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A versatile class of positive-selection vectors based on the nonviability of palindrome-containing plasmids that allows cloning into long polylinkers.

Several families of positive-selection cloning vectors were constructed, based on the principle of palindrome nonviability first used by Hagan and Warren [Gene 19 (1982) 147-151]. Each vector, derived from either pBR322 or RSF1010 (a broad-host-range plasmid), contains a long inverted repeat (2 x 366 to 2 x 1008 bp) ending in a symmetrical polylinker. Plasmids with long palindromes are not viable in most strains of Escherichia coli and in at least one Gram-positive bacterium. These palindrome-containing vectors therefore transform such strains at a very low frequency unless a DNA fragment is cloned within the polylinker at the center of the palindrome. Transformation by plasmids lacking an insert is reduced by two to four orders of magnitude. Such vectors can be propagated in a palindrome-tolerant strain; however, long symmetrical deletions then occur within the palindrome. To suppress the resulting deletion derivatives, vectors have been constructed so that an extensive deletion would remove the selectable marker. Alternatively, the vectors can be propagated in any strain of E. coli so long as the palindrome is interrupted by a nonpalindromic DNA fragment. We also present several symmetrical polylinkers and drug-resistance cassettes within the vectors. These components can be interchanged to make new positive-selection vectors as needed, and the cassettes are useful in insertional mutagenesis as well. A general method is described to convert virtually any small or medium-sized plasmid into a positive-selection vector.

Base Sequence↗

Impaired T-cell activation and cytokine productivity after transplantation of positively selected CD34+ allogeneic hematopoietic stem cells.

Transplantation of positively selected, CD34(+) peripheral blood stem cells from alternative donors frequently results in delayed immune reconstitution. A shift towards a type 2 cytokine production might be a major contributing factor. We therefore decided to measure IFN-gamma, IL-2, IL-4, and IL-10 after stimulation of peripheral mononuclear cells with PMA/ionomycin and on a single cell level by intracellular cytokine staining during different stages of immune reconstitution. Immediately after transplantation, secretion of all selected cytokines was substantially diminished, and remained subnormal compared to controls until the end of the first year despite normalizing T-cell levels. IL-2 was predominantly produced by CD4(+)CD45RA(+) naïve, whereas IFN-gamma originated mainly from CD8(+)CD45RO(+) memory T cells. Secretion of IL-2 was correlated with the numbers of naive CD4(+) T cells, whereas IFN-gamma secretion correlated with total CD3(+) T-cell counts. IL-4 and IL-10 were produced by CD4(+) and CD8(+) memory T cells; secretion of these cytokines was low, however, and did not increase during follow-up. Therefore, a shift towards a preferential production of type 2 cytokines could not be observed. Analysis of CD69 upregulation upon stimulation revealed a deficiency in patient T-cell activation, which unexpectedly comprised both naïve and memory T-cell subpopulations. Therefore, we suggest that a defect in T-cell activation intrinsic to the host and not graft-versus-host disease, post-transplant immunosuppression or a shift towards a type 2 cytokine pattern contributes to the impaired production of cytokines post-transplant. Further studies will focus on the elimination of host factors that may adversely affect T-cell function after transplantation.

Antigens, CD↗

Generalized and mobilizable positive-selection cloning vectors.

We have modified the positive-selection cloning vector pUN121 to expand the numbers of unique cloning sites by insertion of a multiple cloning site into the lambda cI gene without disrupting its repressor function, resulting in plasmid pSKM10. Plasmid pSKM10 has seven restriction enzyme sites suitable for general cloning purposes. A mobilizable version (pSKM11) of pSKM10 was constructed by insertion of the IncP mob sequence which permitted mobilization of the plasmid into a wide variety of Gram- bacteria.

Amino Acid Sequence↗

Evidence for positive selection on the floral scent gene isoeugenol-O-methyltransferase.

Isoeugenol-O-methyltransferase (IEMT) is an enzyme involved in the production of the floral volatile compounds methyl eugenol and methyl isoeugenol in Clarkia breweri (Onagraceae). IEMT likely evolved by gene duplication from caffeic acid-O-methyltransferase followed by amino acid divergence, leading to the acquisition of its novel function. To investigate the selective context under which IEMT evolved, maximum likelihood methods that estimate variable d(N)/d(S) ratios among lineages, among sites, and among a combination of both lineages and sites were utilized. Statistically significant support was obtained for a hypothesis of positive selection driving the evolution of IEMT since its origin. Subsequent Bayesian analyses identified several sites in IEMT that have experienced positive selection. Most of these positions are in the active site of IEMT and have been shown by site-directed mutagenesis to have large effects on substrate specificity. Although the selective agent is unknown, the adaptive evolution of this gene may have resulted in increased effectiveness of pollinator attraction or herbivore repellence.

Amino Acid Sequence↗

Geographic variation and positive selection on M7 lysin, an acrosomal sperm protein in mussels (Mytilus spp.).

Successful fertilization in free-spawning marine organisms depends on the interactions between genes expressed on the surfaces of eggs and sperm. Positive selection frequently characterizes the molecular evolution of such genes, raising the possibility that some common deterministic process drives the evolution of gamete recognition genes and may even be important for understanding the evolution of prezygotic isolation and speciation in the marine realm. One hypothesis is that gamete recognition genes are subject to selection for prezygotic isolation, namely, reinforcement. In a previous study, positive selection on the gene coding for the acrosomal sperm protein M7 lysin was demonstrated among allopatric populations of mussels in the Mytilus edulis species group (M. edulis, Mytilus galloprovincialis, and Mytilus trossulus). Here, we expand sampling to include M7 lysin haplotypes from populations where mussel species are sympatric and hybridize to determine whether there is a pattern of reproductive character displacement (RCD), which would be consistent with reinforcement driving selection on this gene. We do not detect a strong pattern of RCD; neither are there unique haplotypes in sympatry nor is there consistently greater population structure in comparisons involving sympatric populations. One distinct group of haplotypes, however, is strongly affected by natural selection, and this group of haplotypes is found within M. galloprovincialis populations throughout the Northern Hemisphere concurrent with haplotypes common to M. galloprovincialis and M. edulis. We suggest that balancing selection, perhaps resulting from sexual conflicts between sperm and eggs, maintains old allelic diversity within M. galloprovincialis.

Acrosome↗

Positive selection for uracil auxotrophs of the sulfur-dependent thermophilic archaebacterium Sulfolobus acidocaldarius by use of 5-fluoroorotic acid.

Uracil auxotrophs of Sulfolobus acidocaldarius were positively selected by using 5-fluoroorotic acid. The wild-type strain was unable to grow in medium containing 5-fluoroorotic acid, whereas the mutants grew normally. Positive selection could be done for the auxotrophs. Mutants deficient in orotidine-5'-monophosphate pyrophosphorylase activity were isolated.

Culture Media↗

Motor response of the leg muscles produced by position-selective stimulation of spinal nerve roots.

OBJECTIVE: To define and measure motor responses of the leg muscles in the ankle associated with position-selective and tetanic stimulation of spinal nerve roots L3-S1. METHODS: Sixteen lumbosacral spinal nerve roots in 14 subjects were stimulated intraoperatively after surgical exposure and decompression for a herniated disc. Each contact of a spiral cuff multielectrode was wrapped around the root and used to excite a spatially defined population of axons beneath the electrode. The motor response from each stimulated position was evaluated in terms of three-dimensional vector torque in the ankle. RESULTS: Each position at which the stimulating electrode was placed around the root exhibited the same vector torque qualitatively, but at different thresholds. The root was most excitable ventrally. The S1 roots responded with a uniform three-dimensional torque pattern: plantar flexion plus lateral leg and foot rotation plus inversion. All L5 roots responded by plantar flexion. Dorsiflexion torque was possible only with stimulation of the L3 and L4 roots. Eversion was not possible with stimulation of the S1 roots or with most of the L5 roots. CONCLUSION: Position-selective stimulation of the extrathecal spinal nerve roots influences the threshold of the biomechanical response, the torque recruitment dynamics, and the magnitude of three-dimensional vector torque. Selective activation of some leg muscles or agonist muscle groups with stimulation of a single nerve root could not be achieved owing to the low spatial selectivity of the stimulation design and/or the low muscle specificity of motor fascicles in the root. Direct extrathecal stimulation of spinal nerve roots has some hypothetical advantages over stimulation of other sites along the peripheral nerves, owing to their unique anatomy, and may contribute to functional electrical stimulation of the lower extremities. Further investigation with a more selective multielectrode configuration and the use of multiple root stimulation is suggested.

Adult↗

Highly efficient positive selection of recombinant plasmids using a novel rglB-based Escherichia coli K-12 vector system.

We have developed pBR328-derived vectors which allow highly efficient positive selection of recombinant plasmids. The system is based on the rglB-coded restriction activity of Escherichia coli K-12 directed against 5-methylcytosine (5mC)-containing DNA. The vectors code for cytosine-specific, temperature-sensitive DNA methyltransferases (ts-Mtases), whose specificity elicits RglB restriction. 5mC-free vector DNA - a prerequisite to allow establishment of such plasmids in cells expressing the RglB nuclease activity - can be prepared from cultures grown at 42 degrees C. At 30 degrees C the vector plasmids are vulnerable to RglB restriction due to the expression of suicidal Mtase activity. Cloning a DNA fragment into the ts-Mtase-coding gene disrupts the lethal methylation and thus permits selection of such recombinant plasmids at 30 degrees C. The standard vector used, pBN73, contains unique recognition sites for nine restriction enzymes within the ts-Mtase-coding gene, which can be used independently or in combination for the construction of recombinant plasmids selectable by the rglB-coded activity. Plasmid pBN74, which carries the determinants for both the ts-Mtase and the RglB nuclease, contains seven unique sites within the ts-Mtase-coding gene. While selection of recombinant plasmids derived from pBN73 obligatorily requires the employment of rglB+ strains, selection of pBN74 derivatives can be performed independent of the E. coli-host genotype. It remains to be elucidated whether positive selection of pBN74-derived recombinant plasmids can also be achieved in hosts other than E. coli. Plasmids pBN73, pBN74 and the recombinants are structurally stable. Generally applicable procedures, as developed during the establishment of this vector system, are described; they allow the isolation of ts-Mtases and facilitate the cloning of genes coding for nucleases directed against 5mC-containing DNA.

Base Sequence↗

Positive selection of an MHC class-I restricted TCR in the absence of classical MHC class I molecules.

The H-2Ld alloreactive 2C T cell receptor (TCR) is commonly considered as being positively selected on the H-2Kb molecule. Surprisingly, 2C TCR+ CD8+ single-positive T cells emerge in massive numbers in fetal thymic organ culture originating from 2C transgenic, H-2KbD(b-/-) (2C+KbD(b-/-)) but not in fetal thymic organ culture from beta2-microglobulin(-/-) 2C transgenic animals. Mature CD8+ T cells are observed in newborn but not in adult 2C+KbD(b-/-) mice. These CD8+ T cells express the alpha4beta7 integrin, which allows them to populate the intestine, a pattern of migration visualized by intrathymic injection of FITC and subsequent accrual of FITC-labeled lymphocytes in the gut. We conclude that the 2C TCR is reactive not only with H-2Ld and H-2Kb, but also with nonclassical MHC class I products to enable positive selection of 2C+ T cells in the fetal and newborn thymus and to support their maintenance in the intestine.

Animals↗

Positive selection of mouse B and T lymphocytes and analysis of isolated populations by flow cytometry.

Mouse spleen cells were separated into Ig+ and Ig- populations by positive selection using petri plates coated with rabbit anti-mouse immunoglobulin. The Ig- cells were subsequently incubated with mouse monoclonal alloantisera to Thy1.2 prior to a second positive selection. The adherent populations were characterized as B (Ig+) or T (Thy1.2+) lymphocytes on the basis of surface immunofluorescence and mitogen-induced proliferation. Analysis of the 2 isolated populations by flow cytometry showed that B and T lymphocytes could be distinguished by their forward light scatter as well as their fluorescence after incubation with fluorescein diacetate.

Animals↗

Evolution of Rh blood group genes have experienced gene conversions and positive selection.

There are two tightly linked loci (D and CE) for the human Rh blood group. Their gene products are membrane proteins having 12 transmembrane domains and form a complex with Rh50 glycoprotein on erythrocytes. We constructed phylogenetic networks of human and nonhuman primate Rh genes, and the network patterns suggested the occurrences of gene conversions. We therefore used a modified site-by-site reconstruction method by using two assumed gene trees and detected 9 or 11 converted regions. After eliminating the effect of gene conversions, we estimated numbers of nonsynonymous and synonymous substitutions for each branch of both trees. Whichever gene tree we selected the branch connecting hominoids and Old World monkeys showed significantly higher nonsynonymous than synonymous substitutions, an indication of positive selection. Many other branches also showed higher nonsynonymous than synonymous substitutions; this suggests that the Rh genes have experienced some kind of positive selection.

Animals↗

Alterations during positive selection in the thymus of nackt CD4-deficient mice.

The T-cell repertoire is shaped by the positive and negative selection of immature CD4(+) CD8(+) double positive (DP) thymocytes. Positive selection of DP T cells to the CD4(+) CD8(-) and CD4(-) CD8(+) simple positive (SP) lineages is a multistep process which involves cellular interactions between thymocytes and stromal cells. Mutant nackt (nkt/nkt) mice have been shown to have a deficiency in the CD4(+) CD8(-) T-cell subset both in the thymus and in the periphery. The present report suggests that nkt/nkt mice present alterations in early steps of positive selection because they show decreases in the percentages of CD69(+) and CD5(+) cells within the DP subset. Experiments involving bone marrow transfer and thymic chimeras demonstrate that the thymic epithelium of nkt/nkt mice is involved in the alterations registered during positive selection and dictates the ultimate fate of CD4(+) SP cells.

Alopecia↗

Positive selection in the ComC-ComD system of Streptococcal Species.

Competence-stimulating peptide (CSP) and ComD of the streptococcal species are a pheromone and its receptor, respectively, involved in the regulation of competence for natural genetic transformation. We show here that these molecules have undergone positive selection. This study is the first report of positive selection due to competition among bacterial populations.

Amino Acid Sequence↗

Positive selection acting on a surface membrane protein of the plant-pathogenic phytoplasmas.

Phytoplasmas are plant-pathogenic bacteria that cause numerous diseases. This study shows a strong positive selection on the phytoplasma antigenic membrane protein (Amp). The ratio of nonsynonymous to synonymous substitutions was >1 with all the methods we tested. The clear positive selections imply an important biological role for Amp in host-bacterium interactions.

Antigens, Bacterial↗

Cytosine deaminase gene as a positive selection marker.

Cytosine deaminase (EC 3.5.4.1), a non-mammalian enzyme, catalyzes the deamination of cytosine and 5-fluorocytosine to form uracil and 5-fluorouracil, respectively. Eukaryotic cells have been genetically modified with a bacterial cytosine deaminase gene to express a functional enzyme. When the genetically modified cells are combined with 5-fluorocytosine, it creates a potent negative selection system, which may have important applications in cancer gene therapy. In this paper, we introduce a novel positive selection method based upon the expression of the cytosine deaminase gene. This method utilizes inhibitors in the pyrimidine de novo synthesis pathway to create a condition in which cells are dependent on the conversion of pyrimidine supplements to uracil by cytosine deaminase. Thus, only cells expressing the cytosine deaminase gene can be rescued in a positive selection medium.

3T3 Cells↗

Positive selection of thymocytes induced by gene transfer: MHC class II-mediated selection of CD8 lineage cells.

Recombinant adenovirus vectors are powerful tools for inducing de novo gene expression in vivo. Here we have exploited them to study the specificity of CD4/CD8 lineage commitment during thymocyte positive selection, transferring MHC class II genes directly into thymi of mice deficient in both class I and II molecules. Expression of class II molecules was induced on cortical stroma, provoking the selection of a large population of mature CD4(+)CD8(-) cells, as expected, but also of a significant number of CD4(-)CD8(+) cells. The latter constituted a diverse population, containing both immature precursors and, though less frequent, cells that were mature according to several criteria. CD4(-)CD8(+) cells appeared with the same kinetics as their CD4(+)CD8(-) counterparts, but tended to be more prevalent at early times or when thymocyte reconstitution was only modest. These observations, derived from a dynamic selection system, indicate that CD4/CD8 lineage commitment is not irredeemably linked to the class of MHC molecule driving positive selection, a conclusion most compatible with selective models of commitment.

Adenoviridae↗

Thymocyte glucocorticoid resistance alters positive selection and inhibits autoimmunity and lymphoproliferative disease in MRL-lpr/lpr mice.

Thymus-derived glucocorticoids antagonize T cell receptor (TCR)-induced thymocyte apoptosis, allowing the survival (positive selection) of cells bearing TCRs that recognize self antigens with low-to-moderate avidity. Here we demonstrate that expression of an antisense glucocorticoid receptor transgene in thymocytes of spontaneously autoimmune MRL-lpr/lpr mice causes the loss of specific TCR Vbeta-bearing T cells that are normally positively selected in this strain. These transgenic mice had lower autoantibody production and milder symptoms of autoimmune disease than MRL-lpr/lpr controls and had markedly reduced accumulation of the TCR+Thy-1+CD4-CD8-B220+ T cells that are the hallmark of the lpr mutation. Thus, decreased glucocorticoid signaling in thymocytes alters the T cell repertoire and greatly diminishes autoimmunity in MRL-lpr/lpr autoimmune mice.

Animals↗

Allogeneic transplantation of positively selected peripheral blood CD34+ progenitor cells from matched related donors.

Hematopoietic progenitor and stem cells are contained within the CD34+ cellular compartment of the bone marrow. Positively selected cytokine primed peripheral blood derived CD34+ cells have been shown to support autologous hematopoiesis after myeloablative therapy. We investigated hematologic reconstitution and incidence of graft-versus-host disease (GVHD) after transplantation of allogeneic peripheral blood CD34+ cells. CD34+ cells were selected from the peripheral blood of 10 matched related donors after treatment with rG-CSF followed by one to four apheresis procedures and biotin-avidin immune affinity purification. Ten patients with advanced hematologic malignancies were subsequently transplanted with cryopreserved allogeneic CD34+ cells after myeloablative chemotherapy. Immune affinity purification of CD34+ cells resulted in a 370-fold T cell reduction. Patients were grafted with a median number of 4.1 x 10(6) kg (1.6-6.4) CD34+ cells and 0.42 x 10(6)/kg (0.29-2.2) CD3+ cells. All patients received rG-CSF 5 micrograms/kg post-transplant and completely engrafted with neutrophils > 500/microliter after a median time of 10 days (9-15) and platelets > 20,000/microliter after 16 days (10-74). Complete donor chimerism was demonstrated by cytogenetic and molecular methods up to day +385 post-transplant. Cyclosporin A only was used for GVHD prophylaxis. Four of 10 patients developed acute GVHD with grade I (one) and II (three) which completely resolved with treatment. Two patients died from infectious complications. Three patients died from relapse or progressive disease. Five patients are alive in remission without GVHD with a median follow-up time of 254 (93-457) days and three of five are without immunosuppression. Allogeneic transplantation of positively selected peripheral blood-derived CD34+ cells is feasible and safe and leads to long-term engraftment without severe GVHD suggesting that peripheral blood-derived CD34+ cells contain pluripotent hematopoietic stem cells. The reduced number of T cells transplanted appears to be sufficient for engraftment.

Adult↗