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1.
The 1855-nucleotide long DNA sequence of part of the gene cluster for the proton-translocating ATPase from E. coli was determined by the method of Maxam-Gilbert. The sequence covers the genes for the β and ε subunits of F1 along with the flanking region. The amino acid sequence of these subunits deduced from the nucleotide sequence indicates that the β and ε subunits have 459 and 138 amino acids, respectively. The possible secondary structure of the both subunits was estimated from the deduced primary structures. A possible nucleotide binding site in the β subunit is also discussed on the basis of the primary and secondary structures. The codons used in the genes for all the components of F1F0 were different in different genes, suggesting that the amount of each subunit in the F1F0 is determined to some extent on a translational level.  相似文献   

2.
The 1763 nucleotide-long-DNA sequence of part of the gene cluster for the proton-translocating ATPase from E. coli was determined. The sequence covers the genes for the a and b subunits of F0 along with the intercistronic regions. In the region preceding the gene for the a subunit, a reading frame encompassing 127 amino acids was found. The primary structure of the a and b subunits were deduced and the properties of these proteins were predicted. Analysis of codon usage in these genes was made.  相似文献   

3.
ATPase was reconstituted from mixtures of isolated subunits of coupling factor, F1 ATPase of E. coli (EF1) and thermophilic bacterium PS3 (TF1); ability to hydrolyze ATP was attained from the combination of α and β subunits from EF1 and γ subunit from TF1, α and β from TF1 and γ from EF1, and α and γ from EF1 and β from TF1. The β subunit of TF1 also could complement the EF1 from an E. coli mutant defective in this subunit. This is the first demonstration of interspecies in vitro recombination of ATPase activity from isolated subunits.  相似文献   

4.
A method to separate phycoerythrin 545, isolated from the cryptomonad alga, Rhodomonaslens, into two subunits has been developed. The method uses no denaturants (urea, guanidine, detergent) but relies on dissociation of the dimeric protein and subsequent aggregation of the β subunit at pH 3.0. The absorption spectra and amino acid composition of the subunits are presented. The spectra of the α subunit was red-shifted relative to β in both pH 3.0 buffer and in acidic 8.0 M urea.  相似文献   

5.
Wenjun Zheng 《Proteins》2009,76(3):747-762
F1 ATPase, a rotary motor comprised of a central stalk ( γ subunit) enclosed by three α and β subunits alternately arranged in a hexamer, features highly cooperative binding and hydrolysis of ATP. Despite steady progress in biophysical, biochemical, and computational studies of this fascinating motor, the structural basis for cooperative ATPase involving its three catalytic sites remains not fully understood. To illuminate this key mechanistic puzzle, we have employed a coarse‐grained elastic network model to probe the allosteric couplings underlying the cyclic conformational transition in F1 ATPase at a residue level of detail. We will elucidate how ATP binding and product (ADP and phosphate) release at two catalytic sites are coupled with the rotation of γ subunit via various domain motions in α 3 β 3 hexamer (including intrasubunit hinge‐bending motions in β subunits and intersubunit rigid‐body rotations between adjacent α and β subunits). To this end, we have used a normal‐mode‐based correlation analysis to quantify the allosteric couplings of these domain motions to local motions at catalytic sites and the rotation of γ subunit. We have then identified key amino acid residues involved in the above couplings, some of which have been validated against past studies of mutated and γ ‐truncated F1 ATPase. Our finding strongly supports a binding change mechanism where ATP binding to the empty catalytic site triggers a series of intra‐ and intersubunit domain motions leading to ATP hydrolysis and product release at the other two closed catalytic sites. Proteins 2009. © 2009 Wiley‐Liss, Inc.  相似文献   

6.
7.
The pig intestinal intrinsic factor receptor has been isolated and dissociated into its α and β subunits. The β subunit was found to be more hydrophobic than the α subunit. In a detergent solution only the α subunit was accessible to digestion with papain. The whole isolated receptor was introduced into artificial single bilayer liposomes where is apparently was randomly oriented. Liposomes containing the receptor were digested with papain and the polypeptide segments that stayed in the lipid fraction were extracted and analyzed using sodium dodecyl sulfate polyacrylamide gel electrophoresis. Four species were found with Mr values of 23 000, 45 000, 70 000 and 86 000.  相似文献   

8.
9.
《Phytochemistry》1986,26(1):41-45
The soybean seed 7S globulin subunits, i.e. α, α′, β and γ-subunits of β-conglycinin, the γ-conglycinin subunit and the HI/HII and LII subunits of basic 7S globulin were purified and the NH2-terminal amino acid sequences of all these subunits except the γ-subunit of β-conglycinin were determined. Only the NH2-terminal regions of the α and α′-subunits showed high sequence homology. However, sequencing of tryptic peptides from the seven subunits revealed that internal region sequences were highly homologous among the four subunits of β-conglycinin. In contrast to the β-conglycinin subunits, no sequence homology was found among the other subunits. On the basis of these results, the major 7S globulin fraction is considered more heterogeneous in primary structure than another major globulin fraction, 11S globulin (glycinin), in soybean seeds.  相似文献   

10.
Phosphorylase kinase (PhK), a 1.3 MDa regulatory enzyme complex in the glycogenolysis cascade, has four copies each of four subunits, (αβγδ)4, and 325 kDa of unique sequence (the mass of an αβγδ protomer). The α, β and δ subunits are regulatory, and contain allosteric activation sites that stimulate the activity of the catalytic γ subunit in response to diverse signaling molecules. Due to its size and complexity, no high resolution structures have been solved for the intact complex or its regulatory α and β subunits. Of PhK's four subunits, the least is known about the structure and function of its largest subunit, α. Here, we have modeled the full‐length α subunit, compared that structure against previously predicted domains within this subunit, and performed hydrogen‐deuterium exchange on the intact subunit within the PhK complex. Our modeling results show α to comprise two major domains: an N‐terminal glycoside hydrolase domain and a large C‐terminal importin α/β‐like domain. This structure is similar to our previously published model for the homologous β subunit, although clear structural differences are present. The overall highly helical structure with several intervening hinge regions is consistent with our hydrogen‐deuterium exchange results obtained for this subunit as part of the (αβγδ)4 PhK complex. Several low exchanging regions predicted to lack ordered secondary structure are consistent with inter‐subunit contact sites for α in the quaternary structure of PhK; of particular interest is a low‐exchanging region in the C‐terminus of α that is known to bind the regulatory domain of the catalytic γ subunit.  相似文献   

11.
ATPase activity was restored to the inactive coupling factor, F1ATPase, of Escherichia coli strain AN120 (uncA401) by reconstitution of the dissociated complex with an excess of wild-type α subunit. Large excesses of α gave the highest levels of activity. The other subunits which are required for the reconstitution of ATPase activity, β and γ, did not complement the mutant enzyme. These results indicate that the α polypeptide of the AN120 ATPase is defective.  相似文献   

12.
The genes encoding the periplasmic [Fe] hydrogenase from Desulfovibrio vulgaris subsp. oxamicus Monticello were cloned by exploiting their homology with the hydAB genes from D. vulgaris subsp. vulgaris Hildenborough, in which this enzyme is present as a heterologous dimer of alpha and beta subunits. Nucleotide sequencing showed that the enzyme is encoded by an operon in which the gene for the 46-kilodalton (kDa) alpha subunit precedes that of the 13.5-kDa beta subunit, exactly as in the Hildenborough strain. The pairs of hydA and hydB genes are highly homologous; both alpha subunits (420 amino acid residues) share 79% sequence identity, while the unprocessed beta subunits (124 and 123 amino acid residues, respectively) share 71% sequence identity. In contrast, there appears to be no sequence homology outside these coding regions, with the exception of a possible promoter element, which was found approximately 90 base pairs upstream from the translational start of the hydA gene. The recently discovered hydC gene, which may code for a 65.8-kDa fusion protein (gamma) of the alpha and beta subunits and is present immediately downstream from the hydAB genes in the Hildenborough strain, was found to be absent from the Monticello strain. The implication of this result for the possible function of the hydC gene product in Desulfovibrio species is discussed.  相似文献   

13.
Three chromophoric peptides have been isolated and characterized from tryptic digests of the α subunit of C-phycocyanin from Oscillatoria,agardhii. The amino acid sequences revealed that one phycocyanobilin was ester bond by a tyrosine residue, and another was most probably attached by a thioether linkage. Structural studies of the third chromophoric peptide gave no evidence of how the phycocyanobilin was attached.  相似文献   

14.
F1-ATPase was isolated from yeast S.cerevisiae. The constituent subunits 1 and 2 were purified by gel permeation chromatography, and their amino acid compositions determined. Both subunits have a similar composition except for 12 cystine, methionine, leucine, histidine, and tryptophan. When F1 is treated for three hours with 5′-p-[3H]fluorosulfonylbenzoyl adenosine in dimethylsulfoxide, 90% of the activity is lost. Disc gel electrophoresis of the modified complex showed that over 90% of the label was associated with subunit 2. A labelled peptide from a S.aureus digest of subunit 2 was isolated and sequenced. It had the following amino acid sequence: His-Try1-Asp-Val-Ala-Ser-Lys-Val-Gln-Glu, whereby Tyr1 is the modified amino acid residue. This sequence shows homology to other sequences obtained from maize, beef heart, and E.coli F1-ATPases.  相似文献   

15.
The structural gene of the Paracoccus denitrificans NADH-ubiquinone oxidoreductase encoding a homologue of the 75-kDa subunit of bovine complex I (NQO3) has been located and sequenced. It is located approximately 1 kbp downstream of the gene coding for the NADH-binding subunit (NQO1) [Xu, X., Matsuno-Yagi, A., and Yagi, T. (1991) Biochemistry 30, 6422-6428] and is composed of 2019 base pairs and codes for 673 amino acid residues with a calculated molecular weight of 73,159. The M(r) 66,000 polypeptide of the isolated Paracoccus NADH dehydrogenase complex is assigned the NQO3 designation on the basis of N-terminal protein sequence analysis, amino acid analysis, and immuno-cross-reactivity. The encoded protein contains a putative tetranuclear iron-sulfur cluster (probably cluster N4) and possibly a binuclear iron-sulfur cluster. An unidentified reading frame (URF3) which is composed of 396 base pairs and possibly codes for 132 amino acid residues was found between the NQO1 and NQO3 genes. When partial DNA sequencing of the regions downstream of the NQO3 gene was performed, sequences homologous to the mitochondrial ND-1, ND-5, and ND-2 gene products of bovine complex I were found, suggesting that the gene cluster carrying the Paracoccus NADH dehydrogenase complex contains not only structural genes encoding water-soluble subunits but also structural genes encoding hydrophobic subunits.  相似文献   

16.
The subunits of human pituitary thyrotropin have been separated and purified by countercurrent distribution and exclusion chromatography. The NH2-terminal sequence of the β subunit is identical to that of the β subunit of bovine thyrotropin. However, amino acid composition and peptide map of tryptic and chymotryptic digests as well as compositions of tryptic and chymotryptic peptides suggest that the amino acid sequence of the α subunit is identical to that of the α subunit of human interstitial cell stimulating hormone.  相似文献   

17.
Bacteriophage G4 has the same AB and DE overlapping gene systems as φX174 and together with the A and CK overlapping gene system (Shaw et al., 1978), 7 of the 11 G4 and φX174 genes are involved in overlaps. The nucleotide differences between G4 and φX174 in the overlapping portions of the A, C and D genes are 23%, 27% and 21%, respectively, compared with 32%, 36% and 34% in the non-overlapping portions of the same genes. The amino acid differences between the G4 and φX174 overlapping B, K and E proteins, are 44%, 39% and 44%, respectively, compared with 28%, 26% and 16% in the regions of genes A, A and C, and D which contain genes B, K and E. These results suggest that the nucleotide sequences of overlapping genes evolve at almost the same rate as in non-overlapping genes, and that this is made possible by a lower amino acid sequence stringency of one of the pairs of proteins. The overlapping DE and A and CK gene systems may have originated by taking advantage of a high incidence of T nucleotides in the second codon position to produce a hydrophobic protein and the AB gene system may have evolved by read-through of the A gene into the B gene. From the nucleotide sequences, other overlapping genes appear to be possible in these bacteriophages.  相似文献   

18.
The β and γ subunits of the Fo·Fl-ATP synthase complex of Rhodospirillum, rubrum chromatophores were removed in two consecutive steps. The resulting depleted chromatophores lost all their ATP synthesizing activity but retained 70% of the light-induced proton uptake. ATP synthesis could be restored by reattachment of the isolated β and γ subunits together, but not of either one of them separately. These data suggest that the γ and β subunits are required for the operation of the chromatophore ATP synthase, but do not seem to participate in the light-induced proton uptake.  相似文献   

19.
20.
DNA sequence of the tryptophan synthase genes of Pseudomonas putida   总被引:6,自引:0,他引:6  
I P Crawford  L Eberly 《Biochimie》1989,71(4):521-531
Genes encoding the 2 subunits of tryptophan synthase in Pseudomonas putida have been identified and cloned by their similarity to the corresponding genes in Pseudomonas aeruginosa. The deduced amino acid sequences were confirmed by comparison with regions ascertained earlier by protein sequencing. The Pseudomonas amino acid sequences are 85% identical for the beta subunit and 70% identical for the alpha subunit. These sequences are compared to those of Salmonella typhimurium, where the structure is known from X-ray crystallography. Although amino acid conservation drops to 54% and 36% for the beta and alpha subunits, only 3 single residue gaps are required to maintain alignment throughout and most of the residues identified as important for catalysis or cofactor binding are conserved. The 23 residues surrounding the beta chain lysine that enters into a Schiff base linkage with the pyridoxal phosphate cofactor are compared in 13 species, including representatives from the eukaryotic and both prokaryotic kingdoms; appreciable conservation is apparent. The approximately 100 base pairs separating the trpB gene from its divergently transcribed activator gene are similar in the 2 pseudomonads, but do not resemble those of any other bacterium or fungus studied to date.  相似文献   

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