键调控酶。对生玉米叶片中叶绿素含量较比互生玉米高。对生玉米幼苗经硫酸铵分级沉淀,DEAE Sepharose CL-6B、Sephacryl S-200、羟基磷灰石和B lueSepharose CL-6B层析,纯化了尿卟啉原脱羧酶。纯化倍数为1 060倍,得率约8%,比活约880 U/mg蛋白。纯化的UROD在SDS/PAGE显示一条带,亚基分子量约为40 kD,Sephacryl S-300测得全酶分子量约为55 kD。IEF-PAGE显示UROD为一条带,等电点约为6.0,酶的最适pH值约7.0,在55℃下保温12 m in,酶活力丧失90%,在100 mm ol/L的巯基乙醇下,UROD的酶活力提高7倍。体外5 mm ol/L的磷酸吡哆醛修饰显示UROD活力下降约30%。  相似文献   

6.
将棕色固氮菌230含铁超氧化物歧化酶对8mol/L脲,10mmol/L EDTA透析制备无活性缺辅基蛋白;将其在8mol/L脲中对10mmol/L硫酸亚铁铵透析得到重组超氧化物歧化酶。重组酶含有与天然酶相近的铁含量,活性为天然酶的89.1%。缺辅基蛋白,重组酶与天然酶都是由二个相同的亚基组成;重组酶的吸收光谱与荧光光谱与天然酶几乎一样,而缺辅基蛋白则有较大的差异;从园二色谱的分析得知,缺辅基蛋白不含有α—螺旋,而天然酶和重组酶中α螺旋的含量分别为21%和20%;缺辅基蛋白比天然酶或重组酶具有更大的巯基反应性。  相似文献   

7.
一种双亲有机化合物聚苯乙烯马来酸丁酯(SMA)经酰胺键与重组人铜锌超氧化物歧化酶(rhCu/Zn SOD)共价交联,制得修饰酶.当42%游离氨基被修饰时,保留酶活力为88%.酶蛋白主链结构在修饰前后变化不大.与天然酶相比,修饰酶的生物半衰期延长了22倍,抗蛋白水解酶能力亦有所增强.  相似文献   

8.
在甲醇酵母Pichia pastoris胞内表达有活性的辣根过氧化物酶   总被引:5,自引:0,他引:5  
为了开辟在甲醇酵母 Pichia pastoris中表达 HRP的新途径 ,将编码成熟 HRP同功酶 C基因克隆到表达载体 p PIK3.5K中 .p PIK3.5KHRP转化 GS1 1 5后 ,用 PCR筛选阳性 P.pastoris重组株 ,并用甲醇进行诱导 . Western印迹杂交分析表明目标蛋白 (约为 38k D)能被天然 HRP的多克隆抗体所识别 ,因此活性辣根过氧化物酶已在 P.pastoris胞内表达 .筛选菌株中显示了明显的过氧化物酶活性 ,同时诱导过程中血红素和 Ca Cl2 的加入对过氧化物酶的活力影响不大  相似文献   

9.
选取氯化1-羧甲基-3-甲基咪唑、氯化1-羧甲基-3-乙基咪唑、氯化1-羧甲基-3-丁基咪唑3种离子液体对猪胰脂肪酶(PPL)进行化学修饰,得到3种修饰的脂肪酶分别命名为PPL-M、PPL-E、PPL-B。以三乙酸甘油酯水解为模型反应,考察离子液体修饰前后PPL的活力、热稳定性、耐有机溶剂性等酶学性质,并通过紫外光谱研究修饰对PPL空间结构的影响。结果表明:修饰后PPL的活力明显提高,对温度和pH的敏感度降低。修饰酶的热稳定性明显提高,在高浓度的甲醇及N,N-二甲基甲酰胺(DMF)中仍能保持游离酶活力的100%。修饰后酶的特征吸收峰发生红移,吸收强度增强,修饰后酶的微环境发生了改变。  相似文献   

10.
一种双亲有机化合物聚苯乙烯马来酸丁酯(SMA)经酰胺键与重组人铜锌超氧化物歧化酶(rhCu/ZnSOD)共价交联,制得修饰酶,当42%游离氨基被修饰时,保留酶活力为88%。酶蛋白主链结构在修饰前后变化不大。与天然酶相比,修饰酶的生物半衰期延长了22倍,抗蛋白水解酶能力亦有所增强。  相似文献   

11.
The effects of modification of heme carboxylic groups by omega-aminoenantic acid and L-phenylalamine on the peroxidase activity of hemoglobin were studied. For this purpose the peroxidase activities of the original compounds--hemin, hemin-aminoenantic acid, hemin-phenylalanine and hemoglobins prepared from the hemin and globin compounds--hemoglobin, aminoenantyl-hemoglobin and phenylalanine hemoglobin--were determined. The dependence of the peroxidase activity of these compounds on their concentrations and pH was analyzed. It was shown that 40--50% modification of the heme carboxylic groups by amino acids decreases the peroxidase activity of the modified hemins and that of modified hemoglobins reconstructed from these hemins and globin. A decrease of the catalytic activity of the hemoglobin derivatives is due to a lower peroxidase activity (as compared to hemin) of the modified hemins. It is thus concluded that the amino acid modification of the carboxylic groups of heme does not affect the heme-protein interactions in the hemoglobin molecule.  相似文献   

12.
The x-ray crystal structure of Synechocystis hemoglobin has been solved to a resolution of 1.8 A. The conformation of this structure is surprisingly different from that of the previously reported solution structure, probably due in part to a covalent linkage between the heme 2-vinyl and His117 that is present in the crystal structure but not in the structure solved by NMR. Synechocystis hemoglobin is a hexacoordinate hemoglobin in which the heme iron is coordinated by both the proximal and distal histidines. It is also a member of the "truncated hemoglobin" family that is much shorter in primary structure than vertebrate and plant hemoglobins. In contrast to other truncated hemoglobins, the crystal structure of Synechocystis hemoglobin displays no "ligand tunnel" and shows that several important amino acid side chains extrude into the solvent instead of residing inside the heme pocket. The stereochemistry of hexacoordination is compared with other hexacoordinate hemoglobins and cytochromes in an effort to illuminate factors contributing to ligand affinity in hexacoordinate hemoglobins.  相似文献   

13.
α and β chains of hemoglobin have been modified with cobalt(II) tetrasulfonated phthalocyanine in place of heme. They display properties very similar to those of iron(II) phthalocyanine modified α and β chains. Mixed together they form tetrameric cobalt(II) phthalocyanine hemoglobin.Incorporation of Co(II)L into α and β globins results in stabilization of the protein structure, which is shown by a marked increase in its helicity content. Cobalt phthalocyanine substituted α and β chains are able to combine reversibly with oxygen giving more stable oxygenated species than their native analogues. The rate of both processes is lower in the case of the modified α chain. Recombination of the phthalocyanine α and β chains with the alternate heme containing chains give tetrameric hybrid hemoglobins. These comprise two phthalocyanine modified subunits and two heme containing subunits. The helicity content of the tetrameric hybrid hemoglobin calculated for one subunit is lower that the arithmetic mean of helicities for its isolated subunits. This suggests a destabilizing chain-chain interaction within the tetramer. Unlike in the separated subunits, oxygen binding by hybrid hemoglobins is irreversible. Deoxygenation by argon bubbling leads to the formation of inactive species which in oxygen atmosphere undergo irreversible oxidation with destruction of the complex.  相似文献   

14.
The heme iron in human adult hemoglobin modified by both pyridoxal-5'-phosphate and glutaraldehyde was characterized by M?ssbauer spectroscopy and compared with non-modified hemoglobin. M?ssbauer spectra of the samples were measured at 87 and 295 K (1yophilized form) and at 87 K (frozen solution). The values of quadrupole splitting for the oxy-form of modified hemoglobin were found to be lower than those of the oxy-form of hemoglobin without modifications in lyophilized form and frozen solution, respectively. On the other hand, the values of quadrupole splitting for the deoxy-form of modified and non-modified hemoglobins in frozen solution were the same. The M?ssbauer spectra of the oxy-form of modified hemoglobin were also analyzed in terms of the heme iron non-equivalence in alpha- and beta-subunits of tetramer. The differences of the tendencies of temperature dependencies of quadrupole splitting for the oxy-form of modified and non-modified hemoglobins in lyophilized form were shown. These results indicated that the heme iron electronic structure and stereochemistry were changed in the oxy-form of pyridoxylated hemoglobin cross-linked by glutaraldehyde.  相似文献   

15.
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   

16.
The reason for the presence of hemoglobin-like molecules in insects, such as Drosophila melanogaster, that live in fully aerobic environments has yet to be determined. Heme endogenous hexacoordination (where HisE7 and HisF8 axial ligands to the heme Fe atom are both provided by the protein) is a recently discovered mechanism proposed to modulate O(2) affinity in hemoglobins from different species. Previous results have shown that D. melanogaster hemoglobin 1 (product of the glob1 gene) displays heme endogenous hexacoordination in both the ferrous and ferric states. Here we present kinetic data characterizing the exogenous cyanide ligand binding process, and the three-dimensional structure (at 1.4 A resolution) of the ensuing cyano-met D. melanogaster hemoglobin. Comparison with the crystal structure of the endogenously hexacoordinated D. melanogaster hemoglobin shows that the transition to the cyano-met form is supported by conformational readjustment in the CD-D-E region of the protein, which removes HisE7 from the heme. The structural and functional features of D. melanogaster hemoglobin are examined in light of previous results achieved for human and mouse neuroglobins and for human cytoglobin, which display heme endogenous hexacoordination. The study shows that, despite the rather constant value for cyanide association rate constants for the ferric hemoproteins, different distal site conformational readjustments and/or heme sliding mechanisms are displayed by the known hexacoordinate hemoglobins as a result of exogenous ligand binding.  相似文献   

17.
The nonsymbiotic tomato hemoglobin SOLly GLB1 (Solanum lycopersicon) is shown to form a homodimer of approximately 36 kDa with a high affinity for oxygen. Furthermore, our combined ultraviolet/visible, resonance Raman, and continuous wave electron paramagnetic resonance (EPR) measurements reveal that a mixture of penta- and hexacoordination of the heme iron is found in the deoxy ferrous form, whereas the ferric form shows predominantly a bis-histidine ligation (F8His-Fe(2+/3+)-E7His). This differs from the known forms of vertebrate hemoglobins and myoglobins. We have successfully applied our recently designed pulsed-EPR strategy to study the low-spin ferric form of tomato hemoglobin. These experiments reveal that, in ferric SOLly GLB1, one of the histidine planes is rotated 20 degrees (+/-10 degrees ) away from a N(heme)-Fe-N(heme) axis. Additionally, the observed g-values indicate a quasicoplanarity of the histidine ligands. From the HYSCORE (hyperfine sublevel correlation) measurements, the hyperfine and nuclear quadrupole couplings of the heme and histidine nitrogens are identified and compared with known EPR/ENDOR data of vertebrate Hbs and cytochromes. Finally, the ligand binding kinetics, which also indicate that the ferrous tomato Hb is only partially hexacoordinated, will be discussed in relation with the heme-pocket structure. The similarities and differences with other known nonsymbiotic plant hemoglobins will be highlighted.  相似文献   

18.
Sickle hemoglobin (Hb S) was cross-linked by two types of bifunctional imidoesters, dimethyladipimidate (DMA) and dimethyl-3,3'-dithiobispropionimidate (DTBP). These modified hemoglobins were separated into monomer, dimer and polymer fractions by gel filtration. All of these modified hemoglobins showed extremely left-shifted oxygen equilibrium curves with no cooperativity. The stabilities of these hemoglobins were also decreased. The solubilities of these modified hemoglobins in high-phosphate buffers were lower than those of native Hb S. Studies on the kinetics of the aggregation of these modified hemoglobins showed that intracross-linked Hb S with DMA and DTBP (DMA- and DTBP-modified monomeric Hb S) still retained the capability of aggregation with a delay time, while intercross-linked Hb S with DMA and DTBP (DMA- and DTBP-modified oligomeric Hb S) aggregated without a delay time. When the kinetics of aggregation was measured for mixtures of modified and native deoxy-Hb S, DMA-modified monomeric deoxy-Hb S shortened the delay time prior to aggregation of native deoxy-Hb S. The other modified deoxy-Hb S did not affect the delay time, suggesting that these modified oligomeric hemoglobins neither participate in the formation of nuclei nor copolymerize with native deoxy-Hb S.  相似文献   

19.
The blood hemoglobin of the sea lamprey presents a curious mixture of primitive and highly specialized properties. Like muscle hemoglobin, it has a molecular weight of about 17,000, and apparently contains a single heme. Its isoelectric point is like that of a typical invertebrate hemoglobin. Its amino acid composition is partly characteristic of invertebrate) partly of vertebrate hemoglobins (Pedersen; Roche and Fontaine). In the present experiments, the oxygen equilibrium curve of this pigment was measured at several pH's. As expected, it is a rectangular hyperbola, the first such function to be observed in a vertebrate blood hemoglobin. Other hemoglobins known to possess this type of oxygen dissociation curve—those of vertebrate muscle, the worm Nippostrongylus, and the bot-fly larva—appear to serve primarily the function of oxygen storage rather than transport. Lamprey hemoglobin on the contrary is an efficient oxygen-transporting agent. It achieves this status by having, unlike muscle hemoglobin, a relatively low oxygen affinity, and a very large Bohr effect. In these properties it rivals the most effective vertebrate blood hemoglobins.  相似文献   

20.
Using high resolution proton NMR spectroscopy, we have investigated 10 human hemoglobin variants modified in the proximal side of the heme pocket in beta subunits. Comparative observation of several resonances in the spectra of liganded and unliganded hemoglobins allowed us to characterize the localization and nature of the structural perturbations induced by amino acid substitutions or chemical modification. The present data indicate that the structural perturbations are localized in the beta subunits, mainly in the tertiary domain surrounding the modification site. Analysis of the aromatic region of the liganded hemoglobin spectra gives substantial information for the assignment of the His-beta 97 C-2H resonance. Correlation of the spectroscopic observations with the functional characteristics of the studied hemoglobins demonstrates that structural factors localized in the proximal side of the heme pocket can control the ligand-iron interaction taking place on the other heme side. The structural perturbations induced by the modifications in the F or FG segments of the beta subunits do not extend to the distal side but rather to the alpha 1 beta 2 interface. This argues the existence of a gradient of tertiary structural stability, indicating a possible structural pattern of heme-heme interaction in the cooperativity control.  相似文献   

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