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Biomedical subjects

I Schechter

Publications and source records attributed to I Schechter.

At least 19 recordsLinked to original sources

Mapping of the active site of proteases in the 1960s and rational design of inhibitors/drugs in the 1990s.

For several decades the specificity of proteases has been presented as an active site divided into subsites, using the nomenclature of Schechter & Berger from 1967 (S1, S2... for subsites of the active site; P1, P2... for residues of the substrate occupying the corresponding subsites). At early stages of the research (1960s) it was realized that the size of the active site was larger than expected and important interactions occur in regions remote from the catalytic site. Since the active site was found to be large it was divided into subsites, and a procedure to map it up was developed. The map provides information on the size of the active site (number of subsites), the properties of each subsite (free energy of ligand binding, nature of binding forces, etc.), and it enables rational design of new substrates and inhibitors. Already in 1968 inhibitors with binding constants ten thousand fold higher than available inhibitors, were prepared. The model of a large active site was initially met with strong opposition. Before long, however, predictions of the model (size of the active site, interactions in subsites remote from the catalytic site) were confirmed by X-ray crystallography (1970). During the 1990s proteolytic enzymes received renewed attention in biology and medicine, they became therapeutic targets, and protease inhibitors were successfully applied in the treatment of AIDS and hypertension. The model of large active site divided into subsites, proposed 38 years ago, stood the test of time. This model is still in use in basic research to evaluate enzyme activity, and in pharmaceutical research for the development of inhibitors/drugs.

Animals↗

Stage-specific alternative splicing of the heat-shock transcription factor during the life-cycle of Schistosoma mansoni.

Stage-specific alternative splicing of the heat-shock transcription factor of Schistosoma mansoni (SmHSF) generates isoforms with structural diversity that may modulate the activity of SmHSF at different life-stages, and thus may regulate the expression of different genes at different developmental stages. RT-PCR, cloning and DNA-sequence analyses showed stage-specific alternative splicing inside the DNA-binding domain (DBD) involving introns I1 and I2, and beyond the DBD involving introns I4a and I7. Retention of introns I2 and I4 would inactivate SmHSF since they contain termination codons. Retention of intron I1 would add 11 amino acids inside the DBD and may change the DNA-binding specificity of SmHSF; intron I7 would add 13 amino acids to the effector region of HSF. Retention of introns was more pronounced in cercariae (larval stage living in water) than in adult worms (parasitic form in mammals). The isoforms were expressed in bacteria, but functional evaluation was not feasible, because only the isoform lacking introns was soluble while isoforms with introns were insoluble. However, stage-specific alternative splicing that changed HSF function in vivo was evidenced in intact cercariae. The cercarial SmHSF mRNA was enriched with introns I2 and I4a that contain termination codons. Therefore, translation of the SmHSF mRNA was impaired, and the SmHSF protein was undetectable. Consequently, the HSP70 gene could not be transcribed, and the HSP70 mRNA was missing. Alternative splicing was observed for short DNA segments (33-45 bp) bound by splice signals, located in the coding region. These are not bona fida exons since they are not flanked by introns. Yet, they are not regular introns since they are often found in mature mRNA. Alternative splicing of these DNA segments caused structural diversity that could modulate the function of the gene product.

Alternative Splicing↗

Interaction of the proteasome S5a/Rpn10 multiubiquitin-binding protein and the 8 kDa calcium-binding protein of Schistosoma mansoni.

A distinct 8 kDa calcium-binding protein (CaBP) is preferentially expressed at the cercarial stage during the life-cycle of the schistosome. Available data indicate that this CaBP may be associated with tissue/organ remodelling (involving protein degradation and synthesis of new proteins) during transformation of the cercariae from free-living form in water to parasitic life in the vertebrate host. Many CaBP molecules (e.g. calmodulin) show Ca(++)-dependent interaction with target proteins and thus modulate their activity. Accordingly, the parasite 8 kDa CaBP was used as a probe to clone and identify putative target protein(s) directly by binding interaction. Screening of schistosome lambdagt11 expression library with radio-iodinated CaBP yielded several overlapping clones showing Ca(++)-dependent binding of the CaBP. Sequence analyses revealed that these clones encode the S5a/Rpn10 multiubiquitin-binding protein which is a component of the regulatory 19S subunit of the 26S proteasome. The schistosome molecule, designated SmS5a, is 420 amino acids long. The nearly full length molecule (Gln3-Ser420) as well as the amino terminal (N-S5a, Gln3-Gly200) and carboxyl-terminal (C-S5a, Asp225-Ser420) portions were synthesized in bacteria, purified, and antibodies to the parasite SmS5a were prepared. Interaction between SmS5a and the 8 kDa CaBP in a Ca(++)-dependent manner was found under various experimental conditions: CaBP-Sepharose bound soluble SmS5a, immobilized SmS5a bound soluble CaBP, and complex formation was found when both molecules were in solution. Furthermore, it was shown that the C-terminal portion of SmS5a, but not the N-terminal portion of the molecule, reacted with the CaBP. SmS5a synthesized in a cell-free system and Western blots revealed 2 species, conceivably corresponding to the naked molecule (approximately 50 kDa) and the molecule subjected to post-translational modification (approximately 70 kDa). The present studies suggest that proteasome activity may be modulated by calcium, and this modulation is mediated via CaBP molecule(s).

Amino Acid Sequence↗

Diffusion-limited extraction of organic ions by a track-membrane interfaced vacuum inlet.

Glycerol-wetted track membranes (polyethylene terephthalate) were used to interface a low-vacuum facility (approximately (10(-3) Torr) to an ambient pressure liquid analyte. High-field charge extraction conditions were routinely maintained between the liquid samples and a grid collector. The latter was positioned just near to the vacuum-facing side of such membranes. Upon establishing a steady-state charge extraction regime, the collector currents were monitored and recorded at various solute concentration levels. The collector currents, which depend on solute concentration, were found to agree with recent theoretical treatments of such processes. Both positively- and negatively-charged species from organic solutions were routinely extracted. Ion injection for the low- and the high-mobility species has favored the diffusion-limited and the evaporation-limited schemes, respectively. Variable concentrations of 1-pyrenoyl-methylpyridinium bromide as well as naphthylacetic and anthracenecarboxylic acids in glycerol were used.

Journal Article↗

Differences in DNA-sequence recognition between the DNA-binding domain fragment and the full-length molecule of the heat-shock transcription factor of schistosome.

Binding and inhibition studies reveal that the DNA-binding domain (DBD) fragment and the full-length molecule of the heat-shock transcription factor of schistosome (SmHSF) differ in DNA sequence recognition. SmHSF does not recognize the ideal HSE consensus sequence (nGAAnnTTCnnGAAn) but recognizes a variant HSE that contains nGTAn instead of nGAAn in the third pentamer. The DBD reacts efficiently with the ideal HSE sequence and with lower affinity with the variant HSE sequence. These findings suggest that elements inside and outside the DBD contribute to the DNA-binding specificity of HSF.

Animals↗

Direct mass-quantification of particulate deposits of polycyclic aromatic hydrocarbons by Fourier transform imaging microscopy.

Successful coupling of imaging microscopy with Fourier transform spectrometry provides a new methodological approach. This was applied to the direct analysis of particulate deposits of polycyclic aromatic hydrocarbons (PAHs). The fluorescence signals of single microscopic particulates were found to be proportional to their mass, obtained from the corresponding HPLC results. Special fluorescence characteristics related to individual particle analysis were studied. The sensitivity of the proposed method to PAHs in soil is in the sub-ppb range, similar to HPLC results. Analysis of inhomogeneous PAH-particulates was demonstrated, as well as the resolution of photochemical products of PAHs. The effects of particulate orientation relative to the detector upon quantification are discussed.

Chromatography, High Pressure Liquid↗

Non-aqueous-phase-liquid breakthrough during evaporative drying of clay barriers.

In this study, an attempt has been made to model a real field scenario, whereby an initially almost saturated clay liner in a waste site is gradually drying, due to evaporation at its lower boundary. A detailed conceptual model that deals with the penetration and breakthrough of non-aqueous-phase-liquid (NAPL) in clay liners is introduced. Water content of clay samples was monitored during ambient evaporation through apertures at the base of sample holders. Clay drying rate served as the primary parameter for the NAPL breakthrough study. The interconnection between drying rates, structural damage formation (cracks and suction) and NAPL penetration is especially addressed. The processes taking place in the clay samples during drying appear to be associated with the capillary effects between the different fluid phases in the vicinity of either the NAPL-clay or the clay-air boundaries. A conceptual model of NAPL penetration and breakthrough of the clay layer has been considered, based on both indirect and direct observations of structural damages produced on either clay boundaries. A mutual interaction between these two boundaries is suggested and discussed. NAPL breakthrough is suggested to take place through cracks initiated on the upper soil surface.

Aluminum Silicates↗

Dysfunction of early-stage visual processing in schizophrenia.

OBJECTIVE: Schizophrenia is associated with deficits in higher-order processing of visual information. This study evaluated the integrity of early visual processing in order to evaluate the overall pattern of visual dysfunction in schizophrenia. METHOD: Steady-state visual-evoked potential responses were recorded over the occipital cortex in patients with schizophrenia and in age- and sex-matched comparison volunteers. Visual-evoked potentials were obtained for stimuli composed of isolated squares that were modulated sinusoidally in luminance contrast, number of squares, or chromatic contrast in order to emphasize magnocellular or parvocellular visual pathway activity. RESULTS: Responses of patients to magnocellular-biased stimuli were significantly lower than those of comparison volunteers. These lower response levels were observed in conditions using both low luminance contrast and large squares that biased processing toward the magnocellular pathway. In contrast, responses to stimuli that biased processing toward the parvocellular pathway were not significantly different between schizophrenia patients and comparison volunteers. A significant interaction of group and stimulus type was observed in the condition using low luminance contrast. CONCLUSIONS: These findings suggest a dysfunction of lower-level visual pathways, which was more prominent for magnocellular than parvocellular biased stimuli. The magnocellular pathway helps in orienting toward salient stimuli. A magnocellular pathway deficit could contribute to higher-level visual cognitive deficits in schizophrenia.

Cognition Disorders↗

Photochemical study of anthracene crystallites by Fourier transform spectroscopic imaging.

Fourier transform-based spectroscopic imaging was used for direct, time-resolved, analysis of UV-irradiated anthracene crystallites. Well-resolved fluorescence spectra were obtained at a spatial resolution of 1 microm. The appearance of such photochemical by-products as dianthracene and anthraquinone was monitored throughout the irradiation experiments. Under deaerated conditions, photolysis of anthracene was accompanied by formation of dianthracene. When performed under aerated conditions, however, the spectral data indicated formation of both dianthracene and anthraquinone. Spectral features obtained for the directly monitored photolysis of anthracene are discussed in respect to the structural and compositional modifications in such crystallites. Capabilities of the spectral imaging device for the quantification of the photochemical products of anthracene are discussed.

Journal Article↗

Converting spatial to pseudotemporal resolution in laser plasma analysis by simultaneous multifiber spectroscopy

Traditional chemical analysis based on laser plasma spectroscopy (LPS) requires time-gated detectors, to avoid the initial signal from the hot plasma. These detectors are expensive and often need to be cooled and protected against vapor condensation. We suggest a low-cost setup that may replace these gated detectors, while maintaining acceptable analytical performance. The proposed setup is a result of investigation of plasma-front propagation in LPS analysis. It is known that the LPS plasma propagation is similar to the shock wave propagation after a strong explosion in the atmosphere. We found that the propagation of the plasma fits well the Sedov blast wave theory, providing a good agreement between the theoretical and experimental figures. A proper observation geometry, which is perpendicular to the plasma expansion vector, enables converting spatial to temporal resolution. We take advantage of the fact that the plasma reaches a given distance above the analyzed surface at a certain time delay. Therefore, a single optical fiber, positioned at a well-defined geometry, can provide spectral information corresponding to a certain time delay. A multifiber imaging spectrometer provides information corresponding to a series of delay times, which is adequate for analysis of a variety of matrixes. It was found that the performance of the nongated detector observing a narrow solid angle is similar to that of a gated one observing the whole plasma. For one particular example, observing the plasma from a distance of 4.5 mm is equivalent to a delay of 4 micros and integration time of 2 mircos. The ratio of spectral lines of two elements was investigated using the spatially resolved (nongated) setup, and it was found that this mode is advantageous when internal calibration is applied. It was concluded that sensitive LPS analyses can be carried out by less expensive (nongated) detectors.

Journal Article↗

Cloning of the SmSPO-1 gene preferentially expressed in sporocyst during the life cycle of the parasitic helminth Schistosoma mansoni1.

Schistosomes are parasitic helminths with a complex life cycle in human and snail hosts. They express stage-specific genes that conceivably determine distinct properties of the parasite at different developmental stages. Here we report the stage-specific gene SmSPO-1, which is preferentially expressed in sporocysts residing in the snail host. The cDNA and the gene were cloned and sequenced. The cDNA, from cap site to the poly(A) addition site, is 498 bp long. It encodes a protein of 117 amino acids with a hydrophobic signal peptide of 18 residues, indicating that SmSPO-1 is a secreted or a membranal protein. In the gene the cDNA is split into four exons spread over 2.1 kb of chromosomal DNA.

Amino Acid Sequence↗

Isolation of speech area syndrome (ISAS): a follow-up study--a rehabilitative approach.

PURPOSE: In this study we present our findings concerning the dynamics of language modalities in the isolation of the speech area syndrome (ISAS). The aim of the study was to establish: (1) the linguistic characteristic features of this group of patients; (2) the course of dynamics of language of each patient; (3) whether this course of dynamics is common for the whole group; (4) whether the course of dynamics we found matches with the report in the literature. METHOD: Over a period of 5 years, nine patients with ISAS were diagnosed and treated in our department. They received varying lengths of treatment, and four were followed for 2-6 years after discharge. RESULTS: Despite the common belief that the prognosis for language rehabilitation for these patients is poor, we found that some ISAS patients improved, even dramatically, after prolonged language treatment. CONCLUSION: It is hoped that these findings will alter clinicians' attitudes towards these patients, and provide some hope for rehabilitation outcome.

Adult↗

Different forms of the mRNA encoding the heat-shock transcription factor are expressed during the life cycle of the parasitic helminth Schistosoma mansoni.

Several cDNAs and a gene encoding the heat-shock transcription factor (HSF) of schistosome were cloned, and multiple forms of the mRNA were found at different developmental stages of the parasite. The encoded protein contained a DNA-binding domain with expected sequence identity (39-58%) to other HSF molecules, and two leucine zipper motifs (LZ123 and LZ4) involved in the oligomerization of HSF. Adult worms express three isoforms of HSF mRNA generated by alternative splicing inside the coding region that contains in-frame splice signals. Introns are not involved in the process since the deleted segments (36 bp or 45 bp) are not flanked by any intron in the gene. Structural variations generated by alternative splicing (insertion of 3 amino acids or 15 amino acids) are continual with LZ4 and added hydrophobic residues are in register with the hydrophobic heptad repeats of LZ4. Structural diversity at the C-terminus of LZ4 may affect the strength of LZ4 interaction with the oligomerization domain (LZ123) and thus modulate the DNA-binding activity of HSF. The conservation of this mechanism in mouse and schistosome may reflect evolutionary pressure to generate multiple HSF species exhibiting functional diversity and capable of responding to different stress signals and physiological signals. Adult worms express HSF mRNA of 2.5 kb, in agreement with the size of the cDNA, while cercariae (developmental stage preceding adult worm) show multiple bands in the range 2.5-3 kb. Available data indicate that the HSF mRNAs of cercariae are inactive. We propose that these mRNA species are generated by an alternative splicing that incorporates introns, which inactivate the mRNA by the insertion of termination codons and/or by shifting of the reading frame. Parasite HSF protein produced in bacteria showed DNA sequence recognition similar to that of HSF in parasite extracts, i.e. the recombinant HSF reacted better with a variant heat-shock element (HSE; one base change in the third NGAAN pentamer of the ideal HSE consensus sequence) than with the ideal HSE. The size of the HSF gene is 12 kb and it is composed of ten exons and nine introns. Excluding the introns, the gene and cDNA show 100% sequence identity. A plant HSF gene contains only a single intron, which matches with the position of intron I2 of schistosome. That the position of this intron is conserved in remote species is indicative of an important function during evolution of the HSF gene.

Alternative Splicing↗

Expression of different forms of the heat-shock factor during the life cycle of the parasitic helminth Schistosoma mansoni.

HSE-HSF complexes from different stages of the life cycle of schistosome were analyzed by pore exclusion electrophoresis (estimates the size of the native DNA-protein complex), and by U.V.-cross-linking followed by SDS-PAGE (estimates the size of the monomeric heat shock factor, HSF). The apparent M(r) values of the native and monomeric HSE-HSF complexes from schistosomula were 80,000 and 60,000, respectively. In adult worms M(r) values were 70,000 for the native HSE-HSF complex, 60,000 and 80,000 for the monomeric form. These findings indicate that: (1) schistosome express two (maybe three) forms of HSF, (2) different forms of HSF are expressed at different developmental stages. The findings that the native HSE-HSF complex and the monomeric HSF are of a similar size indicates that the complex contains a single HSF, or that the complex is a labile oligomer of HSF that decomposes into monomers during electrophoresis in a nondenaturing gel.

Animals↗

Differences in DNA sequence recognition by the heat-shock factors of Drosophila melanogaster and the parasitic helminth Schistosoma mansoni.

It was recently shown that schistosome extracts contain heat-shock factor (HSF) activity that correlates with the pattern of hsp70 mRNA levels at different developmental stages of the parasite (Levy-Holtzman and Schechter (1994) Parasitology 108, 35-42). To extend our understanding of the HSF activity revealed in extracts of Schistosoma mansoni (Sm), it was further analyzed by competition experiments and compared with the well characterized HSF of Drosophila melanogaster (Dm). The interactions of HSF in Sm extracts (SmHSF) and HSF of Dm (DmHSF) with 32P-labeled heat shock element (HSE) probes, with and without unlabeled competitor DNA probes (HSE-related oligos), were analyzed by gel retardation assay. The binding and inhibition studies demonstrated that SmHSF and DmHSF differ in HSE sequence recognition: an array of three nGAAn inverted repeats according to the ideal consensus sequence (nGAAnnTTCnnGAAn) is recognized by DmHSF, but not by SmHSF. In the schistosome, binding is attained only when the third pentamer is a variant, composed of nGTAn instead of nGAAn. The presence of this variant in the promoter of the hsp70 gene of the parasite suggests coevolution of the variant sequence together with the SmHSF which interacts efficiently with the variant, but not with the ideal HSE sequence. Further inhibition studies revealed additional differences between SmHSF and DmHSF in recognition of the first and second nGAAn pentamers of HSE. In analogy to other systems of ligand-protein interactions, we propose that the complementarity between the HSE ligand and the HSF protein is higher in SmHSF, as compared to DmHSF.

Animals↗

Activity of the promoter of the hsp70 gene of the parasitic helminth Schistosoma mansoni in the mammalian CHO cell-line.

Functional assay of schistosome promoters is problematic because parasite cell-lines are not available. We found that the hsp70 promoters of S. mansoni and of other eukaryotes reveal similarities in the sequence and organization of the regulatory elements. Therefore, a construct of the schistosome hsp70 promoter linked to the CAT reporter gene was prepared and used to transfect CHO cells. The transfected cells showed heat shock dependent activation of CAT. These findings indicate that functional evaluation of schistosome promoters can be done, in part, in foster cell-lines.

Animals↗