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B Haendler

Publications and source records attributed to B Haendler.

At least 37 records · Page 2Linked to original sources

Expression of active recombinant pallidipin, a novel platelet aggregation inhibitor, in the periplasm of Escherichia coli.

The platelet aggregation inhibitor pallidipin is a protein present in the saliva of the blood-sucking triatomine bug Triatoma pallidipennis. Expression of recombinant pallidipin in the periplasm of Escherichia coli was achieved by placing its coding sequence downstream of the alkaline phosphatase (APase) or trc promoter in frame with bacterial leader peptide DNA sequences derived from APase or from the periplasmic form of cyclophilin (Cph). In each case the DNA sequence of mature pallidipin was merged to the leader peptide coding part, either directly, or while introducing additional amino acids, in order to assess their influence on the activity of the leader peptidase and on the biological activity of the recombinant protein. All tested constructs gave rise to abundant periplasmic expression of pallidipin, which was then purified by a combination of cation- and anion-exchange chromatography followed by size-exclusion gel chromatography. Recombinant pallidipin had the expected molecular mass (approximately 19 kDa) and was correctly processed, as demonstrated by SDS/PAGE and N-terminal amino acid sequencing. The highest expression levels were obtained with the three APase-derived expression plasmids. Platelet aggregation tests revealed that E. coli-derived pallidipin was fully active, with an IC50 of 33-89 nM, comparable with that of the native protein, except when an additional N-terminal lysyl-isoleucyl dipeptide was present, which resulted in an IC50 more than ten times higher.

Amino Acid Sequence↗

Mouse androgen-dependent epididymal glycoprotein CRISP-1 (DE/AEG): isolation, biochemical characterization, and expression in recombinant form.

In the rat, the secretory glycoprotein DE/AEG is one of the main constituents of the epididymal fluid. We have recently reported the cloning of the cDNA for the related cysteine-rich secretory protein-1 (CRISP-1) from murine epididymis (Haendler et al., 1993; Endocrinology 133:192-198). The protein has now been isolated from the same organ and its N-terminal amino acid sequence has been determined. CRISP-1 exhibited an isoelectric point of approximately 6.8. High levels of CRISP-1 antigen were detected in the corpus and cauda of the epididymis, vas deferens, seminal vesicle, prostate, and in the salivary gland by immunohistochemistry. A quantitative analysis of the cauda epididymal fluid by sandwich ELISA revealed that CRISP-1 represented approximately 15% of the total protein. For heterologous expression, the CRISP-1 coding sequence was introduced into the pMPSV/CMV vector before transfection of baby hamster kidney (BHK) cells and selection with puromycin and neomycin. Expression in insect cells was achieved by co-transfection of Sf9 cells with a transfer vector and baculovirus DNA. Recombinant CRISP-1 was isolated in quantities sufficient for structural analysis. Ethyl maleimide treatment showed that all 16 cysteines were engaged in disulfide bonds. Proteolytic digestion demonstrated that the six cysteines localized in the N-terminal moiety formed three bonds with each other, suggesting the existence of two discrete domains in the protein.

Amino Acid Sequence↗

Primary structure and properties of helothermine, a peptide toxin that blocks ryanodine receptors.

Helothermine, a protein from the venom of the Mexican beaded lizard (Heloderma horridum horridum), was found to inhibit [3H]ryanodine binding to cardiac and skeletal sarcoplasmic reticulum, to block cardiac and skeletal ryanodine receptor channels incorporated into planar bilayers, and to block Ca(2+)-induced Ca2+ release triggered by photolysis of nitr-5 in saponin-permeabilized trabeculae from rat ventricle. Cloning of the helothermine cDNA revealed that the protein is composed of 223 amino acids with a molecular mass of 25,376 daltons, and apparently is stabilized by eight disulfide bridges. The peptide sequence showed significant homology with a family of cysteine-rich secretory proteins found in the male genital tract and in salivary glands. The interaction of helothermine and ryanodine receptors should serve to define functional domains within the channel structure involved in the control of Ca2+ release from sarcoplasmic reticulum.

Amino Acid Sequence↗

Mutational analysis of human endothelin receptors ETA and ETB identification of regions involved in the selectivity for endothelin 3 or cyclo-(D-Trp-D-Asp-Pro-D-Val-Leu).

Two endothelin(ET)-receptor subtypes have been identified in mammals. They differ in their affinity towards the ET isopeptides with ETA displaying an ET-1-selective profile and ETB a non-selective one. To identify the regions responsible for the differential selectivity, chimeric forms were engineered by sequentially exchanging extracellular regions together with their flanking transmembrane domains. Two sets of reciprocal receptor mutants were thereby generated and analysed by expression in COS-7 cells. The recombinant receptor chimeras were characterised by direct and competitive radioligand-binding analysis. COS-7 cells transfected with vectors for the mutant receptors exhibited specific saturable [3-125I]iodotyrosyl ET-1 (125I-ET-1) binding, with affinities comparable to those of the wild-type receptors (apparent Ki approximately 1-6 x 10(-9) M). An average of 10(5)-10(6) binding sites/cell was calculated for the wild-type and mutant forms. In competition experiments using 125I-ET-1 and unlabeled ET-3, an ETB-selective agonist, we detected a clear switch from an ET-1-selective profile to a non-isopeptide-selective profile in ETA chimeras where the second extracellular loop and the flanking transmembrane domains IV and V, or the third extracellular loop and the flanking transmembrane domains VI and VII, had been exchanged for the corresponding parts of ETB. The opposite effect, namely a switch from a non-isopeptide-selective to an ET-1-selective binding, was observed for the mirror ETB chimeras where the symmetrical exchange had been operated. Using 125I-ET-1 and the ETA-specific antagonist cyclo-(D-Trp-D-Asp-Pro-D-Val-Leu) (BQ123), we were able to map the main determinants responsible for this selectivity to the N-terminal moiety of this receptor. Therefore, the ability for the interaction with ET-3 or BQ123 is governed by two different regions of the ET receptors.

Amino Acid Sequence↗

An inhibitor of collagen-induced platelet aggregation from the saliva of Triatoma pallidipennis.

The saliva of Triatoma pallidipennis, a blood-sucking triatomine bug (Hemiptera, family Reduviidae, subfamily Triatominae) was found to contain a factor that specifically inhibits collagen-induced platelet aggregation. The 19-kDa protein was purified to homogeneity and named pallidipin. Collagen-mediated aggregation of platelets in plasma and of washed platelets was inhibited with the same efficacy. No inhibition of aggregation stimulated by other effectors (ADP, thrombin, thromboxane A2 mimetic U46619, phorbol ester) was detected. Pallidipin had no effect on platelet adhesion to collagen but inhibited ATP release from platelets. It interacted reversibly with platelets and may share with collagen a common target on them. The protein exhibits a unique primary structure (predicted from cDNA clones) with no significant similarity to other previously described sequences. The protein produced in recombinant baby hamster kidney cells had antiaggregatory effects similar to those of native pallidipin. Availability of recombinant pallidipin will allow further investigation of the precise mechanism of action.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Stable expression of human endothelin receptors ETA and ETB by transfected baby hamster kidney cells.

The cDNAs for human endothelin receptors ETA and ETB were subcloned into the eukaryotic expression vector pMPSV/CMV and transfected, in parallel with plasmids carrying resistances for hygromycin B and puromycin, into baby hamster kidney (BHK) cells. Cell clones constitutively expressing high levels of either receptor were obtained through the combined selective pressure of both antibiotics. This was further confirmed by Northern blot analysis using ETA- or ETB-specific oligonucleotide probes. The calculated KD for endothelin (ET)-1 binding to ETA and ETB were 2.2 x 10(-10) M and 5.3 x 10(-10) M, respectively. Competitive binding experiments using the different ET forms showed the expected isopeptide-selective and non-isopeptide-selective profiles for ETA and ETB, respectively. BQ 123, a specific ETA antagonist, competed with ET-1 for binding to ETA but not to ETB.

Animals↗

Bovine urokinase-type plasminogen activator and its receptor: cloning and induction by retinoic acid.

Full-length cDNAs encoding bovine urokinase-type plasminogen activator (u-PA) and urokinase receptor (u-PAR) were cloned from an aortic endothelial cell cDNA library using PCR-amplified cDNA fragments as probes. Bovine u-PA amino acid identity ranges from 79.5 to 70.9% when compared to its pig, human, baboon and mouse analogues, while bovine u-PAR is 61.8 and 59.6% identical to its human and mouse counterparts, respectively. All Cys residues previously found in mature u-PA and u-PAR from these different species are also conserved in the bovine molecules. Bovine u-PA and its cell-surface receptor display one and six potential sites of N-linked glycosylation, respectively. Northern blot hybridization demonstrated a moderate induction of u-PA and u-PAR mRNA in bovine aortic endothelial cells after treatment with 10 nM and 1 microM retinoic acid for 8 hours.

Amino Acid Sequence↗

Expression of human endothelin receptor ETB by Escherichia coli transformants.

Membrane fractions from Escherichia coli transformed with an expression vector for the human endothelin receptor ETB were found to exhibit specific and saturable binding sites for labeled ET-1. Binding properties were similar to those observed in eukaryotic cells: KD was 110 pM and the three endothelin isoforms were equipotent in competition experiments. The importance of the cysteines located in each of the three extracellular loops was assessed by replacing them individually with alanine residues. Impaired binding was observed in each case but the effect was far more pronounced for the cysteine mutants of the first and second loop pointing to their critical importance for active ETB expression.

Base Sequence↗

Extracellular cysteine residues 174 and 255 are essential for active expression of human endothelin receptor ETB in Escherichia coli.

The coding sequences for the non-isopeptide-selective human endothelin receptor ETB were introduced into the prokaryotic expression vector pKK233-2, and the resulting construct was used for transformation of competent E. coli JM105 cells. Specific binding was observed for bacterial membrane fractions, using labeled ET-1 as a ligand. Site-directed mutagenesis was employed to individually modify the triplets for the cysteines of the first and second extracellular loops of ETB to alanine codons. E. coli JM105 transformed with the mutated plasmids no longer displayed specific ET-1 binding to membranes, which suggests a crucial role for these extracellular cysteines in agonist binding or receptor stability.

Cell Membrane↗

Binding characteristics of recombinant human endothelin receptors ETA and ETB expressed in baby hamster kidney cells.

Expression constructs for human endothelin (ET) receptors ETA and ETB were made by subcloning the corresponding coding sequences into the pMPSV/CMV vector. They were used together with plasmids bearing resistances to puromycin and hygromycin for transfection of baby hamster kidney cells. Culture in the presence of both antibiotics allowed the selection of cell lines stably expressing one receptor or the other. Competitive binding experiments using ET-1 and ET-3 showed the typical isopeptide-selective and non-isopeptide-selective profiles for recombinant ETA and ETB, respectively.

Animals↗

Transcripts for cysteine-rich secretory protein-1 (CRISP-1; DE/AEG) and the novel related CRISP-3 are expressed under androgen control in the mouse salivary gland.

Expression of the gene for cysteine-rich secretory protein-1 (CRISP-1), the counterpart of the rat sperm-coating protein DE/AEG, was evidenced in male mouse salivary gland by both isolation of the corresponding cDNA clone and RNA blot analysis. In addition, the cDNA coding for the new related CRISP-3, which shares 77% amino acid identity with CRISP-1, was isolated from a salivary gland cDNA library. The activity of CRISP-1 and -3 genes in mouse salivary gland is strongly androgen dependent, as seen in castrated males; also, no CRISP-1 and only weak CRISP-3 expression was detected in female salivary gland. A variety of tissues were tested for the presence of CRISP-3 transcripts, but specific signals were only found in salivary gland. The results of genomic DNA blot analysis are compatible with the existence of single discrete genes for CRISP-1 and CRISP-3.

Amino Acid Sequence↗

Plasminogen activators from the saliva of Desmodus rotundus (common vampire bat): unique fibrin specificity.

The saliva of D. rotundus contains at least four plasminogen activators (PAs) which all require fibrin as a cofactor. D. rotundus salivary PAs (DSPAs) exhibit a sequential array of structural motifs such as "Finger" (F), "EGF" (E), "Kringle" (K) and "Protease" (P) which was elucidated by cDNA cloning and sequencing. The respective domain organizations are: FEKP (DSPA alpha 1 and DSPA alpha 2), EKP (DSPA beta) and KP (DSPA gamma). In all four forms the plasmin-sensitive site of tPA is obliterated, indicating that they function as single-chain enzymes. DSPA alpha 1 differs from alpha 2 by amino acid substitutions found mainly in the F, E and K domain, 11% of the total sequence. DSPA beta and gamma, while being closely related to alpha 2, still exhibit 2 and 13 amino acid exchanges, respectively. These sequence heterogeneities, together with results of Southern blot hybridization experiments, strongly suggest that the four DSPA mRNA species originate from different genes. All four forms of DSPA have been expressed in animal cell culture and DSPA alpha 1 was chosen for a detailed pharmacological characterization. In vitro DSPA alpha 1 activity is enhanced 50,000-fold in the presence of fibrin, whereas the activity of single chain tPA is only enhanced 100-fold. At equally effective thrombolytic doses DSPA causes lower bleeding incidence in a rat mesenteric vein model and exhibits high potency, clot selectivity, and speed in the dissolution of fibrin embolized into the lung of anesthetized rats. In the copper coil-induced dog coronary heart infarction model, at doses that achieve patency at equal rates, reocclusion is significantly less frequent than with tPA. These results indicate that DSPA alpha 1 may be a safer and more efficacious thrombolytic agent than the PAs currently in clinical use.

Amino Acid Sequence↗

High-level secretion of the four salivary plasminogen activators from the vampire bat Desmodus rotundus by stably transfected baby hamster kidney cells.

The cDNAs coding for the four Desmodus rotundus salivary plasminogen activators (DSPAs) were subcloned into the mammalian expression vector, pMPSV/CMV, which carries the myeloproliferative sarcoma virus promoter and the cytomegalovirus enhancer. These constructs were transfected, together with plasmids harbouring Geneticin (G418)-resistance and puromycin-resistance genes, into baby hamster kidney cells. Through the selective pressure of both antibiotics, cell clones constitutively overexpressing the DSPA alpha 1, DSPA alpha 2, DSPA beta or DSPA gamma cDNAs were obtained. Secretion of active DSPAs was confirmed by zymographic analysis and quantified using a fibrin plate assay and ELISA.

Animals↗

Molecular cloning of human endothelin (ET) receptors ETA and ETB.

Complementary DNAs coding for two different endothelin (ET) receptors were isolated from a human lung cDNA library. DNA sequencing revealed that they corresponded to either the ET-1-selective receptor subtype originally identified in cows (ETA) or the nonselective subtype first found in rats (ETB). An open reading frame coding for a 427 (ETA) or a 442 (ETB) amino acid-long protein, with a transmembrane topology also found in other G protein-coupled receptors, was determined. Whereas the amino acid identity is about 90% between the characterized members of a given receptor subtype, with the best conserved parts being the hydrophobic transmembrane domains, less than 60% identity was found between the human A and B subtypes. Southern blot analysis of human genomic DNA revealed the existence of multiple hybridizing bands when using probes derived from the full-length ETA or ETB cDNAs. However, when shorter fragments were selected as probes, only one band remained detectable, which suggests the existence of a single-copy gene for each subtype of ET receptor.

Amino Acid Sequence↗

The plasminogen activator family from the salivary gland of the vampire bat Desmodus rotundus: cloning and expression.

Complementary DNAs coding for four Desmodus rotundus salivary plasminogen activators (DSPAs) were isolated and characterized. The predicted amino acid sequences display structural features also found in tissue-type plasminogen activator. The largest forms (DSPA alpha 1 and -alpha 2) contain a signal peptide, a finger (F), an epidermal growth factor (EGF), a kringle, and a serine protease domain, whereas DSPA beta and -gamma lack the F and F-EGF domains, respectively. Additional differences between the four forms suggest that distinct genes code for the members of the DSPA family. Transfection of DSPA-encoding cDNAs, placed under the control of the simian virus 40 late promoter, into COS-1 cells resulted in the secretion of highly fibrin-dependent PAs.

Amino Acid Sequence↗

A novel secreted cyclophilin-like protein (SCYLP).

A novel cyclosporin A binding glycoprotein of 21 kDa was isolated from human milk by several steps of cation exchange chromatography. The corresponding gene was cloned from human T cells, expressed in Escherichia coli and the recombinant protein purified. The protein shares 58% amino acid identity with the cytosolic cyclophilin and is initially synthesized with a hydrophobic leader sequence. The cyclophilin-like protein has also peptidyl-prolyl cis/trans-isomerase activity, although less efficient, that is inhibited by cyclosporin A. The existence of a secreted form of cyclophilin-like protein in addition to the previously known cytosolic cyclophilin implies that these proteins act on different in vivo targets.

Amino Acid Isomerases↗

Distribution of the cyclosporine binding protein cyclophilin in human tissues.

Cyclophilin (CYP) is the major intracellular binding protein for the immunosuppressive drug cyclosporine (CS). CYP distribution was investigated in human tissues by solid-phase immunoassay, Western and Northern blot analysis as well as immunohistochemistry. CYP was found in all tissues examined at concentrations in the range of 1 microgram/mg protein. Furthermore, mRNA specific for CYP was found in every tissue, indicating local production of the protein. Immunohistochemical investigations revealed preferential parenchymal and only little stromal localization. Within certain organs, e.g. kidneys, regional differences of immunoreactive CYP was evident. The presence of CYP was also investigated in several lymphoid and non-lymphoid cell lines and was found at comparable concentrations. Immunogold staining confirmed cytosolic, but revealed also nuclear localization of CYP. The possible role of this abundant CS binding protein is discussed.

Amino Acid Isomerases↗

Characterization of the human cyclophilin gene and of related processed pseudogenes.

The human cyclophilin gene was isolated from a genomic library derived from leucocyte DNA and sequenced. The gene contains five exons and four introns. The amino acid sequence deduced from the exons matches perfectly the one previously determined from the T-cell cyclophilin cDNA. A TATA box is visible in the promoter region and putative Sp1 binding sites are also found there as well as in the first intron. Six members of the middle repetitive Alu gene family are present in one or other orientation in the non-coding regions of the cyclophilin gene. Hybridisation of genomic DNA to probes derived from the promoter region or the first intron indicates that the cyclophilin gene is present as a single copy in the human haploid genome. Seven other cyclophilin-related DNA clones isolated from the same library were also characterized. They show a high degree of similarity to the cyclophilin cDNA and are colinear to it. However, multiple genetic lesions, often including deletion and/or insertion events which modify the reading frame, are found in these clones which are therefore likely to represent processed pseudogenes.

Amino Acid Sequence↗