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Biomedical subjects

B Wiggert

Publications and source records attributed to B Wiggert.

At least 73 records · Page 4Linked to original sources

Light deprivation profoundly affects gene expression of interphotoreceptor retinoid-binding protein in the mouse eye.

Ambient light appears to play a role in regulating gene and protein expression of interphotoreceptor retinoid-binding protein (IRBP), a protein that facilitates the transport of retinoids between the neural retina and pigment epithelium in the visual cycle. Pregnant CD-1 mice were placed in the dark approximately 48 hr before parturition, and the pups were reared for 14 days under these conditions. Control animals were reared on a 12 hr light/12 hr dark cycle. Northern blotting of total RNA isolated from whole mouse eyes at post-natal days 7-14 (P7-P14) showed a marked reduction in IRBP message in the light-deprived animals to 10-20% of levels in control animals. Reprobing of the blots for opsin and S-antigen message showed a significant decrease of about 80-90% in opsin message at 5.1 kb but no change in S-antigen message in the eyes of light-deprived mice. Light microscopic examination of the light-deprived mouse retinas showed no apparent abnormalities in morphological development and immunocytochemistry demonstrated normal distribution and levels of IRBP protein. Immunochemical quantitation of IRBP protein confirmed that there was no reduction in light-deprived as compared to normal mouse eyes. Similarly, when adult mice were light-deprived for 14 days, a marked reduction in IRBP message was also observed with no decrease in the amount of IRBP protein. Thus, light deprivation causes a large decrease in IRBP message in the mouse eye, but IRBP protein is not decreased. The dramatic effect of light deprivation on IRBP mRNA and some opsin mRNAs, but not on S-antigen message and the fact that IRBP protein levels are relatively unaffected, suggest a complex pathway of light regulation of photoreceptor function previously not encountered. This may involve regulatory controls at levels including gene transcription, mRNA stability or protein degradation that may make use of a feedback control mechanism involving light- or dark-dependent signal transduction.

Animals↗

Chromosomal localization of the human heme oxygenase genes: heme oxygenase-1 (HMOX1) maps to chromosome 22q12 and heme oxygenase-2 (HMOX2) maps to chromosome 16p13.3.

Heme oxygenase catalyzes the oxidation of heme to biliverdin, the precursor of the bile pigment bilirubin, and carbon monoxide, a putative neurotransmitter. We have employed polymerase chain reaction and fluorescence in situ hybridization to determine the chromosome localization of the genes coding for the two known heme oxygenase isozymes. Heme oxygenase-1 (HMOX1), the inducible form, was localized to human chromosome 22q12, while heme oxygenase-2 (HMOX2), the constitutive form, was localized to chromosome 16p13.3.

Animals↗

An early decrease in interphotoreceptor retinoid-binding protein gene expression in Abyssinian cats homozygous for hereditary rod-cone degeneration.

Levels of interphotoreceptor retinoid-binding protein (IRBP) protein and message in retinas of Abyssinian cats homozygous for progressive rod-cone degeneration were determined at early ages, well before the onset of clinical retinal degeneration. IRBP gene expression was assessed by immunochemical quantitation of IRBP protein, and by Northern blotting and slot-blotting of total RNA using a human IRBP cDNA probe. Morphology was assessed by electron microscopy and immunocytochemistry. Levels of both IRBP protein and message in affected Abyssinian cat retinas were significantly reduced below normal as early as 4 weeks of age at the earliest stage of retinal disorientation. Opsin mRNA was more abundant in affected Abyssinian cat retinas than in control retinas. This was at least 1 year before the onset of clinical symptoms. The reduction in IRBP gene expression to levels significantly below normal well before the onset of retinal degeneration in affected Abyssinian cat retinas indicates that this represents a primary defect or at least an early problem that could itself cause adverse effects.

Animals↗

Interleukin-2 treatment potentiates induction of oral tolerance in a murine model of autoimmunity.

The present study addresses the feasibility of potentiating oral tolerance by immunomanipulation, using the murine model of experimental autoimmune uveoretinitis (EAU) induced by immunization with the retinal antigen interphotoreceptor retinoid binding protein (IRBP). Three feedings of 0.2 mg IRBP every other day before immunization did not protect against EAU, whereas a similar regimen of five doses was protective. However, supplementing the nonprotective 3x regimen with as little as one injection of 1,000 U of human recombinant interleukin-2 (IL-2) resulted in disease suppression that was equal to that of the protective 5x regimen. The protective effect was maintained across a range of IL-2 doses and times of administration; none of the IL-2 regimens tested resulted in disease enhancement. Peyer's Patch cells of 3x-fed and IL-2-treated mice showed greatly increased production of TGF-beta, IL-4, and IL-10 compared with animals given the nonprotective 3x regimen and to animals given the protective 5x regimen. We propose that IL-2 treatment enhances protection from EAU at least in part by stimulating production of antiinflammatory cytokines by regulatory cells in Payer's Patches. Moreover, the observed lymphokine production patterns suggest that whereas protection induced by the 3x + IL-2 regimen is likely to involve antiinflammatory cytokines, protection induced by the 5x regimen might involve anergy or deletion of the uveitogenic T cells. These results could have practical implications for use of IL-2 as a safe and effective way of potentiating oral tolerance.

Administration, Oral↗

Identification of heat shock proteins binding to an immunodominant uveitopathogenic peptide of IRBP.

Intracellular binding proteins have been identified and isolated from B cells by their ability to bind to the synthetic peptide (1169-1191), the major immunodominant epitope of bovine interphotoreceptor retinoid-binding protein (IRBP) coupled to cyanogen bromide activated Sepharose 4B. After SDS-PAGE, two discrete protein bands of approximately 72 and 74 kDa, were found to be present in B cells of naive Lewis rats as well as in EBV transformed B cells from a human patient with ocular Behçet's disease. Enhanced expression of these peptide-binding proteins was achieved by incubating the cells with Lipopolysaccharide (LPS) from S. typhimurium. The approximately 72 and 74 kDa peptide-binding proteins reacted in western blot with monoclonal antibodies specific for both constitutively expressed and inducible 72/74 kDa hsp 70 proteins. The demonstration that these proteins bind to the immunodominant epitope of IRBP indicates that they may play a role in the processing and presentation of antigens by antigen-presenting cell (APC).

Animals↗

Interphotoreceptor retinoid-binding protein derived peptide can induce experimental autoimmune uveoretinitis in various rat strains.

Experimental autoimmune uveoretinitis (EAU) is an intraocular inflammatory disease model induced by retinal specific antigens such as S-antigen and interphotoreceptor retinoid-binding protein (IRBP). The present study was aimed at testing the uveitogenicity of IRBP and an IRBP-derived peptide in various strains of rats with different RT1 (major histocompatibility complex in rats) haplotypes. Immunization with IRBP induced distinct EAU in LEW (RT1l), WKAH (RT1k) W/M (RT1k), LEJ (RT1j), and BUF (RT1b) rats. IRBP also induced a low grade of EAU in SDJ (RT1u), but no disease was detected in TO rats, another strain of the RT1u haplotype. IRBP-derived peptide R16 (aa 1177-1191) induced severe EAU in LEW rats and moderate disease in the WKAH and W/M strains. Immunization with R16 also induced low levels of inflammation in eyes of 75% and 20% of LEJ and BUF rats, respectively, but this peptide did not cause any disease in SDJ and TO rats. Injection of Bordetella pertussis had minimum or no effect on the induction of EAU by peptide R16 in this study. These data thus indicate that peptide R16 can bind to various RT1 molecules in addition to RT1l. Further, our observations support the notion that certain epitopes of IRBP could be uveitogenic in humans with different HLA haplotypes.

Amino Acid Sequence↗

Expression of retina-specific genes by mouse retinoblastoma cells.

PURPOSE: Two cell lines derived from ocular tumors of a transgenic mouse expressing the SV40 large T antigen have been established as models of human retinoblastoma. One line, TM, originated from a metastasis, and the other, TE, originated from the primary tumor. The authors compared these two lines with the normal adult mouse eye by analysis of the expression of five photoreceptor cell-specific proteins: IRBP, opsin, rod- and cone-specific transducins, and S-antigen. The authors sought to determine which of these proteins was expressed qualitatively and to examine semi-quantitatively for changes in the levels of expression in the cell lines. METHOD: Western blot analysis was used to detect photoreceptor-specific intracellular or secreted proteins. Total RNA was prepared from cultured cells or from mouse adult whole eye. Specific messenger levels in total RNA were determined either by northern hybridization analysis or by a semi-quantitative polymerase chain reaction (PCR), coupled to complementary DNA (cDNA) substrates prepared from total RNA. RESULTS: IRBP was present in the retinoblastoma cell lines and secreted into the medium. Neither S-antigen nor opsin were detectable by immunoblotting. IRBP and cone transducin mRNA were present in both cell lines. In contrast, opsin, rod transducin, and S-Antigen mRNAs were not detectable by PCR. beta-actin was present in the mRNA populations of whole eye and retinoblastoma. SV40 large T antigen mRNA was present only in retinoblastoma cells. CONCLUSIONS: IRBP and cone transducin expression in mouse retinoblastoma cells is independent of signaling provided directly or indirectly through large T antigen or Rb105 regulatory cascades. The pattern of photoreceptor-specific gene expression is similar to that seen in human retinoblastoma cell lines. These murine-derived cell lines may be useful as a tool to study IRBP and cone transducin expression in vitro and to determine early retinoblast expression patterns in the mouse.

Animals↗

Heme oxygenase-1 is associated with the neurofibrillary pathology of Alzheimer's disease.

Heme oxygenase-1 is an important enzyme that degrades heme, a pro-oxidant, leading to the formation of antioxidant molecules. In this study we demonstrate by immunocytochemistry close association of heme oxygenase-1 with Alzheimer neurofibrillary pathology and with the neurofibrillary tangles found in progressive supranuclear palsy and subacute sclerosing panencephalitis. In Alzheimer's disease, using two different rabbit antisera against heme oxygenase-1 protein, we localized, using immunocytochemical methods, heme oxygenase-1 to neurofibrillary tangles, senile plaque neurites, granulovacuolar degeneration, and neuropil threads. Only light background staining was seen in young controls and sporadic lesion-related immunoreactivity in age-matched controls. The increase in heme oxygenase-1 protein in association with the neurofibrillary pathology of Alzheimer's disease and other diseases characterized by neurofibrillary tangles supports the notion that the generation of free radicals and oxidative stress plays a role in the pathogenesis of neurofibrillary pathology.

Aged↗

Study of a fatty acid binding site of interphotoreceptor retinoid-binding protein using fluorescent fatty acids.

Interphotoreceptor retinoid-binding protein (IRBP) is a 140-kDa glycolipoprotein which constitutes about 70% of the soluble protein of the retinal interphotoreceptor matrix. Much is known concerning its role in the transport of retinoids between photoreceptor cells and pigment epithelium but little is known about its interactions with lipids. Here we have examined the physicochemical characteristics of a fatty acid binding site of IRBP using a set of fluorescent fatty acid analogs with an anthracene moiety attached at different positions along the hydrocarbon chain. The results show that fatty acids are bound in a hydrophobic environment as indicated by a blue shift in fluorescence maxima and by a increase in quantum yield of the bound ligand. There is a single specific fatty acid binding site for each molecule of IRBP with an apparent Kd = 3.6 x 10(-7) M. There is a nonradiative energy transfer from tryptophan residues to bound ligand. The interactions of IRBP and bound fatty acid are sensitive to denaturation by increasing concentrations of urea as judged by changes in nonradiative energy transfer efficiency and the quantum yield of bound probe. Quantum yields of bound fatty acid analogs varied with position of the fluorophore along the hydrocarbon chain and had the lowest values for the fluorophore located at the midpoint. Probing of the microenvironment of bound fluorophore with a quencher indicated a highly structured binding site.

Animals↗

Induction of unresponsiveness in adult rats by immunodominant and nondominant peptides.

Intravenous (i.v.) administration of antigens in aqueous solution is an efficient procedure for inducing unresponsiveness in adult animals. Using this procedure, we have compared the unresponsiveness-inducing capacity of an immunodominant and a nondominant peptide derived from the sequence of a retinal antigen, interphotoreceptor retinoid-binding protein (IRBP). The immunodominant peptide, R16, is highly immunogenic in the Lewis rat, while the nondominant peptide, R4, is much less immunogenic and requires higher doses to induce immune response. Pretreatment of Lewis rats with peptides R4 or R16 effectively induced unresponsiveness, shown by the reduced lymphocyte responses following the challenge with the same peptide in adjuvant emulsion. A correlation was found between the doses of each peptide needed to induce immunity or unresponsiveness: both of these doses had to be higher for peptide R4 than for R16. Remarkably, the minimal unresponsiveness-inducing doses of both peptides were lower than those used for the challenge. Pretreatment with the immunodominant peptide, R16, readily inhibited the response to this peptide by lymphocytes from rats challenged with whole IRBP and excessive doses of R16 even affected the response of these rats against whole IRBP. In contrast, R4, which is not recognized by cells of rats challenged with whole IRBP, had no effect on the responses of these rats. The data thus underscore the relationship between immunodominance and unresponsiveness-inducing capacity of peptides and support the notion that the processes of unresponsiveness induction are related to those that produce immunity.

Amino Acid Sequence↗

Interphotoreceptor retinoid binding protein (IRBP) enhances rhodopsin regeneration in the experimentally detached retina.

Results obtained in a previous study showed that, compared with a normal eyecup preparation, the amount of rhodopsin regenerated and the rate at which it was resynthesized after bleaching were reduced by about 50% when the skate retina was detached from its pigment epithelium (RPE) and replaced immediately on the apical surface of the RPE (Sun and Ripps, 1992). In the present study, these observations have been extended to preparations in which the detachment procedure was performed under fluid in order to dilute the IRBP content of the interphotoreceptor matrix. The goal initially was to determine whether lowering the IRBP concentration of the subretinal space affected the regenerative process. Using fundus reflectometry, it was found that allowing fluid to enter the subretinal space exposed by the detachment procedure caused profound deficits in both the rate and amount of rhodopsin that regenerated after bleaching. Results obtained with SDS-PAGE and immunohistochemistry showed that the molecular weight of the IRBP extracted from the skate retina is similar to that of many other vertebrate species, and that antibodies prepared against mammalian IRBP react with epitopes on skate IRBP within the interphotoreceptor matrix. Accordingly, it was investigated whether it is possible to reverse the detachment-induced anomalies in rhodopsin kinetics by introducing ligand-free IRBP purified from bovine retina to the subretinal space. Again using fundus reflectometry, it was found that instilling 5 microM of a 130 microM IRBP solution between the neural retina and the RPE increased significantly the rate of regeneration, and more than doubled the amount of rhodopsin reformed in darkness.

Adaptation, Ocular↗

Interphotoreceptor retinoid-binding protein (IRBP). Molecular biology and physiological role in the visual cycle of rhodopsin.

The regeneration of visual pigment in rod photoreceptors of the vertebrate retina requires an exchange of retinoids between the neural retina and the retina pigment epithelium (RPE). It has been hypothesized that interphotoreceptor retinoid-binding protein (IRBP) functions as a two-way carrier of retinoid through the aqueous compartment (interphotoreceptor matrix) that separates the RPE and the photoreceptors. The first part of this review summarizes the cellular and molecular biology of IRBP. Work on the IRBP gene indicates that the protein contains a four-fold repeat structure that may be involved in binding multiple retinoid and fatty acid ligands. These repeats and other aspects of the gene structure indicate that the gene has had an active and complex evolutionary history. IRBP mRNA is detected only in retinal photoreceptors and in the pineal gland; expression is thus restricted to the two photosensitive tissues of vertebrate organisms. In the second part of this review, we consider the results obtained in experiments that have examined the activity of IRBP in the process of visual pigment regeneration. We also consider the results obtained on the bleaching and regeneration of rhodopsin in the acutely detached retina, as well as in experiments testing the ability of IRBP to protect its retinoid ligand from isomerization and oxidation. Taken together, the findings provide evidence that, in vivo, IRBP facilitates both the delivery of all-trans retinol to the RPE and the transfer of 11-cis retinal from the RPE to bleached rod photoreceptors, and thereby directly supports the regeneration of rhodopsin in the visual cycle.

Animals↗

Retinoblastoma. Interphotoreceptor retinoid binding protein mRNA analysis by polymerase chain reaction.

The authors used the polymerase chain reaction (PCR) to detect the mRNA for interphotoreceptor retinoid-binding protein (IRBP/RBP3), a photoreceptor specific protein, in small samples. They carried out these experiments to assess the feasibility of applying this technique to small tumor samples. Surgically excised tumor samples from four enucleations were analyzed. Messenger RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction was followed by phenol-chloroform purification, reverse-transcription and amplification. The primers used were 5' TGATGACTCTGTCAGTG 3' in exon 3 (sense) and 5' TTGTGCTGGAGCATCTC 3' in exon 4 (antisense). Controls included an IRBP cDNA pIRBP 20-700 and RNA from normal human retina. All samples amplified the same size band if detected. Three tumor samples contained IRBP mRNA as indicated by amplified 234 bp band. These three samples showed a high IRBP protein level by slot blot and RNA for IRBP detected by northern blot. Hematoxylin-eosin staining of one of these samples revealed a well differentiated tumor with numerous Flexner-Wintersteiner rosettes. In the fourth tumor, a poorly differentiated neoplasm, no IRBP mRNA was detected. The authors' results showed a qualitative variation of IRBP mRNA levels, usually related to the histologic differentiation, with IRBP expressed in well differentiated tumors as well as in the normal human retina in contrast to a poorly differentiated tumor with no detectable IRBP. The feasibility of the reverse transcriptase-PCR (RT-PCR) technique to detect IRBP mRNA in small retinoblastoma tumors, was demonstrated.

Base Sequence↗

Analysis of an in vitro-generated signal that induces systemic immune deviation similar to that elicited by antigen injected into the anterior chamber of the eye.

The selective deficit in delayed hypersensitivity that characterizes anterior chamber-associated immune deviation (ACAID) is the direct result of a blood borne, Ag-specific, cell-associated signal that is created after Ag is injected into the anterior chamber of the eye of normal mice. The cells that carry this signal via the blood to the spleen express the mature macrophage marker F4/80 and are similar to, or perhaps even arise from, F4/80+ dendritic cells found within the stroma of normal iris and ciliary body. We have recently reported that ACAID-inducing properties can be conferred upon conventional F4/80-bearing macrophages harvested from the normal peritoneal cavity by incubating these cells in vitro with the soluble protein Ag, BSA, in the presence of supernatants harvested from cultured iris and ciliary body cells. Using this in vitro induction system, we have examined the limiting conditions for conferring ACAID-inducing potential on peritoneal exudate cells. We have found that an ACAID-inducing signal can be created in vitro with several different soluble Ag, including the retinal autoantigen-interphotoreceptor retinol binding protein, and that active endocytosis and processing by peritoneal exudate cells is required because chloroquine prevents these cells from acquiring ACAID-inducing properties. In addition, we have determined that for supernatant-treated peritoneal macrophages to induce ACAID to soluble Ag the cells must be 1) alive, 2) injected i.v. or i.p. (but not s.c.), and 3) administered to recipients with an anatomically intact spleen. When these conditions are met, as few as 20 F4/80+ macrophages pulsed with Ag in the presence of iris and ciliary body supernatants are sufficient to induce ACAID. Macrophage hybridomas derived from "conventional" APC can acquire ACAID-inducing potential in vitro if exposed to iris and ciliary body supernatants, whereas macrophage hybridomas derived from "suppressor inducer" APC constitutively possess ACAID-induced potential. Peritoneal macrophages that were endowed with ACAID-inducing properties by in vitro exposure to supernatants were found to elicit splenic suppressor cells similar to those found in spleens of mice with ACAID. Moreover, the expression of experimental autoimmune uveitis in mice immunized with interphotoreceptor retinol binding protein was significantly suppressed if the animals were pretreated with peritoneal exudate cells pulsed with this Ag in the presence of iris and ciliary body supernatants.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Genetic control of susceptibility to experimental autoimmune uveoretinitis in the mouse model. Concomitant regulation by MHC and non-MHC genes.

Experimental autoimmune uveoretinitis (EAU) in animals is a T cell-mediated autoimmune response directed against cells of the neural retina, in particular the photoreceptors. EAU can be induced in susceptible strains of mice by immunization with purified retinal Ag, and serves as a model for human uveitis. Because strong HLA associations have been noted in a number of human uveitic diseases, we investigated the role of MHC vs non-MHC genes in the control of susceptibility to ocular autoimmunity using the mouse EAU model. Selected strains representing most of the known independent H-2 haplotypes, as well as several H-2-recombinant and congenic strains, were immunized with interphotoreceptor retinoid-binding protein. Ocular pathology was induced in strains of the H-2k haplotype and their I-A-matched congenics, as well as in strains of the H-2r, H-2b, and H-2d haplotypes. In a series of experiments utilizing intra-H-2 recombinant strains, MHC control of susceptibility was tentatively mapped to the I-A subregion of the H-2k. Expression of the I-Ek gene product was not required for susceptibility to EAU, and in fact appeared to have an ameliorating effect on disease. Incidence and severity of disease obtained in strains sharing the same H-2 on a different background, or sharing the same background in the context of a different H-2, indicated that non-MHC genes contribute significantly to the regulation of EAU. Disease expression of susceptible H-2 haplotypes was highest in strains with B10 background (permissive) and ranged from intermediate to absent in strains with other (nonpermissive) backgrounds. The data suggest that although the ability to develop ocular pathology is dependent on the I-A subregion of the H-2, the final expression of disease in susceptible haplotypes is largely determined by background, non-MHC genes.

Animals↗

Suppression of experimental autoimmune uveitis in mice by induction of anterior chamber-associated immune deviation with interphotoreceptor retinoid-binding protein.

Immunization with bovine interphotoreceptor retinoid-binding protein induces autoimmune uveitis in B10.A mice. We have examined whether this soluble retina-specific Ag can induce anterior chamber-associated immune deviation when injected into the anterior chamber (AC) of the eye, and whether this deviant immune response has any effect on uveitis is susceptible mice. The results of these experiments indicate that interphotoreceptor retinoid-binding protein (IRBP) injected intracamerally altered the subsequent immune response of B10.A mice such that a) they were not able to develop IRBP-specific delayed hypersensitivity, nor (b) were they able to express significant autoimmune uveitis following a uveitogenic regimen. Moreover, spleen cells from mice that received IRBP in the AC suppressed uveitis when adoptively transferred into naive recipients. The splenic suppressor cells were able to prevent autoimmune uveitis in recipient mice when administered after the uveitogenic regimen. Most important, IRBP-specific splenic cells from mice treated with IRBP in the AC when injected into mice with established uveitis caused an abrupt cessation of the intraocular inflammation. The ability of intracamerally-injected soluble Ag to induce suppressor T cells that act on the efferent limb of the immune response suggests that the anterior-chamber-associated immune deviation phenomenon may have physiologic relevance in terms of preservation of the integrity of ocular tissue and renders this approach particularly suitable for treating already established experimental autoimmune diseases of this type. These results are discussed in terms of other methods that have been devised experimentally to suppress and prevent autoimmune uveitis and encephalomyelitis.

Animals↗

Cellular immune responses to retinal antigens in retinitis pigmentosa.

Patients with retinitis pigmentosa and a group of controls were tested for their cellular immune response toward two retinal proteins, S-antigen and interphotoreceptor retinoid-binding protein (IRBP), as well as their reaction against two synthetic peptides ("M" and "N") derived from the sequence of S-antigen and peptide "R14", derived from IRBP. Positive responses to the retinal antigens were found in larger proportions and with higher levels in the patient group than in the controls. The difference between the two groups was statistically significant in their response to S-antigen, but the patients reacted better than the controls against the other antigens as well. Of particular interest was the finding that several patients responded to both retinal proteins and/or to their peptides. These patients suffered from severe retinal changes and the data are thus interpreted as suggesting that the responses to the retinal antigens are secondary to these changes and to nonphysiological release of retinal antigens.

Adult↗