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S Stevanovic

Publications and source records attributed to S Stevanovic.

44 records · Page 3Linked to original sources

In vivo conversion of L-serine to D-alanine in a ribosomally synthesized polypeptide.

In the course of characterizing the bacteriocin lactocin S and its encoding gene, we discovered three alanine-for-serine substitutions which, apparently, is a violation of the genetic code. Subsequent chiral analysis of lactocin S hydrolysates revealed a correlation between D-alanine content and the three substitutions, implying a conversion of L-serine to D-alanine in lactocin S maturation. In order to explain this observation, we suggest a sequence of events initiated by the dehydration of serine, which is common in the biosynthesis of the lanthionine-containing polycyclic lantibiotics (Schnell, N., Entian, K.-D., Schneider, U., Götz, F., Zähner, H., Kellner, R. & Jung, G. (1988) Nature 333, 276-278; Jung, G. (1991) Angew, Chem. Int. Ed. Engl. 30, 1051-1068; Bierbaum, G. & Sahl, H.-G. (1993) Zentralbl. Bakteriol. 278, 1-22) and completed by the stereospecific reduction of dehydroalanine residues. The occurrence of non-lanthionine alpha-carbon stereoinversion in lactocin S maturation substantiates the hypothetical alpha-epimerization scheme originally put forward by Bycroft (Bycroft, B. W. (1969) Nature 224, 595-597), and we propose a revision of this model to accommodate the lactocin S-type stereoinversion. Lactocin S is the first prokaryotic exception to the rule that only L-amino acids are included in ribosomally synthesized peptides.

Alanine↗

Analysis of allele-specific contact sites of natural HLA-DR17 ligands.

The sequence motif of peptide ligands naturally associated with DR17 has indicated conserved residues at the relative positions P1-P4-P6-P 8.9 or 10. Eight naturally processed DR17 ligands were synthesized to study the role of conserved residues in DR17 binding. In their majority, they showed an excellent ability to bind to purified DR17 molecules. Binding experiments with variant peptides confirmed aspartate as the DR17-specific contact site at P4. In addition, hydrophobic or aromatic residues at P1 and P9, probably interacting with the NH2- and COOH-terminal pockets, and lysine or chemically related amino acids at P6 were important for binding. A core peptide of 10 amino acids, bordered by the terminal contact sites, is sufficient, although the ability to bind is reduced approximately 10-fold compared with the binding capacity of the natural ligand. Ala substitution of flanking stretches at either end completely restores the binding capacity to that of the natural ligand. This suggests that regions flanking the peptide core contribute to the binding strength nonspecifically, i.e., by forming H-bonds to MHC molecules. Natural DR1 and DR12 ligands like HLA-A2 (103-117) and transferrin receptor (140-156) failed to bind to DR17 molecules. However, substituting leucine for aspartate at P4 transformed DR1 and DR12 ligands into excellent DR17 binders. This conversion, enabled by a single amino acid substitution, emphasizes the importance of aspartate as the DR17-specific contact site and suggests that terminal contact residues are shared among DR1, DR12, and DR17 ligands. In contrast, additional aspartates introduced next to the contact site at P4 impaired the binding capacity. Regarding this specific role of asparate we expect that DR17-specific ligands will be rarely found among "promiscuous" peptides binding to several different DR molecules.

Alleles↗

Purification and characterization of EpiA, the peptide substrate for post-translational modifications involved in epidermin biosynthesis.

For the investigation of enzymes involved in epidermin biosynthesis it is necessary to produce sufficient amounts of preepidermin (EpiA) as a substrate and to design EpiA detection systems. Therefore, EpiA was expressed in Escherichia coli using a malE-epiA fusion. The identity of purified EpiA was confirmed by ion spray mass spectrometry and amino acid sequencing. For EpiA detection, anti-EpiA antisera were raised. Upon prolonged incubation, factor Xa not only cleaved EpiA from the fusion protein, but also less efficiently cleaved EpiA internally between R-1 and I+1. The internal factor Xa cleavage site of EpiA was masked by altering the sequence -A(-4)-E-P-R(-1)- to -A(-4)-E-P-Q(-1)- by site-directed mutagenesis.

Amino Acid Sequence↗

Regulation of epidermin biosynthetic genes by EpiQ.

We investigated the role of epiQ in the biosynthesis of the lantibiotic epidermin. epiQ was essential for epidermin production. It was shown that EpiQ controls epidermin production by transcriptionally activating the epiA promoter, used for transcription of most of the epidermin biosynthetic genes. Additional copies of epiQ increased epidermin production in the epidermin-producing wild-type strain Staphylococcus epidermidis Tü3298. The epiA promoter region was characterized by primer extension analysis. Two inverted repeats, putative operator sites for EpiQ binding, are located upstream of the -35 region and one is localized downstream of the -10 region. Crude protein extracts from S. epidermidis Tü3298 and epiQ expressing Escherichia coli cells led to gel mobility shifts of a DNA fragment bearing the inverted repeat which is located immediately upstream of the -35 region. DNA fragments bearing the other two inverted repeats were not shifted. The epiQ gene product could be detected by overexpression in the E. coli T7 system using antiserum raised against synthetic peptides of EpiQ. Furthermore, EpiQ, like other DNA-binding proteins, was shown to bind strongly to heparin sepharose.

Amino Acid Sequence↗

Self-peptide released from class II HLA-DR1 exhibits a hydrophobic two-residue contact motif.

Peptide fragments of foreign and self-proteins are of great immunologic importance as their binding to major histocompatibility complex (MHC) class I or II molecules makes an interaction with a corresponding T cell receptor possible. Recently, allele-specific peptide sequence motifs proved to be responsible for MHC binding, no matter whether self- or non-self-antigens were involved. Up to now, all investigated human class II-associated peptides were derived from foreign antigenic proteins. Therefore, we undertook sequence and binding analyses with a 16-mer self-peptide (SP3) that has been eluted from HLA-DR1. Here we demonstrate, by synthetic polyalanine-based 13-mer analogues of SP3, that two bulky hydrophobic anchor residues with relative spacing i, i + 8 are sufficient for high affinity binding. This is consistent with the hydrophobic i, i + 8 binding pattern recently found for DR-restricted T cell epitopes. Nevertheless, highly helical alanine-based design peptides with anchor spacing i, i + 9 exhibit maximal affinity, whereas replacement of alanine by helix destabilizing proline abrogates binding. Thus, a two-residue contact motif is the common minimal requirement of self- and foreign peptides for high affinity anchoring to HLA-DR1. In contrast to class I, the anchor spacing of DR1-associated peptides seems to bear some variability due to conformational diversity.

Amino Acid Sequence↗

Biosynthesis of the lantibiotic Pep5. Isolation and characterization of a prepeptide containing dehydroamino acids.

Pep5 is a tricyclic peptide antibiotic which contains the unusual amino acids dehydrobutyrine, lanthionine and 3-methyllanthionine. It is matured from a 60-amino-acid precursor peptide (pre-Pep5) deduced from the sequence of the structural gene pepA. To study the biosynthesis of Pep5 we tried to isolate the primary translation product. We identified a peptide in crude extracts of the Pep5-producing Staphylococcus epidermidis strain using antibodies raised against a synthetic 26-residue peptide representing the leader peptide region of pre-Pep5. The putative precursor was purified by reversed-phase HPLC. The isolated peptide did not react with antibodies directed against a C-terminal fragment of mature Pep5 containing two sulfide bridges. Neither lanthionine nor 3-methyllanthionine was detected in amino acid analysis of the isolated precursor. Its amino acid sequence was identical with the sequence predicted from pepA, but Edman degradation stopped at the first threonine residue of the prolantibiotic region indicating a posttranslational modification at this position. The molecular mass of the isolated peptide was 6575.4 +/- 1.7 Da, determined by ion-spray mass spectrometry. This is in agreement with a molecule being dehydrated at the four threonine and the two serine residues in the propeptide region; such a peptide has a calculated molecular mass of 6576.7 Da. The results strongly suggest that maturation of the lantibiotic Pep5 is initiated by selective dehydration of hydroxyamino acids in the propeptide region of the primary translation product and that thioether ring formation is not closely linked to dehydration.

Amino Acid Sequence↗

Porin of Rhodobacter capsulatus: biochemical and functional characterization.

The major outer membrane protein of Rhodobacter capsulatus 37b4 (capsule-free) was isolated. Strong porin-activity was observed after reconstitution into artificial lipid bilayer membranes with a single channel conductance of 3.15 nS in 1 M KCl. The porin migrated as a broad, single band (Mr above 90,000) on sodium dodecyl sulfate polyacrylamide gel electrophoresis and dissociated into a single species of polypeptides (Mr 36,000) on treatment with EDTA (10 mM at 30 degrees C, 20 min) or by heating (100 degrees C, 5 min). Analytical ultracentrifugation studies demonstrated the native porin to be a trimer. The monomers chromatofocused as a single, sharp peak on fast performance liquid chromatography and only one band, corresponding to an isoelectric point of about 4.0, was obtained on isoelectric focusing. Gas-phase sequencing of the 23 N-terminal residues revealed Glu-Val-Lys-Leu-Ser-Gly-Asp-Ala-Arg-Met-Gly-Val-Met-Tyr-Asn-Gly-Asp-Asp- X-Asn- Phe-Ser-Ser.

Amino Acid Sequence↗

Ferredoxin-NADP+ oxidoreductase of C. paradoxa nucleus encoded, but cyanobacterial gene transfer from symbiont to host, an evolutionary mechanism originating new species.

The nucleus encoded cyanoplast ("cyanellar") ferredoxin-NADP + oxidoreductase (FNR) of Cyanophora paradoxa, characterized by an N-terminal amino acid sequence, is compared with homologous sequences of other photoautotrophic organisms. The high degree of similarity to the cyanobacterial sequences indicates a cyanobacterial origin. This could be a first direct demonstration of an intertaxonic combination: a gene transfer from an original endocytobiont (cyanobacterium) to the nucleus of its host, one of the most important demands of the Endosymbiosis Theory, an evolutionary mechanism leading to the origin of a new species.

Amino Acid Sequence↗