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Persistence of functionally compromised anti-double-stranded DNA B cells in the periphery of non-autoimmune mice.

Both anti-single-stranded (ss) and anti-double-stranded (ds) DNA antibodies are associated with the autoimmune disease systemic lupus erythematosus (SLE), but only anti-dsDNA antibodies are considered one of the diagnostic criteria. Using Ig transgenes coding for anti-DNA we have determined the fate of anti-dsDNA B cells in a non-autoimmune environment. In a Rag-2 wild-type background, B cells expressing the anti-dsDNA Ig transgenes are present in the spleen but dsDNA specificity is disrupted due to expression of endogenous L chains. In a Rag-2-deficient background where co-expression of endogenous Ig is blocked, splenic B cells expressing only the anti-dsDNA transgene Ig are present, indicating that endogenous Ig expression is not required for bone marrow export. The anti-dsDNA B cells that persist are profoundly crippled in that they are unable to proliferate to lipopolysaccharide or anti-Ig stimulation. Furthermore, these anti-dsDNA Ig transgene B cells show a decreased lifespan relative to non-transgene BALB/c B cells. Persistence of anti-dsDNA B cells in the periphery of non-autoimmune mice raises the possibility that their appearance in the context of SLE is due to their reactivation by T cell help.

Amino Acid Sequence↗

The key role of aminoglycosides in antibacterial therapy and prophylaxis.

The discovery that aminosugars found in nature kill common bacteria initiated use of a new class of antibiotics that have played a key role in the management of several major medical problems over the past 40 years. The rapid bactericidal effect of the aminoglycosides on aerobic Gram-negative bacilli has expanded their use to approximately 6% of all our general hospital patients. These agents have many desirable properties, but also have the potential for producing ototoxicity and nephrotoxicity that imposes pharmacological limitations on their optimum use. The experience of earlier investigations demonstrated the need for quantitative measurements and individual patient dosing which has reduced the risk of toxicity many fold. Using sensitive measurements, toxic manifestations can be classified as detectable by laboratory means only, some that have clinical expression and rarely a lasting handicap. Semisynthetic modification of kanamycin (amikacin) and sissomicin (netilmicin) protects these compounds against inactivation by most bacterial enzymes and preserves their effectiveness. Netilmicin seems to have less potential for causing toxicity, especially ototoxicity that is irreversible, and offers the possibility of further gains through pharmacological flexibility without crippling toxicity.

Aminoglycosides↗

Growth, appetite, sequence of pathological signs and survival following the induction of rapid, synchronous vitamin A deficiency in the rat.

Experiments were conducted to determine the sequence and reliability of appearance of key signs of vitamin A deficiency. Rapid and essentially synchronous vitamin A deficiency was induced by the withdrawal of retinoic acid from mature (190--210 g) stringently vitamin A-deficient male rats reared by feeding early growth plateau (60--70 g) vitamin A-deprived rats diets first supplemented with and then lacking in 2 micrograms retinoic acid per gram diet in repeating 18 day:10 day supplementation:deprivation cycles. Growth was depressed within 1 to 2 days of the withdrawal of retinoic aicid whether animals were force-fed or were fed ad libitum. Similar patterns were obtained when animals were fed 5 or 10 micrograms retinoic acid per gram diet. Appetite was depressed (1--2 days) whether animals were fed 18% casein diets, or were given 10% dextrose drinking solutions only. Decreased food intake was not due to impaired taste function or to poor palatability of the deficient diet. Bilateral electrolytic lesions in the ventromedial nucleus of the hypothalamus or anterior prepyriform cortex failed to prevent or to delay loss of appetite. Supplementation with antibiotics decreased body weight losses in the late stages of deficiency and increased survival time. Other signs of deficiency (days until onset following retinoate withdrawal; percent incidence) were: decreased intestinal goblet cell numbers (2--3; 80), decreased pilocarpine induced salivation (6--8; 80), tracheal metaplasia (6--8; 80), transient periocular porphyria (6--8; 60), altered salivary gland morphology (9--10; 80), decreased stomach emptying in force-fed animals (12; 70), twisting (12; 5) and leg crippling (12; 5). We conclude that the sequence of appearance of individual signs of deficiency following the induction of synchronous vitamin A deficiency is highly reproducible, and that the more general use of synchronously deficient animals would materially assist studies of cause-effect relationships in vitamin A deficiency.

Animals↗

Obesity: the integrated roles of environment and genetics.

Obesity represents one of the most serious global health issues with approximately 310 million people presently affected. It develops because of a mismatch between energy intake and expenditure that results from behavior (feeding behavior and time spent active) and physiology (resting metabolism and expenditure when active). Both of these traits are affected by environmental and genetic factors. The dramatic increase in the numbers of obese people in Western societies reflects mostly changing environmental factors and is linked to reduced activity and perhaps also increased food intake. However, in all societies and subpopulations, there are both obese and nonobese subjects. These differences are primarily a consequence of genetic factors as is revealed by the high heritability for body mass index. Most researchers agree that energy balance and, hence, body weight are regulated phenomena. There is some disagreement about exactly how this regulation occurs. However, a common model is the "lipostatic" regulation system, whereby our energy stores generate signals that are compared with targets encoded in the brain, and differences between these drive our food intake levels, activity patterns, and resting and active metabolisms. Considerable advances were made in the last decade in understanding the molecular basis of this lipostatic system. Some obese people have high body weight because they have broken lipostats, but these are a rare minority. This suggests that for the majority of obese people, the lipostat is set at an inappropriately high level. When combined with exposure to an environment where there is ready availability of food at low energy costs to obtain it, obesity develops. The evolutionary background to how such a system might have evolved involves the evolution of social behavior, the harnessing of fire, and the development of weapons that effectively freed humans from the risks of predation. The lipostatic model not only explains why some people become obese whereas others do not, but also allows us to understand why energy-controlled diets do not work. Drug-based solutions to the obesity problem that work with the lipostat, rather than against it, are presently under development and will probably be in regular use within 5-10 y. However, several lines of evidence including genetic mapping studies of quantitative trait loci associated with obesity suggest that our present understanding of the regulatory system is still rudimentary. In particular, we know nothing about how the target body weight in the brain is encoded. As our understanding in this field advances, new drug targets are likely to emerge and allow us to treat this crippling disorder.

Adult↗

Tumor suppressor mutations and growth factor signaling in the pathogenesis of NF1-associated peripheral nerve sheath tumors. I. The role of tumor suppressor mutations.

Patients with neurofibromatosis type 1 (NF1), a common autosomal dominant tumor predisposition syndrome, develop benign cutaneous, intraneural, and plexiform neurofibromas and malignant peripheral nerve sheath tumors (MPNSTs), an aggressive form of Schwann cell neoplasm that frequently arises from plexiform neurofibromas. Impressive advances have been made in defining the molecular mechanisms responsible for neurofibroma and MPNST tumorigenesis, including the identification of key tumor suppressor gene mutations, an improved understanding of the functions of these tumor suppressors, and the production of transgenic mouse models in which tumor suppressor gene mutations predispose animals to the development of neurofibromas and MPNSTs. It has also become apparent that dysregulated growth factor signaling cooperates with tumor suppressor mutations to promote neurofibroma and MPNST tumorigenesis. In Part I of this two-part review, we consider findings demonstrating that Schwann cells are the primary neoplastic cell type in neurofibromas and MPNSTs and that specific tumor suppressor gene mutations promote the development of these tumors. In Part II, which will be published in a later issue, we will review evidence indicating that inappropriate growth factor signaling contributes to this process by stimulating the proliferation, survival, and migration of Schwann cells whose regulatory mechanisms have been crippled by a loss of tumor suppressor function.

Animals↗

A role for the yeast SWI/SNF complex in DNA replication.

The yeast SWI/SNF complex is required for expression of many genes and for the full functioning of several transcriptional activators. Genetic and biochemical studies indicate that SWI/SNF uses the energy of ATP hydrolysis to antagonize chromatin-mediated transcriptional repression. We have tested the possibility that SWI/SNF might also play a role in DNA replication. A mitotic minichromosome stability assay was used to investigate the replication efficiency of a variety of autonomous replication sequences (ARSs) in the presence and absence of SWI/SNF. The stability of minichromosomes that contain ARS1, ARS309 or ARS307 is not altered by lack of SWI/SNF, whereas the functioning of ARS121 is crippled when SWI/SNF is inactivated. The SWI/SNF dependence of ARS121 does not require the replication enhancer factor, ABF1, and thus, it appears to be a property of a minimal ARS121 origin. Likewise, a minimal derivative of ARS1 that lacks the ABF1 replication enhancer acquires SWI/SNF dependence. Replacing the ABF1 binding site at ARS1 with a binding site for the LexA-GAL4 chimeric activator also creates a SWI/SNF-dependent ARS. Our studies suggest that the SWI/SNF chromatin remodeling complex can play a role in both replication and transcription and, furthermore, that SWI/SNF dependence of ARS elements is a property of both an ARS-specific replication enhancer and the overall organization of ARS sequence elements.

DNA Replication↗

The CUP1 upstream repeated element renders CUP1 promoter activation insensitive to mutations in the RNA polymerase II transcription complex.

Activation of transcription in eukaryotes requires the concerted action of numerous components of the RNA polymerase II transcriptional apparatus. The degree of dependence on many of these components varies from gene to gene and it is still largely unknown how the requirement for any particular component is determined at any given gene. We show that removal of Gal11 from the yeast transcription complex can affect activation from the CUP1 UAS in a manner dependent on its genomic context. Our results indicate a novel function for the CUP1 upstream repeated element (CURE) located upstream of the CUP1 UAS at the naturally multimerized CUP1 locus. The presence of CURE endowed the CUP1 UAS with a reduced susceptibility to the effects of deleting Gal11. Similar results were obtained with the Srb/mediator subunit Srb5. Restoration of activation from the CUP1 promoter to wild-type levels by the CURE correlated with changes in the accessibility of local chromatin to nucleases. The CURE sequence may serve to protect the stress-inducible CUP1 UAS-promoter elements against reduced activation that may result from crippled transcription complexes under stress conditions.

5' Flanking Region↗

The proliferating cell nuclear antigen regulates retinoic acid receptor transcriptional activity through direct protein-protein interaction.

Retinoic acid receptors (RARs) interact, in a ligand-dependent fashion, with many coregulators that participate in a wide spectrum of biological responses, ranging from embryonic development to cellular growth control. The transactivating function of these ligand-inducible transcription factors reside mainly, but not exclusively, in their ligand-binding domain (AF2), which recruits or dismiss coregulators in a ligand-dependent fashion. However, little is known about AF2-independent function(s) of RARs. We have isolated the proliferating cell nuclear antigen (PCNA) as a repressor of RAR transcriptional activity, able to interact with an AF2-crippled RAR. The N-terminus of PCNA interacts directly with the DNA-binding domain of RAR, and PCNA is recruited to a retinoid-regulated promoter in intact cells. This interaction affects the transcriptional response to retinoic acid in a promoter-specific manner, conferring an unanticipated role to PCNA in transcriptional regulation. Our findings also suggest a role for RAR as a factor coordinating DNA transcription and repair.

Binding Sites↗

Radio-isotopic joint scans in haemophilic arthritis.

The majority of severe haemophiliacs will develop a crippling arthritis consequent upon recurrent haemarthroses although the pathogenic mechanism remains unclear. We have carried out technetium-99 pertechnetate joint scans in the elbows, knees and ankles of 23 haemophilic patients and compared the isotope uptake of the 15 patients with clinical and radiological evidence of arthritis to that of eight patients without arthritis, to 13 age-matched healthy male controls, and to 10 age-matched males with active rheumatoid arthritis. Isotope uptake into the knee joints was significantly higher in haemophilic arthritis than in controls, haemophiliacs without arthritis, and patients with rheumatoid arthritis [median percentage uptake of administered technetium (Tc) dose X 10(3) in right knee = 9.4, 6.2, 6.4 and 6.6, respectively]: and the differences from haemophilic arthritis were all significant (p less than 0.01, Mann-Whitney U test). Similar differences were seen in the elbows and ankles. Increased Tc uptake correlated strongly with frequency of haemarthrosis, pain, synovitis, range of movement and radiological changes in knees and elbows, but poorly with the lesser changes seen in the ankles. These results would support the theory that haemophilic arthritis amongst the inflammatory arthropathies and that scanning is an appropriate technique for following progression of joint disease.

Ankle Joint↗

Immunoglobulin responses to experimental silicosis.

Silicosis is a crippling fibrotic lung disease induced by inhalation of crystalline silica. One feature of silicosis is systemic and pulmonary immune dysfunction characterized in part by elevations in serum and bronchoalveolar lavage (BAL) immunoglobulins. A major specific aim of the current report was to demonstrate that an experimental model of silicosis previously well characterized for the development of pulmonary inflammation and fibrosis would also exhibit increased levels of serum and BAL IgG and IgM similar to those of human silicosis. We also sought to document the anatomic compartments responsible for these immunoglobulin responses. To address these specific aims, we compared levels of IgG and IgM in serum and BAL from rats with experimental silicosis induced by inhalation of silica with levels of these immunoglobulins in titanium dioxide (TiO(2))- and sham (air)-exposed controls. The ability of mononuclear cell populations from lung, lung-associated lymph node, and spleen to produce IgG and IgM ex vivo were also compared. We found that experimental silicosis was associated with elevated IgG and IgM levels in blood and BAL relative to the control groups. Our findings also suggested that draining lung-associated lymph nodes (LALN) were the most important sites for increased IgG and IgM production in experimental silicosis, with lungs contributing to a lesser degree. Increased production in the LALN appeared related to marked expansion in total numbers, but not relative proportion, of B lymphocytes.

Administration, Inhalation↗

Antioxidant defense system and lipid peroxidation in patients with skeletal fluorosis and in fluoride-intoxicated rabbits.

Fluorosis is a serious public health problem in many parts of the world where drinking water contains more than 1 ppm of fluoride. The main manifestations of skeletal fluorosis are crippling bone deformities, spinal compressions, and restricted movements of joints. Although fluorosis is irreversible, it could be prevented by appropriate and timely intervention through understanding the process at biochemical and molecular levels. As in the case of many chronic degenerative diseases, increased production of reactive oxygen species (ROS) and lipid peroxidation has been considered to play an important role, even in the pathogenesis of chronic fluoride toxicity. However, there is inconclusive proof for an altered oxidative stress and antioxidant balance in fluorosis, and the existing data are not only conflicting but also contradictory. In the present communication we have evaluated the antioxidant defense system (both enzymatic and nonenzymatic) and lipid peroxidation in both humans from an endemic fluorosis area (5 ppm fluoride in the drinking water) and in rabbits receiving water with 150 ppm of fluoride for six months. There was no significant difference in lipid peroxidation, glutathione, and vitamin C in the blood of human fluorotic patients and fluoride-intoxicated rabbits as compared to respective controls. Neither were there any changes in the activities of catalase, superoxide dismutase, glutathione peroxidase, or glutathione S-transferase in the blood due to fluoride intoxication (of rabbits) or fluorosis in humans. The results together do not subscribe to oxidative stress theory in fluorosis. Thus, in the absence of clear proof of oxidative damage and to counter toxic effects of fluoride through supplementation of antioxidants, extensive investigations are needed to conclusively prove the role of oxidative stress in skeletal fluorosis.

Adult↗

Fungal development and induction of defense response genes during early infection of wheat spikes by Fusarium graminearum.

Fusarium head blight (FHB) of wheat is a crippling disease that causes severe economic losses in many of the wheat-growing regions of the world. Temporal patterns of fungus development and transcript accumulation of defense response genes were studied in Fusarium graminearum-inoculated wheat spikes within the first 48 to 76 h after inoculation (hai). Microscopy of inoculated glumes revealed that the fungus appeared to penetrate through stomata, exhibited subcuticular growth along stomatal rows, colonized glume parenchyma cells, and sporulated within 48 to 76 hai. No major differences in the timing of these events were found between Sumai 3 (resistant) and Wheaton (susceptible) genotypes. In complementary experiments, RNA was extracted from spikes at several time intervals up to 48 hai and temporal expression patterns were determined for defense response genes encoding peroxidase, PR-1, PR-2 (beta-1,3-glucanase), PR-3 (chitinase), PR-4, and PR-5 (thaumatin-like protein). In both genotypes, transcripts for the six defense response genes accumulated as early as 6 to 12 hai during F. graminearum infection and peaked at 36 to 48 hai. Greater and earlier PR-4 and PR-5 transcript accumulation was observed in Sumai 3, compared with Wheaton. Our results show that the timing of defense response gene induction is correlated with F. graminearum infection.

DNA Probes↗

Advances in adenoviral vectors: from genetic engineering to their biology.

Ad2 and Ad5 belong to a group of human cytolytic viruses that target the respiratory airways for reproduction, whereas latent infections establish within other tissues. Signals therefore exist that control this dichotomic process in different cell types, perhaps including cis and/or trans elements of viral origin. Since 1993, Ad2- and Ad5-based adenoviruses lacking all or part of the E1 regulatory region have been undergoing evaluation in phase I trials that target cancer and cystic fibrosis. These viruses are extremely attenuated and actually do not reproduce in most human cells. However, they retain most of the virus genetic program and often promote a significant cytotoxicity after infection, emphasizing the need to further cripple the virus biology to extend the duration of transgene expression, if required. We will review the strategies currently followed to engineer a professional lytic virus for epithelial cells into an innocuous gene delivery vehicle. Potential effects on the transducing properties of the vector that may result from the inactivation of viral activities that normally allow/regulate extrachromosomal gene expression during wild-type infection are discussed.

Adenovirus E1 Proteins↗

NASA--has its biological groundwork for a trip to Mars improved?

In a 1991 editorial in The FASEB Journal, Robert W. Krauss commented on a recent report of the Presidential Advisory Committee on the Future of the U.S. Space Program (Augustine report). He concluded that, although a manned mission to Mars with life sciences as the priority was endorsed by the Committee, it failed to deal realistically with one huge gap; biological sciences have never been given high priority. According to Krauss, this left a void that will cripple, perhaps fatally, any early effort to ensure long-term survival on any mission of extended duration. The gap included insufficient flight time for fundamental biological space research and insufficient funds. Krauss expressed his opinions 15 years ago. Have we better knowledge of space biology now? This question becomes more acute now that President George W. Bush recently proposed a manned return to the moon by 2015 or 2020, with the moon to become our staging post for manned missions to Mars. Will we be ready so soon? A review of the progress in the last 15 years suggests that we will not. Because of the Columbia disaster, flight opportunities for biological sciences in shuttle spacelabs and in Space Station laboratories compete with time for engineering problems and construction. Thus, research on gravity, radiation, and isolation loses out to problems deemed to be of higher priority. Radiation in deep space and graded gravity in space with on board centrifuges are areas that must be studied before we undertake prolonged space voyages. Very recent budgetary changes within National Aeronautics and Space Administration threaten to greatly reduce the fundamental space biology funds. Are we ready for a trip to Mars? Like Krauss 15 years ago, I think not for some time.

Biological Science Disciplines↗

Postpartum depression: it isn't just the blues.

Postpartum depression is a crippling mood disorder, historically neglected in health care, leaving mothers to suffer in fear, confusion, and silence. Undiagnosed it can adversely affect the mother-infant relationship and lead to long-term emotional problems for the child. This article differentiates postpartum depression from other postpartum mood and anxiety disorders and addresses these aspects of postpartum depression: symptoms, prevalence, risk factors, interventions, and the effects on relationships and child development. Instruments available to screen for postpartum depression are also reviewed.

Antidepressive Agents↗

A new method of oral reconstruction using a free composite foot flap.

We present a series of 10 free composite foot flaps used in 9 patients for floor-of-mouth and mandible reconstruction after composite resection. This one-stage repair replaces the soft tissue as well as the bone that has been resected. The flap is easily obtained from the foot, and is tailored to meet the requirements of the mouth and jaw defect. Donor site morbidity is surprisingly low: two flaps were lost from vascular obstruction, and 1 from delayed infection at ten days. The surviving flaps have provided good cosmetic and functional results. Bony union has occurred in half the grafts, and satisfactory firm fibrous union in the remainder. The flap is also useful for late reconstruction in "oral cripples," and may be used with the skin internally or externally as required. We are pleased with the versatility of this flap in complicated reconstructions.

Female↗

Surgical management of massive perianal hidradenitis suppurativa.

Hidradenitis suppurativa of the perineum and buttocks is a devastating disease often causing patients years of pain, discomfort, and eventual social isolation. The chronic form of the disease results from a lack of aggressive surgical intervention when the patient is first seen. It is characterized by a malodorous drainage from multiple sinus tracts encased in marked scarred and fibrotic tissue. In contrast to axillary involvement, the perianal form of hidradenitis suppurativa is associated with an increased frequency of anemia, fistulous communications with bowel and urinary tract, and the development of carcinomas. Several cases illustrating the debilitating nature of the disease and its optimal management are presented. This report illustrates that (1) a well-planned preoperative and postoperative bowel regimen can eliminate the need for a diverting colostomy, even in the most extensive forms of perianal disease, (2) radical excision is expedited and blood loss is minimized by the use of a Shaw hot knife (Oximetrix, Mountain View, CA), (3) the quilted application of meshed split-thickness skin grafts as a primary procedure provides rapid closure of the surgical defect and minimizes patient discomfort, and (4) aggressive surgical intervention in severe cases provides a chance for a rapid recovery from this crippling disease.

Adult↗

Neurofibroma of the ear.

Neurofibromas cause unsightly and crippling deformities. These locally destructive tumors arise along the distribution of peripheral and cranial nerves. The 2 patients presented here had neurofibromas of the external ear. In one patient, the lesion was limited to the auricle. In the other, the tumor extended into the facial nerve and parotid gland. Preoperative computed tomographic scanning, a postauricular approach to the tumor, and careful dissection produced an aesthetic debulking of the auricular neurofibromas with preservation of facial nerve function and improvement in hearing.

Child↗