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I Patel

Publications and source records attributed to I Patel.

At least 19 recordsLinked to original sources

Structural and functional analysis of a replication enhancer: separation of the enhancer activity from origin function by mutational dissection of the replication origin gamma of plasmid R6K.

The plasmid R6K possesses three distinct origins of replication: alpha, beta, and gamma. The replication origin gamma of plasmid R6K performs a dual function: (i) as an origin itself and (ii) as an enhancer element required in cis for the activation at a distance of the other two replication origins alpha and beta. We have dissected the gamma origin/enhancer by site-directed mutagenesis and have reached the following conclusions. The origin function can be specifically inactivated without impairing the enhancer function by insertion and/or deletion mutations near the opposite ends of the origin gamma sequence. One such mutation deleted sequences that included the left DnaA site I. The second mutation involved insertion of linker sequences that resulted in a spatial alteration between the right DnaA site II and the VIIth pi binding iteron (tandemly repeated binding sites). Other mutations that either partly or completely deleted the A+T-rich sequence adjacent to, but not including, the pi binding iterons also abrogated enhancer and origin function and suggested that pi binding sites were necessary but not sufficient for enhancer activity. Finally, the functional analysis of a set of mutants of the gamma origin/enhancer suggested that a continuous stretch of 300 base pairs is necessary for origin gamma function and that the sequences that included the binding sites for pi, DnaA, and integration host factor proteins are required in the correct stereochemical alignment to impart origin activity.

Bacterial Proteins

Principles and recent advances in human DNA fingerprinting.

Since 1985, DNA typing systems have played an increasingly important role in many aspects of human genetics, most notably in forensic and legal medicine. This article reviews the development of multilocus and single locus minisatellite DNA probes, and more recently the use of PCR to amplify hypervariable DNA loci, as well as discussing the biological properties of the unstable regions of DNA which form the basis of almost all DNA fingerprinting systems.

Base Sequence

Frequency of heterozygous complete hydatidiform moles, estimated by locus-specific minisatellite and Y chromosome-specific probes.

Restriction fragment length polymorphisms identified with three locus-specific minisatellite probes and banding patterns with Y chromosome-specific probes have been examined in 39 cases of complete hydatidiform mole (CHM) and the parents. All 39 cases were shown to be androgenetic. Of the 39 cases, 8 were identified as heterozygous CHM using the minisatellite probes. Estimates for the total number of heterozygous CHM in the series ranged from 23%-29%, higher than previously reported. Of the eight identified heterozygous CHM, six had Y chromosome-specific sequences whereas two were female; this is not significantly different from the 2:1 ratio expected. The low frequency of 46,XX heterozygous CHM in the literature may reflect difficulties in distinguishing them from 46,XX homozygous CHM. Examination of RFLPs with a small panel of locus-specific minisatellite probes provides a powerful method of classifying hydatidiform mole, enabling the rare heterozygous 46,XX CHM to be accurately identified.

DNA Probes

Analysis of somatic mutations at human minisatellite loci in tumors and cell lines.

Hypervariable human minisatellite loci show a substantial level of germline instability, and spontaneous mutation rates to new length alleles have been measured directly by pedigree analysis. We now show that mutation events altering the number of minisatellite repeat units are not restricted to the germline, but also arise in other tissues. Mutant alleles can be detected at a very low frequency in lymphoblastoid cell lines and at much higher frequencies in clonal tumor cell populations, most particularly in gastrointestinal adenocarcinomas. Mutant alleles in these tumors are usually present at a dosage equal to or greater than that of the progenitor allele, indicating that most or all of the tumor cells carry the same clonally derived mutant allele. As with germline mutation, the incidence of somatic mutations in tumors varies from locus to locus, with the same locus showing the highest level of germline and somatic instability. Most length changes, as those in the germline, are of only a few repeat units; however, very large changes are also observed, implying that such mutations can occur in the absence of meiosis.

DNA Mutational Analysis

Rapid identification of donor and recipient cells after allogeneic bone marrow transplantation using specific genetic markers.

The fate of the donor graft in allogeneic bone marrow transplantation, the presence of chimaerism and early relapse can be monitored by identification of the donor or recipient origin of haemopoietic cells in peripheral blood and bone marrow. We have done this by the use of highly informative locus-specific hypervariable DNA probes in two sex and blood group matched transplants. In four sex mismatched transplants the Y chromosome was identified by in situ hybridization using a biotinylated Y probe. Early engraftment by day 13 was detected in five of the six patients. Transient chimaerism occurred in half of the cases and was accompanied by the temporary appearance of the Philadelphia chromosome in one patient with chronic myeloid leukaemia without subsequent relapse. Persistence of the graft in the face of falling peripheral counts was documented in four of the six patients studied. The morphology as well as origin of the haemopoietic cells could be characterized by the Y probe analysis. In one patient, recipient lymphocytes were shown to co-exist with myeloid series of donor origin. We conclude that both techniques are highly specific, sensitive and can provide information within 24-48 h. Thus they are of value in guiding early therapeutic intervention in allogeneic transplantation.

Blotting, Southern

Thanatophoric dysplasia in identical twins.

Female twins concordant for thanatophoric dysplasia are presented. Monozygosity was confirmed using minisatellite DNA genetic fingerprinting. The evidence supporting new dominant mutations as the likely cause of thanatophoric dysplasia is reviewed.

Diseases in Twins

A replication initiator protein enhances the rate of hybrid formation between a silencer RNA and an activator RNA.

The replication origin gamma of plasmid R6K in certain miniplasmids is kept silent by a silencer RNA. We have identified a major and three minor transcripts that are synthesized in a direction antiparallel and complementary to the silencer RNA. The major RNA, called the activator, is essential for replication from ori gamma. The complementary nature of the activator and silencer RNAs strongly suggests that the former is a target of the latter. We have also discovered that the initiator protein is a sequence-specific double-stranded RNA-binding protein that accelerates the rate of activator-silencer hybrid formation. Thus the efficient silencing of ori gamma can be explained by silencer RNA-activator RNA hybrid formation that is driven to completion by the initiator protein.

DNA Replication

Evaluation of laboratory-prepared high-performance size-exclusion columns. Applications to food analysis.

This paper describes an inexpensive and relatively simple procedure to prepare high-performance size-exclusion columns from laboratory-packed or commercially pre-packed high-performance liquid chromatography columns by chemical deactivation of the surface of the silica packing material. The columns can be prepared quickly and reproducibly, they are chromatographically as efficient as high-performance size-exclusion columns commercially available, and are prepared at a fraction of the cost. Examples of the separation of proteins, peptides and polysaccharides on laboratory-prepared columns with differing permeation characteristics are illustrated and discussed.

Cheese

Characterization of a panel of highly variable minisatellites cloned from human DNA.

Five of the most variable loci detected in human DNA by hybridization with DNA fingerprint probes have been cloned and characterized. Each locus consists of a tandem-repetitive minisatellite, with repeat units ranging in length from 9 to 45 base pairs depending on the locus. All of these cloned minisatellites act as locus-specific hybridization probes, and detect extremely variable Mendelian loci with heterozygosities ranging from 90 to 99%. These five hypervariable loci, together with a previously-isolated minisatellite designated p lambda g3, are dispersed over four autosomes (chromosomes 1, 5, 7 and 12). Syntenic pairs on chromosomes 1 and 7 show no detectable pair-wise linkage, and thus these hypervariable loci show no evidence of clustering within the genome and should provide valuable markers for mapping inherited disease. The locus-specific minisatellites act as very sensitive hybridization probes, and can be pooled to detect several hypervariable loci simultaneously. The applications of these probes in individual identification, paternity testing and analysis of cell chimaerism are discussed, and are illustrated by an analysis of forensic specimens from two victims who had been sexually assaulted and murdered.

Chromosomes

A replication origin is turned off by an origin-"silencer" sequence.

The chromosome of R6K contains multiple origins of replication. The origin gamma is infrequently used in the original plasmid and remains "silent" in certain miniplasmid derivatives. The inactivation of the origin is caused by a natural origin silencer located adjacent to the minimal ori gamma sequence. The silencer functions in cis and has no trans activity. It has functional polarity and works only in one orientation when present immediately downstream from ori gamma. The silencer apparently initiates an RNA that invades ori gamma and turns it off either by competing with a primer RNA or by disrupting ori gamma structure. As predicted, removal of the silencer blocks the synthesis of silencer RNA and derepresses the origin.

Base Sequence

Conformational changes in a replication origin induced by an initiator protein.

The replication initiator protein of the plasmid R6K binds to seven contiguous 22 bp direct repeats that form an indispensable part of the three replication origins alpha, beta, and gamma. Binding of the initiator to the direct repeats induced a marked bending of the region of gamma replication origin. Binding of the initiator also promoted unwinding of the origin DNA by at least two turns. Distamycin appeared to antagonize the binding of the initiator to the seven 22 bp direct repeats. At the appropriate DNA and protein concentrations the initiator enhanced topoisomerase-induced catenation of the origin containing supercoiled DNA but not of DNA lacking the origin sequence. Thus, the initiator protein caused significant changes in the secondary and tertiary structures of the replication origin.

Bacterial Proteins

Amino acid metabolism of platelets in leukemia.

Platelets from patients with acute myelogenous leukemia, both before and after remission induction, were evaluated for their ability to incorporate D-[U-14C]glucose into the four amino acids, glutamine, asparagine, glutamic acid, and aspartic acid. Normal platelets incorporated about 80% of the activity into the amides, glutamine and asparagine, and only 20% into their respective amino acids, glutamic acid and aspartic acid. Platelets from patients with acute myelogenous leukemia in the acute stage showed a reversal of this pattern, which then returned to normal during remission. However, the concentration of amino acids was higher than normal, suggesting that remission platelets behaved like a young cell population. The abnormal pattern of labeling could be interpreted as a defect in the platelet citric acid cycle thereby compromising its energy source.

Amino Acids