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J Clos

Publications and source records attributed to J Clos.

At least 19 recordsLinked to original sources

Molecular modeling approaches for determining gene function: application to a putative poly-A binding protein from Leishmania amazonensis (LaPABP).

The great expansion in the number of genome sequencing projects has revealed the importance of computational methods to speed up the characterization of unknown genes. These studies have been improved by the use of three dimensional information from the predicted proteins generated by molecular modeling techniques. In this work, we disclose the structure-function relationship of a gene product from Leishmania amazonensis by applying molecular modeling and bioinformatics techniques. The analyzed sequence encodes a 159 amino acids polypeptide (estimated 18 kDa) and was denoted LaPABP for its high homology with poly-A binding proteins from trypanosomatids. The domain structure, clustering analysis and a three dimensional model of LaPABP, basically obtained by homology modeling on the structure of the human poly-A binding protein, are described. Based on the analysis of the electrostatic potential mapped on the model's surface and conservation of intramolecular contacts responsible for folding stabilization we hypothesize that this protein may have less avidity to RNA than it's L. major counterpart but still account for a significant functional activity in the parasite. The model obtained will help in the design of mutagenesis experiments aimed to elucidate the mechanism of gene expression in trypanosomatids and serve as a starting point for its exploration as a potential source of targets for a rational chemotherapy.

Animals↗

The heat shock protein 90 of Leishmania donovani.

The 90-kDa heat shock protein (Hsp90) of Leishmania donovani is a highly abundant cytoplasmic protein and is involved in a variety of cellular processes. Pharmacological deactivation of Hsp90 leads to growth arrest and induces the synthesis of heat shock proteins. Moreover, treatment of promastigote parasites with Hsp90 inhibitors induces the synthesis of amastigote-specific marker proteins and a morphological alteration similar to axenic amastigote differentiation. We propose a role for Hsp90 in the feedback control of the cellular stress response and in the control of the parasite's life cycle.

Animals↗

Use of genetic complementation to identify gene(s) which specify species-specific organ tropism of Leishmania.

We have employed a genetic complementation screening to identify genetic markers of heat stress tolerance and visceralisation of Leishmania infection. Leishmania major, which has a low thermotolerance and which causes cutaneous lesions, was transfected with a cosmid library of L. donovani DNA. The recombinant parasites were then screened either for thermotolerance or selected by repeated passage in BALB/c mice. Cosmids which conferred selective advantage were isolated. Several strategies were tested to identify the gene(s) within the cosmids responsible for the observed selective advantages. Of the approaches tested, the complete sequence analysis of the cosmids and subsequent screening of defined candidate ORFs proved to be the method of choice. Other approaches, such as creation of sub-libraries or transposon insertion strategies proved to be unsuccessful.

Animals↗

Heat shock protein 100 and the amastigote stage-specific A2 proteins of Leishmania donovani.

HSP100 protein in Leishmania spp. plays an important role for the survival and integrity of intracellular amastigotes. The A2 proteins of L. donovani are functionally linked to HSP100. There is evidence for an interdependence between these two proteins, which are both expressed predominantly in the amastigote stage of Leishmania donovani. Mutant strains lacking either of these proteins display very similar phenotypes, i.e. loss of virulence both in vivo and in vitro. Also, both proteins colocalise specifically to small foci within the cytoplasm of amastigotes.

Amino Acid Sequence↗

Heat shock protein 90 homeostasis controls stage differentiation in Leishmania donovani.

The differentiation of Leishmania parasites from the insect stage, the promastigote, toward the pathogenic mammalian stage, the amastigote, is triggered primarily by the rise in ambient temperature encountered during the insect-to-mammal transmission. We show here that inactivation of heat shock protein (Hsp) 90, with the use of the drugs geldanamycin or radicicol, mimics transmission and induces the differentiation from the promastigote to the amastigote stage. Geldanamycin also induces a growth arrest of cultured promastigotes that can be forestalled by overexpression of the cytoplasmic Hsp90. Moreover, we demonstrate that Hsp90 serves as a feedback inhibitor of the cellular heat shock response in Leishmania. Our results are consistent with Hsp90 homeostasis serving as cellular thermometer for these primitive eukaryotes, controlling both the heat shock response and morphological differentiation.

Animals↗

Expression and subcellular localization of cpn60 protein family members in Leishmania donovani.

We have identified two diverged members of the cpn60 gene family in Leishmania donovani, causative agent of Indian Kala Azar. One of the genes, cpn60.1, although actively transcribed, is not expressed to detectable levels of protein in cultured L. donovani. The other gene, cpn60.2, which, compared with cpn60.1, shows a higher sequence conservation with the hsp60 genes from Trypanosoma brucei and Trypanosoma cruzi is expressed constitutively in cultured promastigotes. The abundance of the gene product, Cpn60.2, increases by 2.5-fold under heat stress and in axenic amastigotes of L. donovani. Cpn60.2 is also found enriched in mitochondrial cell fractions and localizes to the mitochondrial matrix. We conclude that Cpn60.2 is the major mitochondrial chaperonin in Leishmania.

Amino Acid Sequence↗

A novel role for 100 kD heat shock proteins in the parasite Leishmania donovani.

Heat shock proteins of the 100 kD family have been known to confer general stress tolerance in yeast and plants. Several protozoan parasites possess genes for Hsp100 proteins. In Leishmania species the protein is expressed under heat stress and during the mammalian stage, the amastigote. We show here that replacement of the clpB gene which encodes Hsp100 does not affect thermotolerance or general viability in Leishmania donovani insect stages (promastigotes) nor in axenically cultured mammalian stages (amastigotes). However, its expression is required for normal development of the parasite inside mammalian host cells. Hsp100 appears to function as an antagonist of amastigote-to-promastigote differentiation and a promoter of full amastigote development.

Animals↗

Leishmania donovani heat shock protein 100. Characterization and function in amastigote stage differentiation.

We report the cloning and molecular analysis of the Leishmania donovani clpB gene. The protein-coding region is highly conserved compared with its L. major homologue, while 5'- and 3'-flanking DNA sequences display considerable divergence. The encoded mRNA has an unusually long 5'-leader sequence typical for RNAs, which are translated preferentially under heat stress. The gene product, a 100-kDa heat shock protein, Hsp100, becomes abundant only during sustained heat stress, but not under common chemical stresses. Hsp100 associates into trimeric complexes and is found mostly in a cytoplasmic, possibly membrane-associated, localization as determined by immune electron microscopy. Hsp100 shows immediate early expression kinetics during axenic amastigote development. In its absence, expression of at least one amastigote stage-specific protein family is impaired.

Animals↗

Two peptides derived from the nerve growth factor precursor enhance cholinergic enzyme activities in vivo.

LIP1, a 29-amino acid (aa) peptide, and LIP2, a 38aa peptide, corresponding to sequences within the nerve growth factor (NGF) precursor that are flanked by basic amino acid processing sites, were shown to be present in the rat intestine and to induce in PC12 cells several early cellular events, such as F-actin rearrangement and tyrosine phosphorylation of the Trk protein. In this report, we provide evidence that the two propeptides can affect cholinergic enzyme activities in vivo. Intracerebroventricular injections of LIP1 or LIP2 in neonatal hypothyroid rats significantly increased choline acetyltransferase (ChAT) and acetylcholinesterase (AChE) activities in forebrain regions with an apparent regional specificity. Moreover, antibodies against LIP1 or LIP2 injected intracerebroventricularly in neonatal rats significantly decreased ChAT and AChE in the same regions of the brain. These data suggest a physiological role for the two propeptides derived from the proNGF in the development of forebrain cholinergic neurons.

Acetylcholinesterase↗

Transcription of the Leishmania major Hsp70-I gene locus does not proceed through the noncoding region.

Primary transcripts in kinetoplastid protozoa are generally assumed to be multicistronic. We have analyzed the transcription in the gene locus which encodes the 70-kDa heat shock protein by using nuclear run-on analysis. We find that RNA synthesis in the Hsp70-I gene locus either is terminated or pauses within the intergenic region approximately 250 nt downstream of the polyadenylation site. We therefore propose a discontinuous mode of transcription in the Hsp70 genes of Leishmania major.

Animals↗

Autocrine regulation of apoptosis and bcl-2 expression by nerve growth factor in early differentiating cerebellar granule neurons involves low affinity neurotrophin receptor.

Cerebellar granule neurons produce homogenous cultures that provide a unique opportunity for quantifying the apoptosis by propidium iodide- and deoxynucleotidyl transferase-flow cytometry combined analysis and for studying its regulation by neurotrophins. Nerve growth factor (NGF) was found to promote postmitotic survival by preventing apoptosis of newly formed and early differentiated granule neurons. This regulation could be through protein bcl-2, which was underexpressed in apoptotic granule neurons and up-regulated by NGF in a dose-dependent manner. Antibodies against low affinity NGF receptors (p75NTR) mimicked the effects of NGF, suggesting that this receptor, which is transiently expressed at high levels in postmitotic granule neurons, is involved in apoptosis signaling. Since these neurons constitutively produce NGF, this is the first demonstration of an autocrine regulation of apoptosis in the CNS. Preliminary results strongly suggest that neurotrophin-3 (NT-3) and brain derived neurotrophic factor (BDNF) are also involved in the regulation of cell death, by first promoting necrosis and then protecting the remaining cells from apoptosis. In contrast, NGF may protect against two forms of cell death and act preferentially at early stages of granule neuron development. The possibility that these neurotrophins may act in parallel and/or in sequence to regulate survival of developing granule neurons through different mechanisms is discussed in the light of findings on neurotrophin and p75NTR patterns, and p75NTR/high affinity Trk receptor coexpression.

Animals↗

Leishmania major Hsp100 is required chiefly in the mammalian stage of the parasite.

In Leishmania major a 100-kDa heat shock protein, Hsp100, is abundant in the intracellular amastigote stage which persists in the mammalian host. A replacement of both clpB alleles which encode Hsp100 does not affect promastigote viability under standard culture conditions but impairs thermotolerance in vitro. In experimental infections of BALB/c inbred mice, the lack of Hsp100 in the gene replacement mutants results in a markedly delayed lesion development compared with that in infections with wild-type L. major. Overexpression of exogenous clpB gene copies can partly restore virulence to the gene replacement mutants. Genetic-selection experiments also reveal a strong pressure for Hsp100 expression in the mammalian stage. This requirement for Hsp100 was also observed in in vitro infection experiments with mouse peritoneal macrophages. These experiments indicated a role for Hsp100 during the development from the promastigote to the amastigote stage. Our results suggest an important role for this parasite heat shock protein during the initial stages of a mammalian infection.

Animals↗

cdk5 expression and association with p35nck5a in early stages of rat cerebellum neurogenesis; tyrosine dephosphorylation and activation in post-mitotic neurons.

We have examined the expression of cyclin dependent kinase (cdk) 5 protein kinase and p35nck5a, its activator subunit, during postnatal neurogenesis in rat cerebellum, using mono-specific antibodies. Both cdk5 and p35nck5a are present and associated in proliferative stages, although cdk5-p35 kinase activity is barely detectable. Cdk5-p35 activity, but not the expression of either subunit, increases up to 6-fold during neuronal differentiation. Since we observe that cdk5 is phosphorylated on tyrosine in proliferative, but not in post-mitotic stages, we suggest that post-translational regulatory mechanisms control cdk5-p35 protein kinase activity during neurogenesis.

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↗

High constitutive levels of heat-shock proteins in human-pathogenic parasites of the genus Leishmania.

We have analysed the transcription of three heat-shock genes, HSP70, HSP83 and ClpB, in the protozoan parasite Leishmania. All three heat-shock genes are transcribed constitutively and not heat-inducibly. However, we find that two major heat-shock proteins, HSP70 and HSP83, are synthesized at elevated rates during heat stress. We conclude that the cellular stress response in Leishmaniae is regulated exclusively on a post-transcriptional level much in contrast with all other eukaryotes examined so far. The induced synthesis of HSP70 and HSP83, however, does not increase the steady-state level of either protein significantly. This is compensated by high constitutive levels of both proteins: HSP70 and HSP83 make up 2.1% and 2.8%, respectively, of the total protein in unstressed Leishmania promastigotes. Also, HSP70 is a strictly cytoplasmic protein in Leishmania and does not relocate into the nucleus during heat stress, as it does in other eukaryotes examined in the past.

Animals↗