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Biomedical subjects

A L Jackson

Publications and source records attributed to A L Jackson.

At least 19 recordsLinked to original sources

The contribution of endogenous sources of DNA damage to the multiple mutations in cancer.

There is increasing evidence that most human cancers contain multiple mutations. By the time a tumor is clinically detectable it may have accumulated tens of thousands of mutations. In normal cells, mutations are rare events occurring at a rate of 10(-10) mutations per nucleotide per cell per generation. We have argued that the mutation rates exhibited by normal human cells are insufficient to account for the large number of mutations found in human cancers, and therefore, that an early event in tumorigenesis is the development of a mutator phenotype. In normal cells, spontaneous and induced DNA damage is balanced by multiple pathways for DNA repair, and most DNA damage is repaired without error. However, in tumor cells this balance may be shifted such that damage overwhelms the repair capacity, resulting in the accumulation of multiple mutations. Our hypothesis is that multiple random mutations occur during carcinogenesis. The sequential mutations that are observed in some human tumors result from selective events required for tumor progression. We consider the possibility that endogenous sources of DNA damage, in particular oxidative DNA damage, may contribute to genomic instability and to a mutator phenotype in some tumors. Endogenous and environmental sources of reactive oxygen species (ROS) are abundant. In tumor cells, antioxidant or DNA repair capacity may be insufficient to compensate for the production of ROS, and these endogenous ROS may be capable of damaging DNA and inducing mutations in critical DNA stability genes. The possibility that oxidative DNA damage could be a significant source of the genomic instability characteristic of human cancers is exciting, because it may be feasible to modulate the extent of oxidative damage through antioxidant therapy. The use of antioxidants to reduce the extent of molecular damage by ROS could delay the progression of cancer.

Animals↗

The leftward cradling bias and prosody: an investigation of cradling preferences in the deaf community.

Popular theory on the tendency to cradle an infant to the left side points to the specialization of the right hemisphere for the perception and expression of emotion. J. S. Sieratzki and B. Woll (1996) recently suggested that more emphasis be placed on the auditory modality, specifically focusing on the role of prosodic information. In this study, the direction of the lateral cradling bias in a group of profoundly deaf children, a group of deaf adults, and a control group of adults with no hearing impairment was investigated. The authors found a strong leftward cradling bias in all groups, a bias that was, if anything, stronger in the deaf participants. Given that people who are profoundly deaf, especially those who have been deaf from birth, have not been exposed to auditory prosody, the data do not support the suggestion that such prosodic information is the basis for the leftward cradling bias.

Adult↗

Language facility and theory of mind development in deaf children.

Deaf children with signing parents, nonnative signing deaf children, children from a hearing impaired unit (HIU), and oral deaf children were tested on three first-order theory of mind (ToM) tasks--a subset was also given a second-order task (Perner & Wimmer, 1985). A British Sign Language (BSL) receptive language task (Herman, Holmes, & Woll, 1999) and four nonverbal executive function tasks were also administered. The new BSL task allowed, for the first time, the receptive language abilities of deaf children to be measured alongside ToM abilities. Hearing children acted as controls. These children were given the same tasks, except the British Picture Vocabulary Scale was substituted for the BSL task. Language ability correlated positively and significantly with ToM ability, and age was correlated with language ability for both the deaf and hearing children. Age, however, underpinned the relationship between ToM and language for deaf children with signing parents and hearing children but not for nonnative signing, HIU, or oral deaf children. Executive function performance in deaf children was not related to ToM ability. A subset of hearing children, matched on age and language standard scores with signing deaf children, passed significantly more ToM tasks than the deaf children did. The findings are discussed with respect to the hypotheses proposed by Peterson and Siegal (1995, 2000) and Courtin (2000).

Journal Article↗

Microsatellite instability induced by hydrogen peroxide in Escherichia coli.

Damage to DNA by reactive oxygen species may be a significant source of endogenous mutagenesis in aerobic organisms. Using a selective assay for microsatellite instability in E. coli, we have asked whether endogenous oxidative mutagenesis can contribute to genetic instability. Instability of repetitive sequences, both in intronic sequences and within coding regions, is a hallmark of genetic instability in human cancers. We demonstrate that exposure of E. coli to low levels of hydrogen peroxide increases the frequency of expansions and deletions within dinucleotide repetitive sequences. Sequencing of the repetitive sequences and flanking non-repetitive regions in mutant clones demonstrated the high specificity for alterations with the repeats. All of the 183 mutants sequenced displayed frameshift alterations within the microsatellite repeats, and no base substitutions or frameshift mutations occurred within the flanking non-repetitive sequences. We hypothesize that endogenous oxidative damage to DNA can increase the frequency of strand slippage intermediates occurring during DNA replication or repair synthesis, and contribute to genomic instability.

Catalase↗

Assessment of gastric electrical activity and autonomic function among diabetic and nondiabetic patients with symptoms of gastroesophageal reflux.

Gastroesophageal reflux disease (GERD) may present differently in patients with diabetes mellitus (DM) than in nondiabetics (NDM). We compared three tests in two patient groups with GERD symptoms: a DM group (n = 10) and a NDM group (n = 13). The tests were 24-hr esophageal pH, autonomic function testing (AFT), and electrogastrography (EGG). Analysis of the 23 patients revealed the DM group had normal 24-hr pH values (9 of 10 patients, mean pH 3.1 +/- 1.7), while NDM displayed abnormal pH values (9 of 13 patients, mean pH 21.2 +/- 5.9). AFT results were abnormal in DM (demonstrating cholinergic/ adrenergic dysfunction), but normal in NDM. EGG values were abnormal in both groups (mean 3.31 +/- 0.1 in each). We conclude that in GERD-symptomatic patients, those with DM frequently have normal 24-hr pH, but abnormal autonomic functioning, in contrast to NDM, who have abnormal 24-hr pH but normal autonomic function. Both groups had identically abnormal mean EGG values.

Autonomic Nervous System↗

Induction of microsatellite instability by oxidative DNA damage.

Instability of repetitive sequences, both in intronic sequences and within coding regions, has been demonstrated to be a hallmark of genomic instability in human cancer. Understanding how these mutational events arise may provide an opportunity for prevention or early intervention in cancer development. To study the source of this instability, we have identified a region of the beta-lactamase gene that is tolerant to the insertion of fragments of exogenous DNA as large as 1,614 bp with minimal loss of enzyme activity, as determined by antibiotic resistance. Fragments inserted out-of-frame render Escherichia coli sensitive to antibiotic, and compensatory frameshift mutations that restore the reading frame of beta-lactamase can be selected on the basis of antibiotic resistance. We have utilized this site to insert a synthetic microsatellite sequence within the beta-lactamase gene and selected for mutations yielding frameshifts. This assay provides for detection of one frameshift mutation in a background of 10(6) wild-type sequences. Mismatch repair deficiency increased the observed frameshift frequency approximately 300-fold. Exposure of plasmid containing microsatellite sequences to hydrogen peroxide resulted in frameshift mutations that were localized exclusively to the microsatellite sequences, whereas DNA damage by UV or N-methyl-N'-nitro-N-nitrosoguanidine did not result in enhanced mutagenesis. We postulate that in tumor cells, endogenous production of oxygen free radicals may be a major factor in promoting instability of microsatellite sequences. This beta-lactamase assay may provide a sensitive methodology for the detection and quantitation of mutations associated with the development of cancer.

Base Sequence↗

On the origin of multiple mutations in human cancers.

Tumor progression is a multi-step process, proceeding by multiple alterations from a normal cell to a localized tumor, and finally to one that acquires the ability to invade and metastasize. Tumors are characterized by many mutations in the form of base substitutions, deletions, chromosomal translocations, and gene amplifications, and these mutations are found to accumulate as tumors progress. In contrast, spontaneous mutations are very rare events. Considering the high fidelity of DNA replication in normal cells, it seems improbable that spontaneous mutations could be the source of the large numbers of genetic alterations that are observable in cancer cells. The question of how multiple mutations accumulate in tumor cells is one of considerable interest, since understanding the source of these mutations may facilitate the detection of tumors and may provide new approaches to cancer prevention. We have proposed that the multiple mutations detectable in cancer cells result from a mutator phenotype, in which loss of a genome stability function occurs early during tumor development and predisposes the tumor cell to the accumulation of further mutations. We will first consider the evidence that cancer cells manifest a mutator phenotype, and subsequently discuss the possibility that a mutator phenotype can be selected and can be transient as tumors progress.

Clone Cells↗

The mutation rate and cancer.

The stability of the human genome requires that mutations in the germ line be exceptionally rare events. While most mutations are neutral or have deleterious effects, a limited number of mutations are required for adaptation to environmental changes. Drake has provided evidence that DNA-based microbes have evolved a mechanism to yield a common spontaneous mutation rate of approximately 0.003 mutations per genome per replication (Drake 1991). In contrast, mutation rates of RNA viruses are much larger (Holland et al. 1982) and can approach the maximum tolerable deleterious mutation rate of one per genome (Eigen and Schuster 1977; Eigen 1993). Drake calculates that lytic RNA viruses display spontaneous mutation rates of approximately one per genome while most have mutation rates that are approximately 0.1 per genome (Drake 1993). This constancy of germline mutation rates among microbial species need not necessarily mean constancy of the somatic mutation rates. Furthermore, there need not be a constant rate for somatic mutations during development. In this review, we consider mutations in cancer, a pathology in which there appears to be an increase in the rate of somatic mutations throughout the genome. Moreover, within the eukaryotic genome, as in microbes, there are "hot-spots" that exhibit unusually high mutation frequencies. It seems conceivable to us that many tumors contain thousands of changes in DNA sequence. The major question is: how do these mutations arise, and how many are rate-limiting for tumor progression?

Animals↗

Role of the hypothalamic-pituitary-adrenal axis in the suppression of luteinizing hormone release by delta-9-tetrahydrocannabinol.

The ability of cannabinoids to affect anterior pituitary luteinizing hormone (LH) secretion has been largely attributed to a central nervous system site of action, however, the mechanism(s) by which cannabinoids alter LH release remains unclear. In the present study, the acute administration of delta-9-tetrahydrocannabinol (THC) produced a dose-related suppression of plasma LH and stimulation of adrenocorticotropin (ACTH) levels in ovariectomized female rats. To determine if activation of the hypothalamic-pituitary-adrenal axis was involved in the ability of THC to inhibit LH release, female rats were either pretreated with the corticotropin-releasing hormone (CRH) receptor antagonist, alpha-helical CRH, or were adrenalectomized prior to acute THC administration, in order to assess the roles of CRH and corticosterone in the ability of THC to suppress LH secretion. A low dose of THC (0.5 mg/kg b.w., iv) produced a decrease in plasma LH levels at 20 and 40 min posttreatment in ovariectomized, sham adrenalectomized rats. However, in adrenalectomized animals, plasma LH levels were suppressed at 40 min and remained decreased at 80 min following THC administration. Thus, the duration of LH suppression following THC treatment was significantly increased in adrenalectomized versus sham adrenalectomized rats (p < 0.05). Furthermore, pretreatment with the CRH receptor antagonist, alpha-helical CRH (100 micrograms/5 microliters, icv), 30 min before THC administration, attenuated the ability of a high THC dose (1.0 mg/kg) to inhibit LH release in ovariectomized rats. Together, these results demonstrate that THC has significant effects on LH and ACTH secretion in ovariectomized rats and suggest that THC-induced CRH activation, but not corticosterone release, plays a role in the suppression of LH release by cannabinoids.

Adrenalectomy↗

In vitro expansion of GGC:GCC repeats: identification of the preferred strand of expansion.

The human fragile-X syndrome, a major cause of inherited mental retardation, is associated with expansion of the trinucleotide repeat GGC:GCC. Repetitive sequences in DNA are subject to slippage during catalysis by DNA polymerases. We characterized the extent of slippage of synthetic GGC:GCC repeats by various DNA polymerases: Taq DNA polymerase, Klenow fragment of DNA polymerase I, DNA Sequence, DNA polymerase-alpha and polymerase-beta, as well as HIV reverse transcriptase. All of these enzymes were found to expand GGC:GCC repeats, with the most extensive expansion exhibited by Taq DNA polymerase. Starting with a template and primer, each 15 nucleotides (nt) in length, the product of one round of synthesis by Taq polymerase is as long as 250 nt. Sequence analysis of cloned DNA fragments expanded by Taq polymerase indicates that expansion involves multiple triplet additions and that it is asymmetric. The asymmetric distribution of terminal nucleotides in the expanded product is consistent with active expansion of the GCC strand and passive additions onto the GGC strand. The preferential elongation and expansion of the GCC strand was confirmed in studies utilizing longer repeats within a single-stranded M-13 template.

Base Sequence↗

Hemopneumothorax in an intravenous drug abuser.

This article reports a case of an intravenous drug abuser who presented with a hemopneumothorax, which is a rare complication of jugular vein self-injection. The patient achieved an inadvertent subclavian arterotomy, causing tingling and numbness in the hand and arm, an unusual "high," and blood filling the pleura, collapsing the lung. With an increase in pulmonary complications among intravenous drug abusers from infections in the immunocompromised state, pulmonary complaints related to trauma sustained from their activity must not be overlooked.

Adult↗

Cdc7 protein kinase for DNA metabolism comes of age.

The Cdc7 protein kinase is the product of an essential cell cycle gene, and is involved in three aspects of DNA metabolism: mitotic DNA replication, meiotic DNA recombination, and replication-dependent DNA repair. The mechanism by which Cdc7 regulates each of its cellular functions is an issue of considerable interest. Recently, much of the research regarding the regulation of cell cycle progression has focused on the regulatory action of cyclins on their catalytic counterparts. We propose that the function of Cdc7 in cell cycle progression is mediated in a similar manner, in that Dbf4, a protein whose transcript level is known to fluctuate in the cell cycle, is essential for Cdc7 kinase activity. The periodic association of Dbf4 with Cdc7 may account for the regulation of Cdc7 kinase function and progression through the cell cycle.

CDC28 Protein Kinase, S cerevisiae↗

Managed competition: a critical analysis.

Proposals for managed competition offered by President Clinton and members of Congress would foster the proliferation of health maintenance organizations, which in turn could increase bureaucracy, reduce patients' choice of providers, restrict providers' medical practices, and benefit already profitable insurance companies. A single-payer alternative presents a more viable way of reducing administrative costs and providing health insurance for all.

Competitive Medical Plans↗

Cell cycle regulation of the yeast Cdc7 protein kinase by association with the Dbf4 protein.

Yeast Cdc7 protein kinase and Dbf4 protein are both required for the initiation of DNA replication at the G1/S phase boundary of the mitotic cell cycle. Cdc7 kinase function is stage-specific in the cell cycle, but total Cdc7 protein levels remained unchanged. Therefore, regulation of Cdc7 function appears to be the result of posttranslational modification. In this study, we have attempted to elucidate the mechanism responsible for achieving this specific execution point of Cdc7. Cdc7 kinase activity was shown to be maximal at the G1/S boundary by using either cultures synchronized with alpha factor or Cdc- mutants or with inhibitors of DNA synthesis or mitosis. Therefore, Cdc7 kinase is regulated by a posttranslational mechanism that ensures maximal Cdc7 activity at the G1/S boundary, which is consistent with Cdc7 function in the cell cycle. This cell cycle-dependent regulation could be the result of association with the Dbf4 protein. In this study, the Dbf4 protein was shown to be required for Cdc7 kinase activity in that Cdc7 kinase activity is thermolabile in vitro when extracts prepared from a temperature-sensitive dbf4 mutant grown under permissive conditions are used. In vitro reconstitution assays, in addition to employment of the two-hybrid system for protein-protein interactions, have demonstrated that the Cdc7 and Dbf4 proteins interact both in vitro and in vivo. A suppressor mutation, bob1-1, which can bypass deletion mutations in both cdc7 and dbf4 was isolated. However, the bob1-1 mutation cannot bypass all events in G1 phase because it fails to suppress temperature-sensitive cdc4 or cdc28 mutations. This indicates that the Cdc7 and Dbf4 proteins act at a common point in the cell cycle. Therefore, because of the common point of function for the two proteins and the fact that the Dbf4 protein is essential for Cdc7 function, we propose that Dbf4 may represent a cyclin-like molecule specific for the activation of Cdc7 kinase.

Cell Cycle↗

Serum increases and lymphoid cell surface losses of IL-2 receptor CD25 in HIV infection: distinctive parameters of HIV-induced change.

Lymphocyte activation induces production of soluble IL-2 receptor (sIL-2R) which is a large portion of the CD25 membrane molecule and which is detectable in serum. Serum sIL-2R is reported here to increase as a direct effect of the HIV infection and not to be due to secondary opportunistic infections. sIL-2R increased promptly after HIV seroconversion in 83% of 50 initially seronegative homosexual men. The sIL-2R serum levels stabilized in the third year after seroconversion and were then predictive of later CD4 T cell levels and development of AIDS. In two studies of 59 and 395 seropositive men, beta-2 microglobulin (B2M) and neopterin levels in serum correlated closely with each other but not with sIL-2R levels. Thus, increased production of sIL-2R may reflect pathological processes distinct from those determining B2M and neopterin increases. Membrane CD25 expression on peripheral blood lymphocytes, unexpectedly, was found to be decreased in HIV infection. This contrasted with the increased sIL-2R in serum. Investigations with sensitive flow cytometry technics showed that CD25 was expressed at reduced levels and averaged only 12% of lymphocytes from HIV-infected individuals in contrast to 25% in noninfected individuals. All major lymphoid populations showed reductions in CD25 positive cells. This reduction in lymphoid membrane CD25, however, was not inversely correlated with the increased serum levels of sIL-2R or with other parameters of immune deficiency or activation. Thus, surface CD25 loss and serum sIL-2R increase are separate and independent consequences of HIV infection.

CD4-Positive T-Lymphocytes↗

Serum soluble CD8 molecule is a marker of CD8 T-cell activation in HIV-1 disease.

To characterize CD8 T-cell activation during HIV-1 infection we measured serum soluble CD8 (sCD8) levels longitudinally in seroconverters and in individuals with established HIV infection who were in different stages of illness. CD8 T-cell activation occurs very early in HIV infection. Serum sCD8 levels were elevated in 91.5% of the first seropositive samples in seroconverters. Furthermore, CD8 T-cell activation persists throughout HIV infection. sCD8 predicted the occurrence of AIDS in HIV-seropositive individuals and so the addition of serum sCD8 levels to CD4 T-cell measurements increased the power in predicting the onset of AIDS. The serum level of sCD8 was particularly relevant to the prediction of subsequent CD4 T-cell fall relatively early in infection, for example, in the 3 years after seroconversion. However, later in HIV infection, for example within 2 years prior to development of AIDS, sCD8 levels were less predictive. sCD8 correlated with levels of beta 2-microglobulin and neopterin, which reflect activation of cell types other than CD8. Thus, serum sCD8 level can be a useful marker of specific CD8 T-cell activation, and is an independent predictor of prognosis in HIV infection.

Acquired Immunodeficiency Syndrome↗