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A contiguous Not I restriction map of band q22.3 of human chromosome 21.

A contiguous high-resolution NotI restriction map of the distal region of the long arm of human chromosome 21 was constructed by three strategies: linking clones to identify adjacent pieces of DNA, partial digestion to identify neighboring fragments, and cell line polymorphisms to prove identity or adjacency of DNA fragments. Twenty-nine single-copy DNA probes and five linking clone probes were used to determine the order of 30 Not I fragments, covering 10 megabases of DNA in band q22.3. Smaller Not I fragments occur preferentially in this region, suggesting that band q22.3 is unusually rich in genes, since Not I sites occur almost exclusively in CpG islands. Comparison of the physical map and genetic maps in this region reveals a 10-fold higher than average recombination frequency.

Animals

Partial restriction map of Marek's disease virus DNA.

A partial restriction map of Marek's disease virus (MDV) DNA was constructed by digestion with endonucleases BamHI, Bg/I and SmaI and by blotting hybridization. The data suggest that there is a terminal heterogeneous sequence at least on one end of the MDV DNA molecule. The data did not reveal four different orientations of the terminal fragments of MDV DNA molecules despite the observation that MDV DNA contains inverted repeat sequences as also present in Herpes simplex virus (HSV) DNA molecules (Cebrian et al., 1981). Terminal deletion of MDV DNA, SalI-H and I, was found in high passage number preparations.

Animals

Structure, restriction map and infectivity of the genomic and replicative forms of AaPV DNA.

We have characterized the genomic and replicative form (RF) DNA of the Aedes albopictus Parvovirus (AaPV), a virus isolated from a chronically infected C6/36 clone of Aedes albopictus cell line [22]. The genome of AaPV virions is a single-stranded linear DNA molecule approximately 4.2 kb in length, essentially (about 90%) encapsidated as minus strand. A restriction map of the RF DNA isolated from infected C6/36 cells was established. Among the 23 restriction enzymes tested, 14 cleaved the AaPV RF DNA and 30 restriction sites were mapped and oriented with respect to the viral genomic DNA. Both viral and RF DNAs were found infectious when transfected to virus-free C6/36 cells. The asymmetrical encapsidation of the viral genome is a property common to most vertebrate autonomous parvoviruses but rather unusual among densoviruses. Both by its small size, the asymmetrical mode of encapsidation and the restriction map, the AaPV genome resembles that of the Aedes Densonucleosis virus [1].

Aedes

Relationships of the Col plasmids E2, E3, E4, E5, E6, and E7: restriction mapping and colicin gene fusions.

Thirteen ColE plasmids representing the E2-E7 types have been compared by restriction mapping. Over 80% of their restriction sites were found to be similarly positioned, indicating that these plasmids share a common structure. Three variants are ColE2-CA42 and ColE7-K317, both of which contain 1.8-kb DNA segments in place of a 2.5-kb segment common to the other plasmids, and ColE6-CT14, which has an additional 5.0-kb DNA segment compared to the other plasmids. The colicin (col), immunity (imm), and colicin release (hic) genes of these plasmids have been localized to regions corresponding to those known for ColE3-CA38 and ColE2-P9, with the imm and hic genes adjacent to the 3' end of the col gene. Active colicin is produced from hybrid col genes containing 5' and 3' ends from different E-type plasmids. The 3'-termini of the fused col genes specify the colicin type.

Bacteriocin Plasmids

Restriction-map variation at the zeste-tko region in natural populations of Drosophila melanogaster.

Restriction-map variation in 64 X chromosome lines extracted from three different natural populations of Drosophila melanogaster was investigated with seven six-nucleotide-recognizing enzymes for a 20-kb region including the zeste and tko genes. Ten restriction-site and four length polymorphisms (two insertions and two deletions) were detected. Contrary to the predicted lower level of variation for genes on the X chromosome, the level of variation attributable to nucleotide substitution (estimated heterozygosity/nucleotide = 0.004) was similar to that previously reported for autosomal loci. The amount of insertion/deletion variation in the studied region was within the range observed in autosomal regions and thus not explainable by a simple selection model against the effects of insertional mutations. A general lack of linkage disequilibrium between polymorphic sites was observed.

Animals

Restriction mapping of rDNA and the taxonomy of Kluyveromyces van der Walt emend. van der Walt.

Ribosomal DNA from the type strains of 13 nomenspecies of Kluyveromyces and from other strains were mapped with 11 restriction endonucleases. The length of the repeating unit ranged from ca. 8.4 kb (in K. aestuarii) to ca. 10.9 kb (in K. phaffii). The length variation resided as expected in the nontranscribed spacer. The patterns confirmed some of the inferences articulated by various students of the genus. The closely related species K. marxianus and K. lactis constituted a core to which could be linked first K. wickerhamii and K. dobzhanskii and then K. aestuarii. The presumed relatedness between K. waltii and K. thermotolerans was endorsed by rDNA mapping as well, but evidence linking these two species to the rest of the genus is wanting. The restriction patterns suggest that the multispored species together with K. delphensis form a loose assemblage acting as a bridge between the "core" species and the species K. phaffii and K. lodderi.

DNA, Fungal

Mapping restriction sites on large DNAs by electron microscopy.

We have developed a novel technique to map restriction sites on large duplex DNAs by electron microscopy. In this method, the sample DNA is first cut with a restriction enzyme. The resulting fragments are briefly digested with Escherichia coli exonuclease III, and treated with wheat germ RNA polymerase II to fill-in with RNA the resulting gaps. These small RNAs, complementary to sequences immediately adjacent to either side of the restriction site, are isolated from the DNA template and R-looped to the full-length DNA. When this material is prepared by the formamide-cytochrome spreading technique, small bubbles are visible wherever there is a restriction site on the DNA. Improved methods of mapping are outlined.

Bacteriophage lambda

Molecular cloning, sequencing and restriction mapping of the genomic sequence encoding human proacrosin.

In the present study, molecular cloning, sequencing and restriction mapping of the genomic sequence encoding human proacrosin is described. The full-length cDNA encoding human proacrosin was utilized to recover a 17-kb human genomic clone which was sequenced without further subcloning. The nucleotide sequences of the exons agree with the sequence of the cDNA reported previously. More than 500 bases of the promoter region were sequenced and found to be highly GC rich but devoid of an identifiable TATA box. These findings are generally consistent with a recently published report [Keime, S., Adham, I. M. & Engel, W. (1990) Eur. J. Biochem. 190, 195-200]. However, further sequence analysis revealed discrepancies between our clone and that previously reported. Sequencing of the first intron showed similarity with the published data for 54 bases of the 5' region, beginning with the donor splice site, and for 114 bases at the 3' end. However, 500 bases sequenced distal to the initial 54 bases at the 5' end of intron 1 showed no similarity with the published sequence. In addition, the boundaries of intron 3 differed such that a cytosine residue previously reported to be in exon 3 was found to be the first base of exon 4. Detailed studies were undertaken to confirm that our clone constitutes the authentic sequence of human proacrosin. Cloning and characterization of the human proacrosin gene may allow for informative studies of its regulation, and for a more detailed examination of its role in fertilization.

Acrosin

Restriction map of the Escherichia coli malA region and identification of the malT product.

A series of plaque-forming lambda h80 transducing phages carrying various portions of the malA region were isolated. A 5,800-base pair HindIII-EcoRI DNA fragment from one of these phages was cloned into pBR322 and shown to contain malT, which is the positive regulator gene of the maltose regulon, and most of malP, the structural gene for maltodextrin phosphorylase. A restriction map of the HindIII-EcoRI fragment was established, and it was correlated with the genetic map of the malA region (i) by mapping deletions which had been generated in vitro on the plasmid and (ii) by locating on the restriction map a DNA insertion of known genetic position. A 600-base pair HincII-HaeII segment was shown to contain all or part of the promoters for malT and malP, which are known to be transcribed in opposite directions. Strains carrying gene malT on a plasmid synthesized a 94,000-dalton polypeptide which was not produced by identical strains carrying similar plasmids in which malT was partially deleted. Estimates of the size of the malT gene support the conclusion that the 94,000-dalton polypeptide is the malT product.

Bacterial Proteins

Demonstration of three different subtypes of adenovirus type 7 by DNA restriction site mapping.

Restriction site mapping of the genomes of eight different isolates of adenovirus serotype 7 (Ad7) has been performed with six different restriction endonucleases. In this analysis, 37 different restriction sites were localized. Three distinctly different cleavage patterns of the genomes of the Ad7 strains were observed. These strains could not be distinguished by serological techniques. The following three subtypes were defined on the basis of their restriction site patterns: the Ad7 prototype, represented by strain Gomen originally isolated from a case of pharyngitis; subtype Ad7a, represented by the Ad7 vaccine strain and strains isolated from undifferentiated respiratory disease and from a healthy carrier; and a third subtype of Ad7, represented by three strains which were isolated from Swedish patients, all having pronounced clinical symptoms indicating severe systemic infection. A comparison of the restriction site maps of the protype of Ad3 and the three subtypes of Ad7 indicated greater differences in the position of restriction sites between strains of Ad7 than between strains of the two serotypes. This technique is consequently recommended to obtain a more precise definition of distinct entities of viruses.

Adenovirus Infections, Human

Restriction map of the Salmonella enteritidis virulence plasmid and its homology with the plasmid of Salmonella typhimurium.

A restriction map of the 61 kb virulence plasmid of Salmonella enteritidis was constructed and compared with the Salmonella typhimurium virulence plasmid map. Polymerase chain reaction was used to detect a region homologous to rck gene in the S. enteritidis plasmid which was localized in the map by hybridization. Regions homologous to traT and vagD/vagC loci were not detected in this plasmid by this method.

Base Sequence

The genome of the multicapsid baculovirus of Orgyia pseudotsugata: restriction map and analysis of two sets of GC-rich repeated sequences.

Five cosmids containing inserts that comprise the complete genome of the multicapsid nuclear polyhedrosis virus of Orgyia pseudotsugata were mapped with four restriction enzymes (Bg/II, ClaI, SstI, XhoI). From these cosmid maps, composite maps of the complete genome were constructed for each restriction enzyme. A region containing repeats of the sequence GGC downstream of the polyhedrin gene was used to probe the genome. It cross-hybridized with a region which, upon sequence analysis, was found to be a highly repetitive GC-rich region of nearly 500 nucleotides. The two GC-rich regions appeared to be evolutionarily unrelated.

Animals

Restriction map of the genomic DNA of Lactobacillus casei bacteriophage PL-1 and nucleotide sequence of its cohesive single-stranded ends.

A restriction map of the genomic DNA of Lactobacillus casei phage PL-1 was constructed using the restriction endonucleases BamHI, EcoRI, HindIII, KpnI, NruI and XhoI. The PL-1 genome was 42.2 kb in size and had complementary cohesive ends forming a ring-like monomer. The cohesive ends, analysed with exonuclease III and S1 nuclease, were 3'-terminated single strands protruding from both ends. The nucleotide sequence of the cohesive ends, determined by the dideoxynucleotide method, comprised four A + T and 10 G + C pairs: 5' GAGGCCGACCGTTC 3'/3' CTCCGGCTGGCAAG 5'. Thus, the cohesive ends of PL-1 DNA were higher in G + C content than those of other known bacteriophage DNAs.

Amino Acid Sequence

Construction of a restriction map of bacteriophage T3 DNA.

A restriction endonuclease cleavage map of bacteriophage T3 DNA has been constructed. The enzymes used and, within parentheses, the number of their cleavage sites on T3 DNA are: HindIII (1), XbaI (1), BglII (1), KpnI (2), MboI (9), and HpaI (17). The size and the relative location of each fragment have been established, defining an accurate physical map of T3 DNA.

Chromosome Mapping

Restriction mapping of deletions in the nif region of the Klebsiella pneumoniae chromosome.

Chromosomal DNA restriction fragments carrying the nitrogen fixation (nif) and his genes of Klebsiella pneumoniae were identified in hybridization experiments using a plasmid derived from pRD1 as a radioactive probe. Restriction mapping of 26 genetically characterized chromosomal nif deletions provided a map showing the physical location of nif genes along the chromosome.

Base Sequence

Mitochondrial DNA restriction map for the Mediterranean fruit fly, Ceratitis capitata.

Molecular genetic research on the Mediterranean fruit fly, Ceratitis capitata, will provide tools to permit determination of source populations for new pest infestations. Restriction fragment length polymorphism (RFLP) of mitochondrial DNA provides some interpopulation discrimination. A restriction map, including the informative variable EcoRV and XbaI restriction sites, is constructed for the Mediterranean fruit fly, and several restriction sites are associated with specific gene regions based on polymerase chain reaction-RFLP and sequence analyses. A partial sequence of the mitochondrial 16S ribosomal RNA gene is reported.

Animals

Restriction map of a capsule plasmid of Bacillus anthracis.

The capsule plasmid pTE702 of Bacillus anthracis has been physically mapped with the restriction endonucleases HindIII, PstI, BamHI, SalI, and XhoI. A HindIII fragment map of pTE702 (96.5 kb) was obtained by analysis of the recombinant plasmids and cosmids containing overlapping fragments partially digested with HindIII. The physical map for PstI, BamHI, SalI, and XhoI was obtained by double digestion mapping of these sites in relation to the HindIII sites. The replication region of pTE702 was determined by in vitro genetic replicon labeling in B. subtilis.

Bacillus anthracis