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C Reiss

Publications and source records attributed to C Reiss.

At least 37 records · Page 2Linked to original sources

Transcription in vivo directed by consensus sequences of E.coli promoters: their context heavily affects efficiencies and start sites.

We studied in vivo transcription and gene expression directed by a series of synthetic sequences, bearing the consensus hexamer (CH) pair of E.coli promoters in various contexts. The results demonstrate that, for the contexts tested, the CH pair supports transcription activity and gene expression, whether the spacer linking them is AT or GC rich, or is as short as 14 bp or as large as 26 bp (standard size 17 bp). However, we find that the context influences transcription efficiency by as much as an order of magnitude, and is able to scatter transcription start sites over a region of as much as 30 bp, including start sites within a CH or even between the two sequences of the CH pair. The results demonstrate that, although the CH pair can be sufficient for directing transcription by E.coli RNAP, important determinants for promoter activity are at least in part contained in the context of the consensus sequences; they advocate a synergic interplay of signals borne by the CH pair and its context, extending over all parts of the promoter sequence. A two-step model is proposed, in which properly located consensus sequences provide RNAP with facilities required for stereospecific docking along the promoter sequence; the result would be a sharp change in the local environment of the double helix inducing local isothermal unwinding. The size of the loop (related to the AT constraint in the promoter) and the extend of the environmental change required for unwinding would determine the rate of transcriptionally competent complex formation, positioning and grouping of start sites.

Base Sequence↗

How Escherichia coli RNA polymerase can negatively regulate transcription from a constitutive promoter.

We previously described the structures and functions of specific complexes between the bla promoter from Tn3 (present in pBR322) and RNA polymerase (RNAP), showing that, at excess RNAP, complexes can form in which one or two RNAPs bind to the same promoter (1:1 and 2:1 complexes) (Duval-Valentin and Ehrlich, 1988). We report here that the 2:1 complex cannot be detected below 25 degrees C; above that temperature, a 1:1 complex forms at a rate one order of magnitude faster than that of the 2:1 complex, and above 30 degrees C, the amounts of both species become equal for RNAP/promoter ratio r30 less than or equal to r less than or equal to 70. The 2:1 complex decays back to a 1:1 complex losing the last RNAP at a rate about three times that of the 1:1 complex decay. Functional assays of the complexes formed at excess RNAP show that both 1:1 and 2:1 complexes are immediately and permanently inhibited, even when the promoters are pre-incubated with ribonucleotide selections potentially enabling entrance into abortive cycling or formation of a stressed complex. We conclude that the inhibition step probably takes place in the complex formation pathway between RPi and RPo, at a novel stable intermediate isomer, RPj, formed above 25 degrees C. A possible mechanism of formation of the 2:1 complex is outlined. In vivo studies, in which r was modified by varying the bacterial growth rate, show a reduction of bla expression as r values are upshifted, specific to the bla promoter from Tn3.

DNA-Directed RNA Polymerases↗

In vivo gene expression directed by synthetic promoter constructions restricted to the -10 and -35 consensus hexamers of E. coli.

Two synthetic DNA sequences, carrying no other known E. coli promoter element than the consensus hexamers (CH) TTGACA (CH-35) and TATAAT CH(-10), spaced by 17 bp, were inserted in pBR329, in a position enabling transcription of the complete Cmr gene. The region upstream of the Cmr transcription start was carefully cleared of w.t. promoter elements (full deletion of the wild type (w.t.) Cmr promoter upstream +2 and large portion of an upstream coding sequence). Both synthetic promoters, which differ only by the sequences of the spacers (non consensus, constrained in AT or GC) support in vivo high level Cmr gene expression. The GC rich spacer is associated with transcription start at the usual +1 position, but with the AT rich spacer, transcription starts at several places, mainly in CH(-10). Rearranged promoter sequences derived from the synthetic ones upon transformation with partly ligated plasmids, yield new insights on the role of the standard CH pair, the size of the spacer and the sequence downstream of CH(-10).

Base Sequence↗

Sequence deduced physical properties in the D-loop region common to five vertebrate mitochondrial DNAs.

Some sequence-induced physical properties of the region of the replication origin in human, mouse, rat, ox and xenopus mitochondrial DNA have been studied: characteristic profiles of stability can be observed, a consensus pattern of hydrogen bond donor/acceptor associated to a symmetrical distribution of base roll angles variation is found upstream of the 5' ends of the D-loop strand. In spite of diversity, evolution has conserved the collective physical properties in parts of the origin of replication region suggesting specific functions for these non-coding sequences.

Animals↗

An algorithm for studying cooperative transitions in DNA.

Cooperative transitions in DNA (B to Z, B to A, helix to coil, etc.) are known to depend strongly on nucleotide sequence. In general the change in free energy involved in the transition can be expressed as: delta G(seq) = 2RT log (sigma) where sigma is a factor arising from the free energy associated with boundaries of different conformations along the molecule. This formula allows to infer a general algorithm with which DNA sequences can be partitioned into well defined domains in which, under suitable conditions, base pairs change state cooperatively. The different partitions of the sequence that can be generated by varying the values of the physical parameters involved in the above formula, are shown to be embedded into a binary tree hierarchy. Application to a reliable prediction of Z-DNA antibody binding sites will be illustrated for the 0X174 genome. Possible biological implications are briefly discussed.

Antibodies, Antinuclear↗

Specific and non specific Escherichia coli ribonucleic acid polymerase DNA complexes are not hydrodynamically equivalent in analytical band sedimentation.

We have measured the sedimentation coefficients (s) of different DNA molecules of a few thousand base bairs in the presence of increasing amounts of E. coli RNA polymerase under conditions where tight binding complexes are formed. The measured s does not increase linearly with n(n=RNA Polymerase/DNA molar ratio); the s vs n plot can be decomposed into two parts; first the increase in s is small until n reaches a value n0 approximately equal to the number of strong promoters of the DNA molecule under consideration, then when n greater than n0 the slope of s(n) is much higher. The observations are in agreement with a model which postulates that strong specific polymerase binding leads to an increase in frictional coefficient of the RNA Polymerase-DNA complex, while non specific(or less specific)RNAP binding leads to a contraction of the RNA Polymerase-DNA complexes.

Binding Sites↗

In vitro transcription initiation from three different Escherichia coli promoters. Effect of supercoiling.

Transcription initiation from beta-lactamase, tetracycline resistance and RNA 1 promoters, present in plasmid pAT153, were studied employing the abortive initiation technique. Assays appear to be promoter-specific with supercoiled and linear templates. Supercoiling enhances the isomerization rate constant of the open RNA-polymerase--promoter complex formation. Results agree with the in vivo behaviour of the corresponding promoters, and allow us to propose a hypothesis about the effect of supercoiling on transcription initiation.

DNA, Superhelical↗

Common features of polyomavirus mutants selected on PCC4 embryonal carcinoma cells.

The genomic rearrangements of six polyomavirus mutants selected on PCC4 embryonal carcinoma cells have been compared and their common characteristics pointed out. All mutants show a duplication which includes at least the adenovirus type 5 (Ad5) E1A-like enhancer core sequence plus a deletion of variable size and location. The presence of the second enhancer core sequence, the SV40-like enhancer, is not required for expression of the PyEC PCC4 phenotype. Two of these mutants are also able to express polyomavirus T antigen on F9 and LT1 cells. Multiadaptation seems to require the duplication of the Ad5 E1A-like core sequence, the maintenance of the SV40-like core sequence and a local change in DNA stability.

Animals↗

Local stability involved in characterizing and controlling promoters in eukaryotes.

Eukaryotic promoters with known in vivo activities have been analysed for characteristic stability patterns. Correlation of transcription yield in promoter mutants with size and stability of individual domains of the promoter stability profile supports the conclusion that eukaryotic promoters are built up by at least three elements: a region enabling the transcription ("enhancer"), with a characteristic stability pattern; an activator domain, with high GC content, whose activator potential is controlled by the domain stability and length; a trap domain, with high AT content, setting the cap site. The activated enzyme undergoes a steady deactivation process, losing half of its activity upon moving 55 bases between the activator and the trap site.

Base Composition↗

Promoter recognition and transcription initiation in E. coli.

Analysis of stability maps of sequences harbouring E. coli RNA polymerase promoters shows a characteristic splitting in homostable domains, despite the heterogeneity of the sequences. Correlation of stability maps with results from static approaches giving the contact points of the enzyme on promoters and functional studies employing abortive initiation assay allow us to propose a general mechanism for recognition of promoters and transcription start.

Base Composition↗

Physical characteristics in eucaryotic promoters.

For a series of wild type and mutated eucaryotic gene prelude sequences (mainly "promoters" of SV40 early gene (Benoist and Chambon, Nature 290, 304 (1981); Moreau et al., Nuc. Acids Res. 9, 6047 (1982)) and of Herpes Simplex Virus TK gene (McKnight and Kingsbury, Science 217, 316 (1982)), in vivo promoter activity and local stability (denaturability) have been correlated. In agreement with the conclusions drawn in these papers, the correlation points to three major eucaryotic promoter elements and loci: (i) enzyme enabling by an enhancer sequence; SV40 and Moloney Sarcoma Virus enhancers have a striking stability homology; (ii) enzyme activation, occurring 50-70 b.p. upstream the cap site in a high stability domain; the enzyme apparently deactivates exponentially upon moving away to trap site; (iii) enzyme positioning at trap site, 30 +/- 5 b.p. upstream the cap site. The trap site contains the TATA box, or, when absent, other low stability domains downstream the activator. The number and occupancy of cap sites may depend on the stability and size of the trap site-cap site couple and its distance from the activator.

Base Composition↗

Key for protein coding sequences identification: computer analysis of codon strategy.

The signal qualifying an AUG or GUG as an initiator in mRNAs processed by E. coli ribosomes is not found to be a systematic, literal homology sequence. In contrast, stability analysis reveals that initiators always occur within nucleic acid domains of low stability, for which a high A/U content is observed. Since no aminoacid selection pressure can be detected at N-termini of the proteins, the A/U enrichment results from a biased usage of the code degeneracy. A computer analysis is presented which allows easy detection of the codon strategy. N-terminal codons carry rather systematically A or U in third position, which suggests a mechanism for translation initiation and helps to detect protein coding sequences in sequenced DNA.

Amino Acid Sequence↗

[Nutritional therapy of tumor patients before, during and after radiotherapy with a new promoter system--Nutromat].

Nutrition and metabolism are vital functions just as respiration and cardio-vascular function which influence general well-being, physical and mental capacity, immunocompetence and wound healing. Malnutrition is a high-risk factor and carries a high morbidity and mortality. 30-50% of our patients nowadays are malnourished. Particularly tumor patients suffer from malnutrition which is still aggravated by radiotherapy and its side effects. Therefore the accompanying alimentary guidance and treatment are very important factors. A plan comprising several degrees from dietary guidance, forced oral and enteral nutrition to intravenous hyperalimentation has proved to be practicable. For the ambulatory radiotherapy of our ORL-patients, we have recently been applying a Nutromat, a promoter system operating according to the Bakey pump system and serving for continuous or discontinuous enteral nutrition therapy with formula or elementary diets. The authors describe principle and function of the device and present their first experiences. By using early and consequently this device for our irradiated patients, we hope to prevent or heal malnutrition, ameliorate the tolerance of tumor therapy and the patient's energy, increase the physical and psychical health, reduce the incidence of complications, reestablish the immunocompetence, and improve the survival and life quality of the patients.

Abdominal Neoplasms↗

[Analysis of the stability and local cooperativity of DNA: proposal of a molecular mechanism for the initiation of the transcription of gene A3 of bacteriophage T7 by the RNA polymerase from E. coli].

RNA polymerase (RNAP) complexed to the A3 promoter of bacteriophage T7 is known to unwind a DNA segment located downstream of the Pribnow box. This finding can be accounted for if it is assumed that the subunit sigma of RNAP unstabilizes three GC base pairs located just upstream of the transcription start. As a consequence, the rate of promoter utilisation might be related to the relative stability of the DNA between the "Pribnow box" and the transcription start.

Base Composition↗

[Analysis of the stability and local cooperativity of DNA : elements permitting the recognition of promoters by DNA-dependent RNA polymerase].

Analysis of the local stability of promoters processed by E. Coli RNA polymerase shows that they bear a characteristic stability profile: two segments of low stability are located around --35 and --8 bases ahead of the transcription start and are generally bordered by more stable segments. This key profile may act as a recognition signal for both attracting and positioning the RNA polymerase in the promoter site.

Base Sequence↗

[Use of the degeneracy of the genetic code by selective pressure to cut up genes of procaryote genomes].

The DNA sequences of three bacteriophages are analysed in order to localise those parts coding for a protein. A weak stability on the DNA molecule allows us to characterize the beginning and the end of genes. A survey of the codons used shows that the cause for this weak stability is the systematic use of A-T bases in third position, which is made possible by the degeneracy of the genetic code.

Bacteriophage phi X 174↗

[Action and teleaction of specific ligands on DNA: a quantitative study with Azbel's model and an application to the regulatory mechanism of the lac operon].

Assuming that the action of specific ligands is transferred to DNA via the bases in close contact with the ligand, which are stabilized (or destablized) in this process, the local and more distant action of the ligand on DNA can be evaluated quantitatively with the aid of Azbel's model. An application to the system regulating the E. coli lac operon is presented.

Base Sequence↗