Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Libraries”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,477 records · Page 82Linked to original sources

Increased antibody expression from Escherichia coli through wobble-base library mutagenesis by enzymatic inverse PCR.

We tested the value of a new library mutagenesis approach, called library enzymatic inverse PCR (LEIPCR), for expression-level enhancement of antibody Fv fragments produced in Escherichia coli. The production level of active, metal chelate-specific antibody from our constructs is limited by a low expression level of the second, heavy-chain cistron. To increase the production level, LEIPCR was applied to the wobble bases of the second cistron leader peptide. In LEIPCR mutagenesis, the entire plasmid is amplified using mutagenic primers with class-IIS restriction endonuclease (ENase) sites at their 5' ends. The PCR product is digested with the class-IIS ENase (here, BsaI; GGTCTCN[symbol: see text]NNNN[symbol: see text]), which removes its own recognition sequence, and the ends are self-ligated. Thus, LEIPCR can be used to make plasmid mutant libraries regardless of the nucleotide sequence, and independent of available ENase sites. The resulting library of 10(7) wobble mutants was screened for active Fv by a colony filter lift. A selected mutant was shown to produce between four- and elevenfold more active Fv than the wild type (wt), and fivefold more heavy chain. Mutations outside of the leader peptide were shown not to be involved. The mutated areas of the mRNAs of two different up-mutants may have less secondary structure than the wt. Thus, the sequence of the mRNA of the second leader peptide was limiting to the expression level of heavy-chain and active Fv.

Amino Acid Sequence↗

Constrained peptide libraries as a tool for finding mimotopes.

The monoclonal antibody (mAb) KAA8 recognizes the peptide angiotensin II (AII). The KAA8 mAb was biopanned using two phage-displayed peptide libraries, one unconstrained, the other constrained by a disulfide bond. After several cycles of biopanning, both libraries showed enrichment for phage that bind KAA8. Phage isolated from the unconstrained library contain a consensus sequence that matches the sequence of AII. A consensus sequence was also identified from the constrained library that does not resemble the AII sequence, and represents a mimotope of AII. We have also demonstrated that monovalent phage display can be used to discriminate between modest and high-affinity binding peptides.

Amino Acid Sequence↗

Identification of a biologically significant DNA-binding peptide motif by use of a random phage display library.

A peptide library approach was used to identify peptides that could bind to different DNA structures. A 23-mer random peptide library was displayed in the context of the pIII protein of M13 filamentous phage. Double-stranded (ds) oligodeoxyribonucleotides (oligos) were immobilized in 96-well plates using either chemical conjugation or a biotin-avidin linking method. Individual phage clones capable of binding to immobilized oligos were selected from the phage library. Using a plaque dilution assay for rapid screening of binding preferences, four groups of oligo-binding (OB) phage were tentatively identified as showing preference for: (1) single-stranded (ss) oligos irrespective of sequence; (2) ds oligos irrespective of sequence; (3) sequence-specific binding to ss oligos; and (4) weak non-specific binding to all types of oligos tested. A quantitative solution-phase competition assay was used to confirm the ability of certain phage to discriminate ss from ds oligos. A consensus motif, FGRA, was found in those phage clones that preferentially bound ss oligos; this motif has previously been noted in the binding domains of several ribonucleoproteins and ss DNA-binding proteins. Peptides based on the FGRA motif, but not scrambled controls, were able to inhibit the binding of appropriate phage clones or of Escherichia coli ss DNA-binding protein to oligos. This suggests that amino acid sequences that are capable of affecting biologically significant protein-DNA interactions can be identified from random peptide libraries using phage display techniques.

Amino Acid Sequence↗

Recombinant rabbit Fab with binding activity to type-1 plasminogen activator inhibitor derived from a phage-display library against human alpha-granules.

The display of panels of antibody (Ab) fragments on the surface of filamentous bacteriophage offers a way of making Ab with defined binding specificities. Because rabbit Ab are routinely utilized as immunologic probes in a variety of biological techniques, the aim of this study was to design and utilize primers for the amplification of mRNAs encoding rabbit kappa light and gamma heavy chains for the construction of an Ab library from this species. Using the polymerase chain reaction, a diverse Ab library with a repertoire of 2 x 10(7) clones was derived from the spleen and bone marrow of a rabbit that had been immunized with purified human platelet alpha-granules. From this library, specific clones were isolated after three rounds of affinity selection with binding activity to type-1 plasminogen activator inhibitor, a trace protein contained in platelet alpha-granules. These data indicate that recombinant phage-displayed Ab libraries obtained after immunization with complex biological antigens can be employed for the isolation of rabbit monoclonal Fab against specific antigens contained in the biological sample.

Amino Acid Sequence↗

LambdaZLG6: a phage lambda vector for high-efficiency cloning and surface expression of cDNA libraries on filamentous phage.

We describe a vector, lambdaZLG6, combining the high efficiency of cDNA library cloning in bacteriophage lambda with filamentous phage display of cDNA-encoded products. The cDNAs are expressed as fusions to the 3' end of M13 gene VI. The lambdaZLG library is converted to a pZLG6-cDNA phagemid library by in vivo mass excision. Helper phage infection generates a library of phagemid particles displaying the cDNA-encoded products and containing the corresponding nucleotide sequences within.

Bacteriophage M13↗

The evolution of a hospital library patient education literature program.

The library staff of the Englewood Hospital Medical Library has developed a patient education literature program to meet the needs of patients and the public for health information. A subcommittee on patient education of the Medical Library Committee oversees the project. Lists of health resources, by subject, have been compiled and are available on nursing stations and in patient waiting areas. Materials are delivered by doctors, nurse clinicians or librarians (at a doctor's request) and documented in the nurse's notes. Community members are also encouraged to come into the library by appointment to seek answers to their health questions.

Hospital Bed Capacity, 500 and over↗

Systematic cloning of human minisatellites from ordered array charomid libraries.

We present a rapid and efficient method for the isolation of minisatellite loci from human DNA. The method combines cloning a size-selected fraction of human MboI DNA fragments in a charomid vector with hybridization screening of the library in ordered array. Size-selection of large MboI fragments enriches for the longer, more variable minisatellites and reduces the size of the library required. The library was screened with a series of multi-locus probes known to detect a large number of hypervariable loci in human DNA. The gridded library allowed both the rapid processing of positive clones and the comparative evaluation of the different multi-locus probes used, in terms of both the relative success in detecting hypervariable loci and the degree of overlap between the sets of loci detected. We report 23 new human minisatellite loci isolated by this method, which map to 14 autosomes and the sex chromosomes.

Animals↗

Detection of individual human chromosomes by chromosome in situ suppression hybridization using PCR-amplified bacteriophage library probes.

We used the polymerase chain reaction (PCR) to prepare chromosome-specific probes from the bacteriophage lambda library LAO1NS01, prepared at the Los Alamos National Laboratory from flow sorted human chromosome 1. By using oligonucleotide primers flanking the EcoRI insertion site of the Charon 21A vector, we were able to amplify the human sequences preferentially in the library up to 9.1 kb (maximum insert size). The product of the PCR reaction was nick translated with incorporation of biotinylated residues and used with fluorescence in situ hybridization to observe metaphase chromosomes by fluorescence microscopy. This technique allows for a relatively easy method for preparation of chromosome-specific library probes for "chromosome painting." The quality of the results obtained by this method compares favorably to those obtained by using bulk-purified library inserts. This method offers potential advantages in terms of cost and ease of use.

Bacteriophage lambda↗

Optimization of subtractive hybridization in construction of subtractive cDNA libraries.

The efficiency of subtraction, integrity of residual single-stranded cDNA, and efficient recovery of nanogram quantities of double-stranded cDNA are the three most important factors affecting quality of subtractive hybridization reactions prior to subtractive cDNA library construction. Techniques for efficient isolation of single-stranded cDNA, after subtraction, have greatly improved from early protocols based on hydroxylapatite chromatography to phenol-chloroform extraction of biotin-streptavidin-crosslinked polynucleotides or oligo(dA)-cellulose affinity chromatography. Factors affecting mRNA stability at the hybridization step, however, also have consequences that directly affect the complexity of the library and the length of cDNAs recovered. We have optimized the subtractive hybridization step in subtractive cDNA library construction to ensure that single-stranded cDNAs survive hybridization as near to full length as possible. These improvements have enabled successful construction of subtractive cDNA libraries from the nanogram quantities of single-stranded cDNA remaining after extensive liquid hybridization to high calculated C(o)t values.

DNA, Complementary↗

Construction and utility of a human chromosome 22-specific Fosmid library.

We have previously demonstrated the capability of the Fosmid vector based on Escherichia coli F-factor replicon to stably propagate cosmid-sized human genomic DNA fragments. Using the Fosmid vector, we have constructed and arrayed a 10 x human chromosome 22-specific library, partly by picking human positive clones from a total Fosmid library constructed using DNA from human-hamster hybrid cell line containing human chromosome 22, and partly by using flow-sorted chromosomal DNA. The clones and physical contig maps of the clones in the library will serve as a valuable resource for detailed analysis of the chromosome by providing reliable materials for high resolution mapping and sequencing. In order to efficiently build physical maps for the chromosomal regions of interest spanning several hundred kilobases to a megabase, it is necessary to rapidly identify subsets of the Fosmid clones from the library that cover such regions. In this report, we describe a method of using random amplification products derived from YAC clones to rapidly identify a subset of Fosmid clones that cover a specific genomic subregion.

Animals↗

Human monoclonal Fab fragments specific for viral antigens from combinatorial IgA libraries.

BACKGROUND: IgA constitutes the first line of immune defense, interacting with a variety of environmental antigens. Following infection with respiratory syncytial virus (RSV) individuals frequently exhibit elevated serum IgA titers specific for the virus. Previously combinatorial IgG libraries have successfully been used to clone such human antibody responses. OBJECTIVES: Here we evaluate the possibility of constructing combinatorial IgA libraries on the surface of filamentous phage to retrieve human viral-specific IgA Fab fragments. STUDY DESIGN: Bone marrow from an HIV-1 seropositive donor was used as RNA source to construct combinatorial IgA kappa and lambda libraries of approximately 10(7) clones. RESULTS: By affinity selection using an immobilized recombinant RSV FG protein, two unique IgA Fab fragments producing clones (AD5 and AD23) reactive with the selecting antigen were isolated. One of the Fab fragments was found to be specific for RSV F glycoprotein and bind with high apparent affinity (2 x 10(8) M-1). The other binds with lower affinity and exhibits cross-reactivity with other antigens. CONCLUSION: The strategy described, involving construction of combinatorial IgA libraries on the surface of filamentous phage, should be generally applicable to the investigation of both mucosal and systemic human IgA immune responses, and may become an important tool for evaluation of mucosal vaccine regimes.

Amino Acid Sequence↗

Characterization of salivary RNA by cDNA library analysis.

Oral fluid (saliva) meets the demands for a noninvasive and accessible diagnostic medium. Recent reports by our group and others described the presence and use of human RNA in saliva as a diagnostic or forensic tool, including the use for oral cancer detection. To gain insights into the integrity of salivary RNA, we examined in detail the integrity of salivary RNA by generating a cDNA library from pooled supernatant saliva of 10 healthy donors. From a library with a primary library titer of 1.3 x 10(6) cfu/mL of which 95% of the clones had inserts, we successfully sequenced 117 random colonies containing recombinant clones. BLAST search results indicated that all of these clones contained sequences of human origin. Most of the salivary RNAs appeared to be endonucleolytically cleaved at random positions as indicated by comparisons to respective full length parental RNAs from the Genbank. Twelve of the insert sequences matched to the normal salivary core transcriptome sequences, which are highly abundant mRNAs present in healthy individuals. This study provides an in-depth molecular analysis of the saliva transcriptome and should be a useful resource for future basic and translational studies of RNA in human saliva. In addition, this paper presents unequivocal evidence for the presence of RNA in saliva as determined by the use of diverse techniques such as reverse transcriptase quantitative polymerase chain reaction (RT-qPCR), in vitro translation, and the construction of a salivary cDNA library.

Adult↗

Isolation of endothelial cell-specific human antibodies from a novel fully synthetic scFv library.

We have isolated single-chain Fv fragments directed against human endothelial cells from a novel fully synthetic human scFv library (scFv 479). This library was constructed using the variable germline segments DP47 and DPkappa9 as scaffolds. Complementarity determining regions 3 (CDR) of the variable heavy and light chain were introduced with a length of 9 amino acid residues. In total, 16 amino acid positions of all six CDRs exposed in the antigen-binding site were randomized and the library was produced from synthetic oligonucleotides encoding the entire scFv fragment. From this library endothelial-specific scFv fragments were either selected using the recombinant extracellular domain of human endoglin (CD105) or by cell selections with human dermal microvascular endothelial cells (HDMEC). These scFv fragments might be useful for the generation of vascular or tumor targeting agents in cancer therapy.

Amino Acid Sequence↗

A novel method for construction of gene fragment library to searching epitopes.

Identification of the epitope sequence or the functional domain of proteins is a laborious process but a necessary one for biochemical and immunological research. To achieve intensive and effective screening of these functional peptides in various molecules, we established a novel screening method using a phage library system that displays various lengths and parts of peptides derived from target protein. Applying this library for epitope mapping, epitope peptide was more efficiently identified from gene fragment library than conventional random peptide library. Our system may be a most powerful method for identifying functional peptides.

Amino Acid Sequence↗

Strategies and computational tools for improving randomized protein libraries.

In the last decade, directed evolution has become a routine approach for engineering proteins with novel or altered properties. Concurrently, a trend away from purely 'blind' randomization strategies and towards more 'semi-rational' approaches has also become apparent. In this review, we discuss ways in which structural information and predictive computational tools are playing an increasingly important role in guiding the design of randomized libraries: web servers such as ConSurf-HSSP and SCHEMA allow the prediction of sites to target for producing functional variants, while algorithms such as GLUE, PEDEL and DRIVeR are useful for estimating library completeness and diversity. In addition, we review recent methodological developments that facilitate the construction of unbiased libraries, which are inherently more diverse than biased libraries and therefore more likely to yield improved variants.

Algorithms↗

Potent antibacterial lysine-peptoid hybrids identified from a positional scanning combinatorial library.

In this paper, we describe the synthesis and screening of a biased positional scanning library made up of peptoids (N-alkylglycines) and lysines. The library consisted of 100 mixtures divided into four sub-libraries; OXXXKKK, XOXXKKK, XXOXKKK, and XXXOKKK, O being a defined peptoid building block and X a mixture of 25 peptoid building blocks. A theoretical number of 390,625 compounds were synthesized. The compound mixtures were screened against the American Type Culture Collection (ATCC) Staphylococcus aureus ATCC 25923 and Escherichia coli ATCC 25922 bacterial strains, and the cytotoxic activities were assessed using a human blood hemolytic assay. The results from each sub-library were examined to identify the most potent amine at each position. On the basis of this knowledge eight new lysine-peptoid hybrids were synthesized and tested in the biological assays. One compound in particular, [N-(cyclohexylmethyl)glycyl]-[N-(1-methylhexyl)glycyl]-[N-(4-methylbenzyl)glycyl]-[N-(2-(3-chlorophenyl)ethyl)glycyl]-lysyl-lysyl-lysine amide, showed high antibacterial activity and low toxicity toward red blood cells.

Anti-Bacterial Agents↗

Tabu search algorithm for DNA sequencing by hybridization with isothermic libraries.

In this paper, a problem of isothermic DNA sequencing by hybridization (SBH) is considered. In isothermic SBH a new type of oligonucleotide libraries is used. The library consists of oligonucleotides of different lengths depending on an oligonucleotide content. It is assumed that every oligonucleotide in such a library has an equal melting temperature. Each nucleotide adds its increment to the oligonucleotide temperature and it is assumed that A and T add 2 degrees C and C and G add 4 degrees C. The hybridization experiment using isothermic libraries should provide data with a lower number of errors due to an expected similarity of melting temperatures. From the computational point of view the problem of isothermic DNA sequencing with errors is hard, similarly like its classical counterpart. Hence, there is a need for developing heuristic algorithms that construct good suboptimal solutions. The aim of the paper is to propose a heuristic algorithm based on tabu search approach. The algorithm solves the problem with both positive and negative errors. Results of an extensive computational experiment are presented, which prove the high quality of the proposed method.

Algorithms↗

Construction of bacterial artificial chromosome library from electrochemical microorganisms.

A microbial fuel cell is a device that directly converts metabolic energy into electricity, using electrochemical technology. The analysis of large genome fragments recovered directly from microbial communities represents one promising approach to characterizing uncultivated electrochemical microorganisms. To further assess the utility of this approach, we constructed large-insert (140 kb) bacterial artificial chromosome (BAC) libraries from the genomic DNA of a microbial fuel cell, which had been operated for three weeks using acetate media. We screened the expression of several ferric reductase activities in the Escherichia coli host, in order to determine the extent of heterologous expression of metal-ion-reducing enzymes in the library. Phylogenetic analysis of 16S rRNA gene sequences recovered from the BAC libraries indicates that they contain DNA from a wide diversity of microbial organisms. The constructed bacterial library proved a powerful tool for exploring metal-ion reductase activities, providing information on the electron transport pathway of electrochemical microbial (ECM) organisms.

Bacteria↗