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I Schechter

Publications and source records attributed to I Schechter.

At least 37 records · Page 2Linked to original sources

Cloning and characterization of the SmIMP25 integral membrane protein of the parasitic helminth Schistosoma mansoni.

The cDNA and genomic clones encoding a 25 kDa integral membrane protein, termed SmIMP25, were isolated from Schistosoma mansoni. The 2.2 kb SmIMP25 mRNA was found in all developmental stages of the parasite tested: miracidium, sporocyst, cercaria and adult worm. The SmIMP25 gene is at least 16 kb long and it is split by four introns ranging in size from 36 bp to > or = 9 kb. Excluding the introns, the gene and the cDNA show 100% sequence identity. The cDNA has an open reading frame encoding a protein 223 amino acids long. The predicted sequence reveals a distinct hydrophobic domain of 20 amino acids located 12 residues from the carboxyl-terminal end. The properties of this domain (marked hydrophobicity, size, flanking by charged residues and C-terminal location) are typical of the transmembrane segments of integral membrane proteins. The presence of three potential N-glycosylation sites is also consistent with membrane proteins that are often glycosylated at the extracellular domain. Accordingly we propose that SmIMP25 is an integral membrane protein in which residues 1-191 are extracellular, residues 192-211 comprise the hydrophobic domain that spans the membrane, and residues 212-223 are intracellular. The SmIMP25 was synthesized as a fusion protein in bacteria and antibodies were elicited in rabbits. Antibodies against SmIMP25 specifically precipitated a 25 kDa protein from cell-free products programmed by schistosome mRNA, in agreement with the size of the protein predicted from the cDNA sequence. Immunofluorescence studies showed SmIMP25 on the surface of the parasite. Surface molecules expressed at the host-parasite interface are likely to provide information on host parasite relationship and may serve as targets for protective immunity.

Amino Acid Sequence↗

Immunochemical studies on the cercarial-specific calcium binding protein of Schistosoma mansoni.

Stage-specific expression of the mRNA encoding the cercarial-specific 8 kDa CaBP has been described previously. To gain information on possible function(s) of this protein we raised antibodies to the CaBP in rabbits immunized with a CaBP-TrpE fusion protein synthesized in bacteria. Western blots showed high levels of CaBP in cercariae and 3 h schistosomula, trace amounts in 24 h schistosomula, and none in miracidia sporocyst and adult worm, as found for the mRNA. The CaBP molecule has a short half-life (< or = 4 h) similar to that of the mRNA. Other experiments demonstrate that the CaBP may interact with a putative target molecule in a calcium-dependent manner to form a complex of 45 kDa. Immunogold electron microscopy showed CaBP in selected regions of cercariae and 3 h schistosomula: tegument, head gland, subtegumental cells, flame cells, intestinal wall and the body-tail junction. Other investigators have shown that the head gland and subtegumental cells synthesize and translocate granules to the tegument during transformation from cercariae (living freely in water) to schistosomula (residing in vertebrate host). These observations and the time-course of CaBP detection suggest that the CaBP synthesized in the head gland and subtegumental cells is translocated to the tegument where it plays a role in tegument modifications required for adaptation to parasite life in the host. CaBP was not found in muscles and mitochondria, suggesting that it is not involved in the rapid motility and aerobic metabolism characteristic of cercariae.

Animals↗

Schistosome extracts with heat shock factor activity revealed by the gel shift assay.

To understand the regulated expression of stage-specific genes of schistosomes, it is necessary to identify regulatory DNA elements and DNA-binding proteins that control the level of gene transcription. Here we describe the preparation of Schistosoma mansoni extracts with active transcription factors detected by the electrophoretic mobility shift assay (EMSA). We analysed the hsp70 system of S. mansoni because the promoters of the hsp70 gene contain two heat shock elements (HSE) that differ from the consensus sequence (CnnGAAnnTTCnnG) at one (HSEI) or three (HSEII) positions, and it is known that transcriptional activation of hsp70 genes is mediated by interaction of HSE with the heat shock factor (HSP). Analyses of parasite extracts from different developmental stages demonstrate the presence of putative HSF that correlates with the pattern of hsp70 mRNA expression (cercariae-, schistosomula+, adult worms+). Cercarial extracts did not show binding of 32P-labelled HSEI or HSEII. Extracts of schistosomula and of adult worms kept at 37 or 42 degrees C showed binding of HSEI but not HSEII. The specificity of HSEI-HSF complex formation was ascertained by inhibition experiments. The EMSA experiments and structural features of the hsp70 promoter indicate that HSEI is the major DNA element responsible for transcriptional activation of the hsp70 gene, while the HSEII may be a redundant sequence with minor (if any) regulatory function. The extracts reported here can be used to study transcriptional control of other schistosome genes.

Animals↗

Regulation of HSP70 gene expression during the life cycle of the parasitic helminth Schistosoma mansoni.

Analyses of RNA from different developmental stages of Schistosoma mansoni showed stage-specific expression of heat-shock protein 70 (hsp70), which is regulated by a developmental program and by stress. The developmental program, common to hsp70 and other genes (e.g. paramyosin), refers to constitutive expression in miracidia sporocyst and adult worm but not in cercariae, and to the termination of hsp70 gene transcription during sporocyst/cercaria transformation. Stress induction, specific to hsp70, refers to transient accumulation of high levels of hsp70 mRNA during cercariae/schistosomula transformation and in adult worms after heat shock (42 degrees C). Cercariae/schistosomula transformation can be visualized as a physiological stress involving shifts in temperature (23-37 degrees C) and in salt concentration (from water to isotonic medium), as well as removal of tails from cercariae to yield isolated bodies that transform into schistosomula. It was found that temperature is an important factor, but not sufficient for strong induction of the hsp70 genes of schistosomula. Tail removal is an obligatory step for full induction of the hsp70 genes of schistosomula, in response to a temperature shift from 23-37 degrees C. The hsp70 genes in cercariae and isolated tails do not respond to stimuli (salt and temperature increases) that strongly activate the genes in isolated bodies (i.e., schistosomula). We speculate that the hsp70 genes in intact cercariae are not inducible because the tails can produce inhibitory signals that diffuse to the bodies and suppress their hsp70 genes. This hypothesis is useful to explain the termination of hsp70 gene transcription during sporocyst/cercaria transformation by the inhibitory effect of the growing tail.

Animals↗

Structure of the gene encoding a putative Schistosoma mansoni tegumental antigen precursor.

In order to obtain the complete gene encoding the putative precursor of a 15-kDa Schistosoma mansoni tegumental antigen (Sm15), two cDNAs (A70 and A184) and two fragments of independent genomic clones were subcloned and sequenced. The collated sequence contains 4700 nucleotides and represents the full length open reading frame of the gene, encoding a protein of 1032 amino acids with a calculated molecular mass of 116,900. Thus, the gene encodes a much longer protein than that identified in the tegumental membranes, suggesting that it encodes a precursor that is subsequently highly processed. A 964-bp region composed of 5 closely related repeats was found to be present within the translated frame. The predicted protein is highly acidic and there is no indication of hydrophobic domains that may represent transmembrane regions or indicate attachment of a GPI anchor. The coding region has no homologies in the currently available data bases. In the 5' non-transcribed area a copy of the SM alpha repeat family is present. The coding region is preceded by putative CCAAT and TATA boxes that may be involved in the control of expression.

Amino Acid Sequence↗

Cloning and sequencing of an hsp70 gene of Schistosoma mansoni.

Schistosomes have a complex life cycle (vertebrate and molluscan hosts as well as larvae living freely in water) in which they are exposed to different environments and temperatures (20 degrees C - 37 degrees C). Since heat shock genes are activated in response to stress and during development [1], it is of interest to study the hsp70 gene family in schistosome. To approach this issue we have isolated from Schistosoma mansoni a genomic clone containing the complete coding region of hsp70 and the 5' flanking DNA with transcription regulatory elements including HSE (heat shock element) sequences.

Amino Acid Sequence↗

Schistosoma mansoni: stage-specific expression of muscle-specific genes.

It was previously shown that an antigen preparation termed 9B obtained from Schistosoma mansoni cercarial extracts partially (34%) protects mice from challenge infection with cercariae (R. Tarrab-Hazdai et al., J. Immunol. 135, 2772, 1985). To characterize some of the proteins which comprise this preparation, rabbit antibodies to the 9B antigen preparation were used to screen cDNA libraries of cercariae and adult worms. We isolated and sequenced cDNA clones encoding three proteins: calcium-binding protein, paramyosin, and myosin. The calcium-binding protein was previously shown to be expressed in cercariae but not in sporocysts or adult worms (D. Ram et al., Mol. Biochem. Parasitol. 34, 167, 1989). Northern blots showed the presence of paramyosin and myosin mRNAs in sporocysts and adult worms but not in cercariae. Antibodies to paramyosin detected the protein in sporocysts and adult worms as well as in cercariae. These findings explain, in part, the protective activity of the 9B antigen preparation against challenge infection.

Amino Acid Sequence↗

Somatic diversification of chicken immunoglobulin light chains by point mutations.

The light-chain locus of chicken has 1 functional V lambda 1 gene, 1 J gene, and 25 pseudo-V lambda-genes (where V = variable and J = joining). A major problem is which somatic mechanisms expand this extremely limited germ-line information to generate many different antibodies. Weill's group [Reynaud, C. A., Anquez, V., Grimal, H. & Weill, J. C. (1987) Cell 48, 379-388] has shown that the pseudo-V lambda-genes diversify the rearranged V lambda 1 by gene conversion. Here we demonstrate that chicken light chains are further diversified by somatic point mutations and by V lambda 1-J flexible joining. Somatic point mutations were identified in the J and 3' noncoding DNA of rearranged light-chain genes of chicken. These regions were analyzed because point mutations in V lambda 1 are obscured by gene conversion; the J and 3' noncoding DNA are presented in one copy per haploid genome and are not subject to gene conversion. In rodents point mutations occur as frequently in the V-J coding regions as in the adjacent flanking DNA. Therefore, we conclude that somatic point mutations diversify the V lambda 1 of chicken. The frequency (0-1%) and distribution of the mutations (decreasing in number with increased distance from the V lambda 1 segment) in chicken were as observed in rodents. Sequence variability at the V lambda 1-J junctions could be attributed to imprecise joining of the V lambda 1 and J genes. The modification by gene conversion of rearranged V lambda 1 genes in the bursa was similar in chicken aged 3 months (9.5%) or 3 weeks (9.1%)--i.e., gene conversion that generates the preimmune repertoire in the bursa seems to level off around 3 weeks of age. This preimmune repertoire can be further diversified by somatic point mutations that presumably lead to the formation of antibodies with increased affinity. A segment with structural features of a matrix association region [(A + T)-rich and four topoisomerase II binding sites] was identified in the middle of the J-C lambda intron (where C = constant).

Animals↗

Aeromonas in adult diarrhea: an enteropathogen or an innocent bystander?

This is a study from a district hospital in Israel serving a population of 250,000. During 1986-1987, 1,005 stool specimens were cultured from 932 adult inpatients with acute diarrhea. Seventeen yielded Aeromonas species. Of the 12 strains phenotyped, 10 qualified as enteropathogenic. Five hundred stool specimens from asymptomatic control subjects, inhabitants of the same region, were negative for Aeromonas. The finding of Aeromonas as the apparently sole pathogen in acute adult diarrhea in a geographical area with a negligible asymptomatic carriage rate lends support to the possibility that Aeromonas is an enteropathogen in adults.

Adolescent↗

Stuttering as a manifestation of right-hemispheric subcortical stroke.

A right-handed man developed stuttering, without aphasia, as a result of a circumscribed subcortical infarction in the right hemisphere. He never stuttered before and has no family history of stuttering. Damage to callosal pathways coordinating the activity of both hemispheres during speech is proposed as a possible explanation for the stuttering.

Aged↗

Rapid changes in the expression of a gene encoding a calcium-binding protein in Schistosoma mansoni.

Genes expressed in a stage-specific manner may help us understand the molecular events controlling the complex life cycle of schistosomes. cDNA and genomic clones encoding a calcium-binding protein (CaBP) were obtained from cercariae and their sequence determined. The encoded protein (69 amino acids long) shows clear resemblance to the domain structure and organization of CaBP molecules. It contains two typical calcium-binding loops, the distance between which is identical to the length conserved in other CaBP molecules. In addition, the schistosome CaBP shows Ca2+-dependent electrophoretic mobility (increased with Ca2+-ions and decreased with EGTA). Northern blots revealed expression of the CaBP gene in cercariae but not in sporocyst or worm (developmental stages preceding and following cercaria). The preferential expression of this CaBP in the cercaria raises questions as to what cercaria-specific function(s) it performs. The structure of the gene is similar to that in other eukaryotes, and one intron interrupts the coding sequence. The region of the cap site was determined, and there was no evidence of the spliced leader sequence found in the mRNAs of other parasites. The CaBP reveals a rapid change in gene expression, since the mRNA is missing in the parasite residing in infected snails, but is readily detected in cercariae 1 h after shedding. We identified other genes which are turned on (like the CaBP) or shut off within the short period of transition from cercariae in the snail to free-swimming cercariae.

Aging↗

Chicken immunoglobulin gamma-heavy chains: limited VH gene repertoire, combinatorial diversification by D gene segments and evolution of the heavy chain locus.

cDNA clones encoding the variable and constant regions of chicken immunoglobulin (Ig) gamma-chains were obtained from spleen cDNA libraries. Southern blots of kidney DNA show that the variable region sequences of eight cDNA clones reveal the same set of bands corresponding to approximately 30 cross-hybridizing VH genes of one subgroup. Since the VH clones were randomly selected, it is likely that the bulk of chicken H-chains are encoded by a single VH subgroup. Nucleotide sequence determinations of two cDNA clones reveal VH, D, JH and the constant region. The VH segments are closely related to each other (83% homology) as expected for VH or the same subgroup. The JHs are 15 residues long and differ by one amino acid. The Ds differ markedly in sequence (20% homology) and size (10 and 20 residues). These findings strongly indicate multiple (at least two) D genes which by a combinatorial joining mechanism diversify the H-chains, a mechanism which is not operative in the chicken L-chain locus. The most notable among the chicken Igs is the so-called 7S IgG because its H-chain differs in many important aspects from any mammalian IgG. The sequence of the C gamma cDNA reported here resolves this issue. The chicken C gamma is 426 residues long with four CH domains (unlike mammalian C gamma which has three CH domains) and it shows 25% homology to the chicken C mu. The chicken C gamma is most related to the mammalian C epsilon in length, the presence of four CH domains and the distribution of cysteines in the CH1 and CH2 domains. We propose that the unique chicken C gamma is the ancestor of the mammalian C epsilon and C gamma subclasses, and discuss the evolution of the H-chain locus from that of chicken with presumably three genes (mu, gamma, alpha) to the mammalian loci with 8-10 H-chain genes.

Amino Acid Sequence↗

Analyses of chicken immunoglobulin light chain cDNA clones indicate a few germline V lambda genes and allotypes of the C lambda locus.

cDNA libraries of chicken spleen and Harder gland (a gland enriched with immunocytes) constructed in pBR322 were screened by differential hybridization and by mRNA hybrid-selected translation. Eleven L-chain cDNA clones were identified from which VL probes were prepared and each was annealed with kidney DNA restriction digests. All VL probes revealed the same set of bands, corresponding to about 15 germline VL genes of one subgroup. The nucleotide sequences of six VL clones showed greater than or equal to 85% homology, and the predicted amino acid sequences were identical or nearly identical to the major N-terminal sequence of L-chains in chicken serum. These findings, and the fact that the VL clones were randomly selected from normal lymphoid tissues, strongly indicate that the bulk of chicken L-chains is encoded by a few germline VL genes, probably much less than 15 since many of the VL genes are known to be pseudogenes. Therefore, it is likely that somatic mechanisms operating prior to specific triggering by antigen play a major role in the generation of antibody diversity in chicken. Analysis of the constant region locus (sequencing of CL gene and cDNAs) demonstrate a single CL isotype and suggest the presence of CL allotypes.

Amino Acid Sequence↗

Age and aphasic syndromes.

275 patients with CVA and 62 with CCI were examined within one month of the event and again, after 4-6 months. Previous reports have indicated that the average age of patients with Wernicke's aphasia is significantly higher than that of Broca's aphasia. Our findings after the second examination, support these reports. First month examinations, however, showed only a weak trend, lacking statistical significance. Our findings did not show more fluent aphasia in older patients than in younger ones. There is minimal literature on the positive relationship between age and auditory comprehension in aphasia. We found this to be the most highly correlated relationship. Our studies emphasize the importance of changes during the early post-event period in comparing aphasic syndromes in older versus younger patients, since there is a clear shift in the age/syndrome relationship in that period. Age differences in such changes can affect prognosis for rehabilitation.

Adult↗

Type of aphasia: relationship to age, sex, previous risk factors, and outcome of rehabilitation.

Relationship of types of aphasia in hemiplegics to survival, outcome of rehabilitation, activities of daily living (ADL) and pre-existing risk factors, hypertension (HT), ischemic heart disease (IHD), diabetes mellitus (DM) were studied in a group of 257 patients. The control group was a large population of CVA cases previously documented. Four main categories were considered: expressive-receptive (global), predominantly expressive (Broca), predominantly receptive (Wernicke) and predominantly amnestic (anomia) aphasias. 40% of each category were female. No clear pattern emerged concerning relationship with risk factors; however, hypertension, the factor most frequently encountered, was significantly less prevalent among expressive ahphasics, and diabetes mellitus was rare among those with the receptive pattern. For all categories, the most frequent etiology was thrombosis, the second being embolia. The oldest groups were the expressive-receptive and the predominantly receptive aphasia groups: showed the poorest rehabilitation outcome in both ADL and locomotion, and lived less time after stroke (5.8 years). Amnestic and expressive patients were younger and fared better in all other parameters; an etiology of embolia was much more frequent among the former. It can be said that patients with the expressive-receptive kind of aphasia have the worst survival and rehabilitation prognoses.

Activities of Daily Living↗

The transition stages between the main aphasic syndromes.

One of the basic features of most aphasic patients is their clinical dynamics, i.e. the continuous change in language function. The functional Dynamic Approach on which our rehabilitation program is based, can be expressed as a model of dynamic movement in which a patient's progress from one syndrome to another can be documented quantitatively. In this study we have concentrated on the initial emergence of patients out of the major syndrome categories. Our language test "I.L.A.T." provides for the evaluation of changes in the four language functions. Relative changes are charted by establishing a theoretical maximum performance to be expected in an aphasic population and noting improvements from the initial condition towards that point. Quantification of the proposed transitional stages are currently being developed to document our clinical insights.

Anomia↗