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Phasmids as effective and simple tools for construction and analysis of gene libraries.

Phasmid lambda pMYF131, a hybrid of phage lambda vectors and plasmid pUC19, was constructed. The phasmid and its derivatives were shown to be efficient vectors for construction and analysis of gene libraries in Escherichia coli cells. The lambda pMYF131 DNA molecule contains all the genes and regions essential for phage lytic development. The plasmid cannot be packaged either in the monomeric or the oligomeric form due to its specific length. Elongation of the DNA molecule by ligation with fragments of foreign DNA can make it packageable and this is easily detected by plaque formation. Hence, the procedures used to construct genomic libraries can be simplified by selection of only recombinant DNA molecules just at the time and on the basis of their packaging in vitro. The output of recombinant clones per vector molecule was several times higher for vector lambda pMYF131, compared to phage vector lambda L47.1AB, and attained 3 x 10(6) clones per micrograms DNA. Vector and recombinant phasmids can be obtained in large quantities in plasmid form. lambda pMYF131 contains nine unique restriction sites which allow the cloning of DNA fragments with blunt ends and of fragments with various types of cohesive ends, obtained by digestion with 14 prototype restriction enzymes. The maximal size of the cloned DNA fragments is approx. 20 kb for lambda pMYF131. Phasmid vectors were used to construct libraries of bovine, pig and quail genomes, and genomic libraries of 17 species of bacteria. Application of suitable methods allowed the identification 13 individual genes within these libraries.

Bacteriophage lambda↗

Construction of human gene libraries from small amounts of peripheral blood: analysis of beta-like globin genes.

We describe a rapid procedure for constructing cloned human genomic libraries from small amounts of peripheral blood. High molecular weight DNA is isolated from 5-20 ml peripheral blood, partially cleaved with Eco R1, and 8-22 kb fragments are cloned using bacteriophage Charon 4A and suitable E. coli host. Using the approach we have isolated and characterized several non-alpha globin clones from a Kurdish Jew with homozygous beta thalassemia. The ability to isolate suitable amounts of high molecular weight DNA from peripheral blood provides a relatively simple means of constructing human gene libraries representing a variety of hemoglobin disorders.

Base Sequence↗

Structure of immunoglobulin gamma 2b heavy chain gene cloned from mouse embryo gene library.

A mouse DNA clone containing the constant part of the immunoglobulin gamma 2b heavy chain was isolated from a mouse gene library. The library was constructed in Charon 4A from a partial EcoRI digest of mouse embryo DNA and was screened with a plasmid (p gamma (11)7) containing a cDNA insert of the heavy chain constant region of the plasmacytoma MPC-11 (1). The Charon 4A clone contains a 14 kb insert which is cleaved by EcoRI into a 6.8 kb and 7.2 kb fragments, of which only the 6.8 kb contains the sequence for gamma 2b heavy chain. Restriction analysis and partial sequence of the insert in p gamma (11) 7 enabled us to obtain three fragments corresponding to the 5' (amino acid 161-302) middle (amino acid 302-443) and 3' (mostly non coding 107 bp) regions of the constant region. Restriction analysis of the Charon 4A clone and hybridisation to these nick translated fragments revealed that the gamma 2b constant region gene contains about 1.5 kb and has three intervening sequences.

Animals↗

Design of synthetic gene libraries encoding random sequence proteins with desired ensemble characteristics.

Libraries of random sequence polypeptides are useful as sources of unevolved proteins, novel ligands, and potential lead compounds for the development of vaccines and therapeutics. The expression of small random peptides has been achieved previously using DNA synthesized with equimolar mixtures of nucleotides. For many potential uses of random polypeptide libraries, concerns such as avoiding termination codons and matching target amino acid compositions make more complex designs necessary. In this study, three mixtures of nucleotides, corresponding to the three positions in the codon, were designed such that semirandom DNA synthesized by repeated cycles of the three mixtures created an open reading frame encoding random sequence polypeptides with desired ensemble characteristics. Two methods were used to design the nucleotide mixtures: the manual use of a spreadsheet and a refining grid search algorithm. Using design targets of less than or equal to 1% stop codons and an amino acid composition based on the average ratios observed in natural, globular proteins, the search methods yielded similar nucleotide ratios, Semirandom DNA, synthesized with a designed, three-residue repeat pattern, can encode libraries of very high diversity and represents an important tool for the construction of random polypeptide libraries.

Amino Acid Sequence↗

Evolutionary conservation of ribosomal protein mRNA sequences: application for expansion of corresponding cDNA and gene libraries.

Cloned cDNAs, containing ribosomal protein sequences from mouse (five cDNAs) or Xenopus laevis (six cDNAs), were used to estimate the evolutionary conservation, from insects to mammals, of the corresponding mRNA sequences. Northern blot analysis reveals a variable degree of homology between these sequences in different eukaryotes. Thus, among the ribosomal protein cDNA clones utilized, some exhibit complete, others partial, and a few no interphyla cross-hybridization. Melting profile analysis was employed to quantitate this homology. It is proposed that for expansion of eukaryotic ribosomal cDNA and gene libraries, one can exploit the interspecies homology of the corresponding sequences. However, the diverse evolutionary conservation of individual ribosomal protein gene sequences should be taken into account.

Animals↗

Intracisternal A-particle genes: identification in the genome of Mus musculus and comparison of multiple isolates from a mouse gene library.

The genome of Mus musculus contains multiple copies (500 -1000) of DNA sequences related to the 35S RNA of intracisternal type A particles (IAPs). Using labeled IAP RNA as a probe in blot-hybridization experiments, we have identified a characteristic electrophoretic pattern of reactive fragments generated by restriction endonuclease cleavage of mouse DNA. From the genomic blots, we deduced a composite restriction map for a 6.5- to 7-kilobase (kb) DNA region containing sequences homologous to the IAP RNA. Units of this type appeared to be interspersed without obvious regularity in nonhomologous flanking regions. A 5.2-kb segment of this unit was inserted directly into plasmid pBR322 from HindIII/EcoRI digest of mouse DNA. The fragment was cloned and then labeled by nick-translation and used to scan a mouse embryo gene library (average 16-kb inserts in lambda Charon 4A); 1% of the library samples hybridized, confirming the extensive reiteration of IAP genetic units. Among six different library isolates containing 6.5- to 7-kb IAP units, some restriction sites were highly conserved whereas others varied in both occurrence and position. Despite this variation, heteroduplexes between the individual isolates showed continuous IAP homology regions of 7 kb. No flanking region homologies were seen in this limited sample. Some evidence suggests that mouse DNA may contain other dispersed sequence elements related to but smaller than the genetic unit defined above.

Animals↗

Basis for selection of improved carbohydrate-binding single-chain antibodies from synthetic gene libraries.

A technique is described for the simultaneous and controlled random mutation of all three heavy or light chain complementarity-determining regions (CDRs) in a single-chain Fv specific for the O polysaccharide of Salmonella serogroup B. Sense oligonucleotides were synthesized such that the central bases encoding a CDR were randomized by equimolar spiking with A, G, C, and T at a level of 10% while the antisense strands contained inosine in the spiked regions. Phage display of libraries assembled from the spiked oligonucleotides by a synthetic ligase chain reaction demonstrated a bias for selection of mutants that formed dimers and higher oligomers. Kinetic analyses showed that oligomerization increased association rates in addition to slowing dissociation rates. In combination with some contribution from reduced steric clashes with residues in heavy-chain CDR2, oligomerization resulted in functional affinities that were much higher than that of the monomeric form of the wild-type single-chain Fv.

Amino Acid Sequence↗

Evaluation of different lymphoid tissue sources for the construction of human immunoglobulin gene libraries.

BACKGROUND: Phage display technology allows the isolation of novel human monoclonal antibodies. The technology relies on the construction of a recombinant antibody library and its display on phage particles. The quality of an antibody library is affected by several factors including the size, diversity and source of immunoglobulin genes. OBJECTIVE: The aim of the project was to determine the best tissue source for the construction of antibody libraries. STUDY DESIGN: Three tissue sources were used in this study: peripheral blood mononuclear cells from a healthy donor, Epstein-Barr virus (EBV) transformed peripheral blood mononuclear cells and lymph node tissue from individuals with breast cancer. The quality of each tissue source was assessed using two criteria: (1) the number of mature and activated B cells in each source; (2) the amount of immunoglobulin heavy and light chain genes amplifiable by polymerase chain reaction (PCR). RESULTS: EBV-transformed peripheral blood mononuclear cells and lymph node tissue were shown to contain more B cells than peripheral blood mononuclear cells. A relatively larger amount of immunoglobulin gene products could be amplified from EBV-transformed peripheral blood mononuclear cells and the lymph node. However, immunoglobulin containing gamma 1 chains could not be amplified from EBV-transformed mononuclear cells, and the resultant pattern of gene amplification suggests a possible selection bias. CONCLUSION: This study indicates that among the three tissue sources examined, lymph node tissue is the most suitable source for the construction of antibody libraries.

Antibodies, Monoclonal↗

By-passing immunization. Human antibodies from V-gene libraries displayed on phage.

We have mimicked features of immune selection to make human antibodies in bacteria. Diverse libraries of immunoglobulin heavy (VH) and light (V kappa and V lambda) chain variable (V) genes were prepared from peripheral blood lymphocytes (PBLs) of unimmunized donors by polymerase chain reaction (PCR) amplification. Genes encoding single chain Fv fragments were made by randomly combining heavy and light chain V-genes using PCR, and the combinatorial library (greater than 10(7) members) cloned for display on the surface of a phage. Rare phage with "antigen-binding" activities were selected by four rounds of growth and panning with "antigen" (turkey egg-white lysozyme (TEL) or bovine serum albumin) or "hapten" (2-phenyloxazol-5-one (phOx], and the encoding heavy and light chain genes were sequenced. The V-genes were human with some nearly identical to known germ-line V-genes, while others were more heavily mutated. Soluble antibody fragments were prepared and shown to bind specifically to antigen or hapten and with good affinities, Ka (TEL) = 10(7) M-1; Ka (phOx) = 2 x 10(6) M-1. Isolation of higher-affinity fragments may require the use of larger primary libraries or the construction of secondary libraries from the binders. Nevertheless, our results suggest that a single large phage display library can be used to isolate human antibodies against any antigen, by-passing both hybridoma technology and immunization.

Amino Acid Sequence↗

Characterization of human variable domain antibody fragments against the U1 RNA-associated A protein, selected from a synthetic and patient-derived combinatorial V gene library.

This is the first study describing recombinant human antibody fragments directed to the U1 RNA-associated A protein (U1A). Three anti-U1A antibody fragments (Fab) were isolated from a semi-synthetic human Fab library and one anti-U1A single-chain variable fragment (scFv) was isolated from a library which was derived from the IgG-positive splenic lymphocytes of an autoimmune patient. Competition studies with autoantibodies against the U1 small nuclear ribonucleoprotein (snRNP) particle from patients with systemic lupus erythematosus (SLE) and SLE-overlap syndromes revealed that U1A binding of these antibody fragments can be inhibited by about 40% of the patient sera. All antibody fragments recognized the native U1 snRNP in immunoprecipitation assays. Two of three Fab clones as well as the scFv clone derived from the repertoire of an autoimmune patient use the same heavy chain germ-line gene DP-65. Epitope mapping revealed that these three clones appear to recognize an identical epitope domain present on the C-terminal RNP motif of the U1A protein. The DP-65 heavy chain gene is used in less than 1% of the B cells in healthy individuals, while three out of four anti-U1A antibody fragments use this gene. This points to a restricted VH gene usage in the case of U1A, suggesting that the DP-65 heavy chain has a natural shape complementarity to the U1A protein.

Amino Acid Sequence↗

[Use of a chromosome 21 gene library in the identification of a marker chromosome in chronic myeloid leukemia].

The non-isotopic in situ hybridization makes it possible the analysis of, both, numeric and structural chromosome aberrations in interphase nuclei. Moreover, this technique is useful for identification of chromosome markers of unknown origin, frequently present in malignant diseases. In our case, the fluorescent in situ hybridization allowed us, in a CML patient in accelerated phase, to know the origin of a chromosome marker, and then, to state that the patient had a 21 trisomy added to the Philadelphia chromosome.

Blast Crisis↗

A phage display approach for rapid antibody humanization: designed combinatorial V gene libraries.

The development of a new strategy for antibody humanization is described. This strategy incorporates key recognition sequences from the parental rodent antibody into a phage display-based selection strategy. The original sequences of the third complementarity-determining regions (CDRs) of heavy and light chains, HCDR3 and LCDR3, were maintained and all other sequences were replaced by human sequences selected from phage-displayed antibody libraries. This approach was applied to the humanization of mouse mAb LM609 that is directed to human integrin alphav beta3 and has potential applicability in cancer therapy as an antiangiogenic agent. We demonstrate this approach (i) provides a rapid route for antibody humanization constraining the content of original mouse sequences in the final antibodies to the most hypervariable of the CDRs; (ii) generates several humanized versions with different sequences at the same time; (iii) results in affinities as high as or higher than the affinity of the original antibody; and (iv) retains the antigen and epitope specificity of the original antibody. The production of multiple humanized variants may present advantages in the selection of antibodies that are more readily expressed on a large scale and could be important in therapeutic regimens that call for long-term treatment with antibodies in which antiidiotypic responses might be avoided by administration of alternative antibodies.

Amino Acid Sequence↗