PubMed Health⌕ Search

Biomedical subjects

J J Kupiec

Publications and source records attributed to J J Kupiec.

15 recordsLinked to original sources

Local and spatial factors determining HIV-1 protease substrate recognition.

Insertional mutagenesis of the Escherichia coli thymidylate synthase (TS) was used to address substrate recognition of HIV-1 protease in a well characterized structural context. By modifying the TS conformation while maintaining its enzymic activity, we investigated the influence of protein folding on protease-substrate recognition. A slight destabilization of the TS structure permitted the cleavage of a target site, which was resistant in the native TS. This result supports a dynamic interpretation of HIV-1 protease specificity. Exposure time of the potential cleavage site, which depends on the stability of the global conformation, must be compatible with the cleavage kinetics, which are determined by the local sequence. Cleavage specificity has been described as the consequence of cumulative interactions, globally favourable, between at least six amino acids around the cleavage site. To investigate influence of local sequence, we introduced insertions of variable lengths in two exposed loops of the TS. In both environments, insertion of only two amino acids could determine specific cleavage. We then inserted libraries of dipeptides naturally cleaved by the HIV-1 protease in order to assess the limitations of established classifications of substrates in different conformational contexts.

Amino Acid Sequence↗

Structural and functional analysis of surface domains unique to bacteriophage T4 thymidylate synthase.

The bacteriophage T4 genome encodes most of its own enzymes for dNTP synthesis, which form a complex in infected Escherichia coli. The T4 thymidylate synthase (TS) and the T4 deoxycytidylate deaminase (CD) catalyze sequential reactions and are physically linked within this complex [McGaughey, K. M., Wheeler, L. J., Moore, J. T., Maley, G. F. , Maley, F., and Mathews, C. K. (1996) J. Biol. Chem. 271, 23037-23042]. From the crystal structure of T4TS [Finer-Moore, J. S., Maley, G. F., Maley, F., Montfort, W. R., and Stroud, R. M. (1994) Biochemistry 33, 15459-15468], it appears that three regions corresponding to insertions relative to E. coli TS lie on one side of the enzyme surface. We have investigated the residual activity of T4TS in response to complete deletion or substitution mutagenesis of these insertions. Two deletions generated in the small domain (residues 70-103) reduced the TS activity to 0.2% and 0.7% of the wild-type activity, with the latter able to complement growth of a thyA- E. coli strain in the absence of thymidine. By insertion of exogenous sequences variable in length and in sequence into these deletion mutants, enzyme activity increased to 44% that of the wild type. Restoration of the TS activity depended mostly on the hydrophobicity of the inserted residues. The sites of insertions also displayed distinct permissiveness for accommodating the exogenous insertions. Deletions and substitutions near the C-terminus resulted in complete inactivation of the T4TS. Proteolysis experiments revealed that the modified surface loops of the small domain were still accessible and flexible for protein-protein interactions. We have used ELISA to detect a physical association between T4TS and T4CD and compared the binding affinity of WT T4TS for two purified insertion mutants of T4CD. The results obtained showed that the native sequences of the small domain inserts are not required for T4TS/T4CD complex formation.

Amino Acid Sequence↗

A Darwinian theory for the origin of cellular differentiation.

In this theory, cell differentiation is a two-step mechanism at each stage of development. In the first step, gene expression is unstable. It occurs stochastically and produces different cell types. In the second step gene expression is stabilized by means of cellular interactions. However, this stabilization cannot occur until the combination of cell phenotypes corresponding to the developmental stage is expressed. This selection mechanism prevents disorganizing consequences of stochasticity in gene expression and directs the embryo towards the adult stage. Instability and stochasticity in gene expression are caused by random displacement of regulators along DNA, whereas phosphorylation and/or dephosphorylation of transcriptional regulators triggered by signal transduction between cells are responsible for the stabilization of stochastic gene expression. The origin of cellular differentiation is explained as an adaptation of cells to metabolic gradients created by substrate diffusion inside growing cell populations. This mechanism provides cells with complementary metabolism, increasing their ability to use food resources. Because the metabolic gradients are dependent on external substrate concentrations, cellular differentiation can also be viewed as an extension of natural selection inside organisms.

Animals↗

Conversion of thymidylate synthase into an HIV protease substrate.

Thymidylate synthase (TS) is an essential enzyme of DNA metabolism. We have carried out an extensive insertional mutagenesis of the Escherichia coli TS gene (thyA) using three different methods. Insertion of exogenous sequences at unique restriction sites or at random positions produced defective mutants, whereas comparison of TS sequences from different species allowed us to identify six zones permissive for insertions of exogenous sequences. The insertion of Human immunodeficiency virus type 1 (HIV-1) protease substrate sequences into the permissive sites converted TS to an HIV-1 protease substrate, and the in vivo cleavage of these insertions by the cloned HIV-1 protease conferred a thymidylate synthase-deficient phenotype in some of our E. coli mutant strains. In agreement with crystallographic data, these results show that the permissive sites are located in regions of the TS protein not essential for enzyme activity and accessible to cleavage by HIV protease. These results also show that it is possible to control a growth phenotype in E. coli through the protease-mediated destruction of an essential metabolic enzyme. Because both wild type and thymidylate synthase-deficient phenotypes are selectable on the appropriate growth medium, these thyA mutants could be used for genetic selections of protease inhibitors and analysis of protease specificities.

Amino Acid Sequence↗

Sequence analysis of the simian foamy virus type 1 genome.

We have cloned the simian foamy virus type 1 genome (SFV1) and determined its nucleotide sequence. Analysis of this genome reveals, in addition to the usual genes encoding retroviral capsid, reverse transcriptase, and envelope protein (respectively, gag, pol, and env), two open reading frames (ORFs) between env and the long terminal repeat with partial homology to the human foamy virus (HFV) bel1 and bel2 genes. The first ORF could code for a polypeptide of 312 amino acids (aa) showing 40% homology with the HFV bel1 putative gene product. A more detailed analysis showed that the protein encoded by this ORF would have features characteristic of known trans-activating proteins. The second ORF could code for a polypeptide of 403 aa showing 38% homology with the putative HFV bel2 gene product. Moreover, the 5' extremity of the RNA genome can be folded into a secondary structure identical to the Tat-response element of human immunodeficiency viruses. A phylogenetic tree of retroviruses, including SFV1 and HFV, was constructed. It showed at the molecular level that Spumavirinae, previously classified on the basis of their morphology and their biological properties, constitute a separate group. The homology between SFV1 and HFV reaches 89% in the reverse transcriptase domain of the pol gene. but is much smaller in other parts of the genome.

Amino Acid Sequence↗

Further characterization of the gapped DNA intermediates of human spumavirus: evidence for a dual initiation of plus-strand DNA synthesis.

We recently reported the presence of linear duplex DNA intermediates with a gap in the middle of the molecules in the replicative cycle of human (HSRV) and simian (SFV1) spumaviruses. The polypurine tract (PPT), at the 5' boundary of the 3' long terminal repeat, was found to be duplicated in the gap region. By molecular analysis of HSRV proviral DNA with region- and strand-specific probes, we have now determined that the gap is located on plus-strand DNA and that it is 120 bases long with the 3' end mapping at the duplicated PPT site. Kinetic analysis of proviral DNA provided evidence that the gap did not result from processing of a complete, full-length DNA molecule. These data strongly suggest that plus-strand DNA synthesis is initiated at both PPT sites.

Base Sequence↗

5' LTR complete nucleotide sequence of Chinese hamster intracisternal A-particle.

Retrovirus like sequences homologous to mouse IAP are present in Chinese hamster genome (Lueders K.K. and Kuff, E.L., 1981, 1983, Servenay et al., 1990). Murine IAP long terminal repeats (LTRs) can function as effective promoters in different cell types (Horowitz M. et al., 1984, Howe, C.C. et al., 1986). Thus CHO IAP sequences could act as retrotransposons in the cellular genome, and in this way affect the expression of other genes at the target sites. We had sequenced previously a Chinese hamster IAP genomic region corresponding mainly to the gag gene and including 57 nucleotides of U5 5' LTR (Servenay et al., 1988). In this paper, we present the 5' LTR complete nucleotide sequence of the Chinese hamster IAP element and its comparison with those of mouse and Syrian hamster.

Animals↗

Molecular cloning and characterization of retrovirus-like intracisternal type A particle genes (IAP) present in the Chinese hamster genome.

Endogenous retrovirus-like sequences that are homologous to the multigenic murine and Syrian hamster intracisternal type A particle (IAP) genes can be detected in very few copies in the Chinese hamster (CH) genome. They were cloned from a CHO gene library and two recombinants, harboring the major IAP-like DNA genes characterized by Southern blot hybridization after DNA digestion with several restriction enzymes. The IAP DNA inserts of the two clones analyzed were 4.70 and 8.04 kb respectively, allowing us to construct a physical map of our Chinese hamster clone that represents an almost complete IAP element.

Animals↗

Gene regulation and DNA C-value paradox: a model based on diffusion of regulatory molecules.

The general idea of the model is that regulatory molecules can move stochastically from site to site along DNA and that according to their chromosomal position, genes should have a more or less high probability to be activated (or repressed) during differentiation. In this model the role of non coding DNA is to maintain genes in a relative position that determines what is usually called the "differentiation programme".

Cell Differentiation↗

Evidence for a gapped linear duplex DNA intermediate in the replicative cycle of human and simian spumaviruses.

Two forms of linear DNAs have been found in simian (SFV1) and human (HSRV) spumaviruses: a linear duplex unsensitive to nuclease S1 and a sensitive structure with a single-stranded gap. Two nuclease S1 sensitive sites, mapping at the same position for both viruses, have been identified in the gapped structure. Using different molecular subgenomic clones of HSRV as probes in Southern blot analysis, one S1 site was localized in the 3'LTR and the other near the middle of the molecule at about 6.5 kbp from the 5' end of the viral genome. The latter site was shown to correspond to a single stranded region within the linear duplex DNA. Nucleotide sequence analysis revealed that the polypurine tract (PPT) usually found at the 5' boundary of the 3'LTR of retroviruses, is duplicated in HSRV at the 3' end of the pol gene, near the gap. This suggests that the synthesis of plus strand DNA is discontinuous, generating the gap.

Animals↗

Multi-file searching: a review of the current situation.

This paper investigates the problems of multi-file searching, which have arisen from the recent expansion of data-bases. The papers presented on this theme at the recent European MEDLINE Workshop are summarized. Special emphasis is placed on the specificity of searching NLM files on ELHILL, based on a survey of their actual use among the French network of associate centres. Recommendations for improving multi-file searching in ELHILL are also listed.

Humans↗