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Long-term functional consequences of quinolinic acid striatal lesions and their alteration following an addition of a globus pallidus lesion assessed using pharmacological magnetic resonance imaging.

The present study tested the hypothesis that lesion to the rat globus pallidus (GP) can "normalize" the functioning of the basal ganglia-thalamocortical circuits in striatal-lesioned rats by assessing the functional connectivity of these regions using functional magnetic resonance imaging (fMRI). Changes in brain activation following systemic administration of amphetamine were assessed in (1) rats sustaining a unilateral lesion to the striatum, (2) rats sustaining a combined striatal and pallidal lesion, and (3) control rats. Striatal-lesioned rats showed attenuated cortical activation following amphetamine administration and lower correlations between the responses to amphetamine in different brain regions compared to control rats. Although the addition of an excitotoxic GP lesion failed to prevent striatal lesion-induced attenuation of cortical activation by amphetamine, it was effective in "normalizing" the correlations between the responses to amphetamine in the different areas. These results suggest that, although the GP lesion is ineffective in correcting the global changes in activity caused by the striatal lesion, it may have the capacity to partially restore alterations in functional connectivity resulting from the striatal lesion. These results are further discussed in view of our previous demonstration that lesions to the GP can reverse several behavioral deficits produced by a striatal lesion.

Amphetamine↗

Molecular cloning and characterization of GPA1, a G protein alpha subunit gene from Arabidopsis thaliana.

We have isolated a gene coding for a G protein alpha subunit from the flowering plant Arabidopsis thaliana. This gene, named GPA1, was isolated by using a DNA probe generated by polymerase chain reaction based on protein sequences from mammalian and yeast G protein alpha subunits. The sequences of genomic and cDNA clones indicate that GPA1 has 14 exons, and the deduced amino acid sequence shows that the GPA1 gene product (GP alpha 1) has 383 amino acid residues (44,582 Da). The GP alpha 1 protein exhibits similarity to all known G protein alpha subunits--36% of its amino acids are identical and 73% are similar (identical and conservative changes) to mammalian inhibitory guanine nucleotide-binding regulatory factor alpha subunits and transducins. Furthermore, the GP alpha 1 protein has all of the consensus regions for a GTP-binding protein. The GPA1-encoded mRNA of 1.55 kilobases is most abundant in vegetative plant tissues, as determined by RNA blot analysis. Restriction fragment length polymorphism mapping experiments show that GPA1 is approximately 1.2 centimorgans from the visible marker er on chromosome 2.

Amino Acid Sequence↗

Structure of the multidrug resistance P-glycoprotein to 2.5 nm resolution determined by electron microscopy and image analysis.

P-glycoprotein (P-gp) is a member of the ATP binding cassette superfamily of active transporters and can confer multidrug resistance on cells and tumors by pumping chemotherapeutic drugs from the cytoplasm. P-gp was purified from CHrB30 cells and retained the ability to bind substrates and hydrolyze ATP. Labeling of P-gp with lectin-gold particles suggested it is monomeric. An initial structure of purified P-gp was determined to 2.5 nm resolution by electron microscopy and single particle image analysis of both detergent-solubilized and lipid-reconstituted protein. The structure was further refined by three dimensional reconstructions from single particle images and by Fourier projection maps of small two-dimensional crystalline arrays (unit cell parameters: a, 14.2 nm; b, 18.5 nm; and gamma, 91.6 degrees ). When viewed from above the membrane plane the protein is toroidal, with 6-fold symmetry and a diameter of about 10 nm. There is a large central pore of about 5 nm in diameter, which is closed at the inner (cytoplasmic) face of the membrane, forming an aqueous chamber within the membrane. An opening from this chamber to the lipid phase is present. The projection of the protein perpendicular to the membrane is roughly rectangular with a maximum depth of 8 nm and two 3-nm lobes exposed at the cytoplasmic face of the membrane, likely to correspond to the nucleotide binding domains. This study provides the first experimental insight into the three-dimensional architecture of any ATP binding cassette transporter.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Purification and characterization of GP-55, a protein associated with actin-based cytoplasmic gels derived from brain tissue.

Incubation of rat brain cytoplasmic extracts results in the formation of three-dimensional gels that can be collapsed by low-speed centrifugation. Electrophoresis in polyacrylamide gels indicate that these cytoplasmic gels are composed of actin and several associated proteins. Among the latter we have identified a component with an apparent molecular mass of 55,000 daltons. The results of two-dimensional electrophoresis, peptide mapping, and in vivo labeling experiments with [35S]methionine, indicate that the 55-kDa protein is composed of two different gene products we have named alpha and beta; a third polypeptide, named beta', probably derives from the beta polypeptide as a result of some posttranslational modification(s). These three polypeptides, which have the same molecular weight but different isoelectric points, are present in a rather pure preparation of the 55-kDa protein, obtained from cytoplasmic gels by ion-exchange chromatography. In vitro, purified 55-kDa protein interacts in a specific manner with F-actin, as shown by viscosimetry and electron microscopy, leading to the formation of a complex network of cross-linked microfilament bundles. The results of immunofluorescence experiments indicate that the 55-kDa protein is located intracellularly in structures belonging to the Golgi apparatus, and that it is not only present in every type of rat cell tested but also in primary cultures of chick embryo neurons. Based on its intracellular location, we have named the 55-kDa protein as Golgi Protein-55 (GP-55).

Actins↗

HIV neutralizing IgA in exposed seronegative subjects recognise an epitope within the gp41 coiled-coil pocket.

Human immunodeficiency virus (HIV)-specific IgA can be detected in cervical secretions, saliva, and sera of HIV-infected and HIV-uninfected individuals with a known exposure to the virus. IgA from HIV-uninfected exposed seronegative individuals (ESN) neutralize in vitro primary strains of HIV-1. We analyzed the epitopes of HIV recognized by serum HIV-specific IgA of ESN individuals to identify the antigenic correlates of HIV neutralization in exposed-uninfected subjects, and to verify whether different epitopes would be recognized by HIV-specific IgA of ESN and of HIV-infected patients. Results confirmed that HIV-neutralizing IgA are detected in sera of ESN and showed that neutralization of primary HIV strains is mediated by the recognition of different epitopes in HIV-infected patients and ESN. Thus, whereas IgA of HIV+ individuals recognize epitopes expressed both within gp120 and gp41, IgA of ESN exclusively bind to gp41-expressed epitopes. Epitope mapping revealed that the epitope recognized by serum IgA of ESN on gp41 is restricted to aa 581-584 (LQAR) and corresponds to coiled coil pocket in the alpha helic region. In contrast, the epitope seen by IgA of HIV-infected patients on gp41 is identified by two regions; the first is contained within the cystein loop (aa 589-618), the second correspond to C terminal region in the extra membrane region of gp 41 (aa 642-673). Thus, we have identified and characterized the epitopes that mediate neutralization of HIV in individuals in whom infection does not occur despite multiple exposures to the virus. These results have important implications for the development of a new therapy against HIV infection.

Acquired Immunodeficiency Syndrome↗

The identification, characterization, and distribution of guinea pig CCR4 and epitope mapping of a blocking antibody.

Th2 lymphocytes play a central role in the control and maintenance of allergic inflammation. The chemokine receptor CCR4 is preferentially expressed on the surface of Th2 lymphocytes polarised in vitro. However, CCR4 is found on the surface of a significant proportion of circulating memory T lymphocytes, some of which are capable of producing the Th1-associated cytokine interferon gamma. To investigate the function of CCR4 on guinea pig (gp) T lymphocytes, we identified the open-reading frame of gpCCR4, which encodes a 361-amino acid protein with 88 and 81% amino acid identity to human and murine CCR4 sequences, respectively. Cells transfected with gpCCR4 migrated toward the human and murine orthologues of the CCR4 ligands, macrophage-derived chemokine and thymus and activation-regulated chemokine. Surface expression of CCR4, using an anti-human CCR4 monoclonal antibody, 10E4, was detected on approximately 12% of guinea pig peripheral blood T helper cells, and CCR4(+) guinea pig thymocytes were detected in low numbers. However, CCR4(+) T helper cells constituted approximately 9% of the T lymphocyte population within the normal guinea pig lung and 52% of the guinea pig bronchoalveolar lavage fluid, which is consistent with a role for CCR4 in T lymphocyte development and trafficking through normal tissues. Subsequent analysis of chimeric chemokine receptors indicated that 10E4, a functional inhibitor of gpCCR4 responses, recognized the amino terminus of CCR4.

Amino Acid Sequence↗

The structural gene module in Streptococcus thermophilus bacteriophage phi Sfi11 shows a hierarchy of relatedness to Siphoviridae from a wide range of bacterial hosts.

The structural gene cluster and the lysis module from lytic group II Streptococcus thermophilus bacteriophage phi Sfi11 was compared to the corresponding region from other Siphoviridae. The analysis revealed a hierarchy of relatedness. phi Sfi11 differed from the temperate S. thermophilus bacteriophage phi O1205 by about 10% at the nucleotide level. The majority of the changes were point mutations, mainly at the third base position. Only a single gene (orf 695) differed substantially between the two phages. Over the putative minor tail and lysis genes, phi Sfi11 and the lytic group 1 S. thermophilus phi Sfi19 shared regions with variable degrees of similarity. Orf 1291 from phi Sfi19 was replaced by four genes in phi Sfi11, two of which (orf 1000 and orf 695) showed a complicated pattern of similarity and nonsimilarity compared with phi Sfi19. The predicted orf 695 gp resembles the receptor-recognizing protein of T-even coliphages in its organization, but not its sequence. No sequence similarity was detected between phi Sfi11 and phi Sfi19 in the region covering the major head and tail genes. Comparison of the structural gene map of phi Sfi11 with that of Siphoviridae from gram-positive and -negative bacterial hosts revealed a common genomic organization. Sequence similarity was only found between phi Sfi11 and Siphoviridae from gram-positive hosts and correlated with the evolutionary distance between the bacterial hosts. Our data are compatible with the hypothesis that the structural gene operon from Siphoviridae of the low G + C group of gram-positive bacteria is derived from a common ancestor.

Biological Evolution↗

Effect of l-dopa or bromocriptine on feeding and motor behavior of rats with lesions in the globus pallidus.

Rats were lesioned bilaterally in the globus pallidus (GP) with anodal current or 6-OHDA, and were observed in various motor tests 10 min daily for 3 weeks. Body weight, home cage water and food intakes were recorded daily under two different food accessibility conditions. The lesions produced adipsia, aphagia, loss of body weight and motor impairments which could not be reversed by either l-dopa or bromocriptine. Animals could be made to recover, however, by making food easily accessible and palatable. The results do not support a "metabolic" role for the GP but support the idea that aphagia, adipsia and mortality is due to motoric impairments produced by the lesion.

Animals↗

Visualization of activation-dependent epitopes on glycoprotein IIb-IIIa complexes of platelets stimulated by thrombin: immunogold staining of ultrathin sections.

An immunoglobulin M monoclonal antibody (IgM MAb; AP-6) recognizing the sequence 211-221 of glycoprotein (GP) IIIa enabled a study of the distribution of this epitope on unstimulated or thrombin-activated platelets. Flow cytometry was used to evaluate the expression of this epitope on platelets and immunogold staining on ultrathin sections to analyze its distribution within the cell. There was little or no binding of AP-6 to unstimulated platelets, but immunogold staining showed labeling associated with the membranes of alpha-granules. The binding of AP-6 to thrombin-stimulated platelets was compared with that of anti-RIBS MAbs and antifibrinogen polyclonal antibodies. An increased expression of the AP6 epitope was observed on membranes of the surface-connected canalicular system and at the periphery of the cell as early as 10 to 15 seconds after platelet activation by thrombin. At the same time, binding of anti-RIBS MAbs confirmed that at least part of the endogenous fibrinogen had left the alpha-granules and was bound to platelet membranes. Staining with polyclonal antifibrinogen antibody also revealed fibrinogen in vesicles resulting from granule fusion. Rapidly, the pool of internal membranes with bound fibrinogen became exposed to the outside of the platelet, a process involving the unfolding of membranes and pseudopod formation. Our results provide evidence that activation of GP IIb-IIIa and binding of fibrinogen to platelet membranes can occur before their expression at the platelet surface. They also suggest the presence of an alpha-granule pool of GP IIb-IIIa linked to fibrinogen in unstimulated platelets.

Antigens, Human Platelet↗

Disturbances of neophobia and taste-aversion learning after bilateral kainate microlesions in the rat pallidum.

These experiments aimed to elucidate feeding-associated behavioral roles of globus pallidus (GP) neurons in gustatory functions: The effects of bilateral microiontophoretic kainate (KA) lesions of the ventromedial pallidal (vmGP) region on neophobia and conditioned taste aversion (CTA) were studied. Lesioned rats displayed strong and persistent neophobia to a mild citric acid solution. Neuron-specific damage to the vmGP also prevented rats from proper acquisition of CTA. Rats that previously showed normal neophobia and successfully learned CTA demonstrated difficulties in CTA retention after GP lesions. KA-lesioned rats, in addition, exhibited deficits in orientation reactions but did not have aphagia, adipsia, or motor disturbances seen after larger pallidal lesions. These findings suggest that neurons of the GP are significant in acquisition, memory storage, and retrieval mechanisms of feeding-associated taste information.

Animals↗

Biological and molecular analysis of LCV, an endogenous retrovirus with defective env gene.

Retrovirus infectivity is the result of a cooperative interaction of three structural genes, gag, pol, and env. Since the L-cell endogenous retrovirus (LCV) lacks the env gene translation product, our aim was to study the biological and molecular basis of its non-infectiousness. Fusion experiments between LCV and homologous or heterologous cells demonstrated that virus production could be obtained only after LCV artificial penetration in murine cells and that the new progeny was still noninfectious. Northern blot analysis and heteroduplex mapping of the genomic RNA revealed a 0.99 kb deletion including the 3' region of the pol reading frame, the whole xenotropic and part of the ecotropic domain of the env gene. The results suggest that the observed deletion is responsible for the absence of the gp 70 and the gp 15 E molecules in the virion and seems therefore to be the molecular basis for the non-infectiousness of this retrovirus.

Blotting, Northern↗

Mode of replication of lymphocytic choriomeningitis virus in persistently infected cultivated mouse L cells.

During persistent infection of mouse L cells with strain Armstrong lymphocytic choriomeningitis virus, the latter undergoes characteristic changes, including loss of mouse pathogenicity and failure to form plaques on cultivated cells. We call this virus L(Arm) and have analyzed transcription and translation of its S-RNA, which codes for the viral nucleoprotein (NP) and the glycoprotein precursor (GP-C). In L(Arm) virus-infected L cells, S-RNA and genomic-sized viral complementary S-RNA (VC-S-RNA) were detected and, in addition, considerable quantities of shortened molecules of either species. The cells' content of NP was high, but they contained little GP-C; instead, a viral glycoprotein with MW 65,000 was present. We propose a hypothesis in which it is assumed that along the VC-S-RNA there is more than one recognition site for the viral RNA-dependent RNA polymerase, which leads to the generation of truncated forms of S-RNA, VC-S-RNA, and mRNA for GP-C; this, in turn, results in relative overproduction of NP and relative underproduction of GP-C as well as the emergence of a new form of viral glycoprotein.

Animals↗

Excitatory cortical inputs to pallidal neurons via the subthalamic nucleus in the monkey.

How the motor-related cortical areas modulate the activity of the output nuclei of the basal ganglia is an important issue for understanding the mechanisms of motor control by the basal ganglia. In the present study, by using awake monkeys, the polysynaptic effects of electrical stimulation in the forelimb regions of the primary motor and primary somatosensory cortices on the activity of globus pallidus (GP) neurons, especially mediated by the subthalamic nucleus (STN), have been characterized. Cortical stimulation induced an early, short-latency excitation followed by an inhibition and a late excitation in neurons of both the external and internal segments of the GP. It also induced an early, short-latency excitation followed by a late excitation and an inhibition in STN neurons. The early excitation in STN neurons preceded that in GP neurons. Blockade of STN neuronal activity by muscimol (GABA(A) receptor agonist) injection resulted in abolishment of both the early and late excitations evoked in GP neurons by cortical stimulation. At the same time, the spontaneous discharge rate of GP neurons decreased, pauses between the groups of spikes of GP neurons became prominent, and the firing pattern became regular. Injection of (+/-)-3-(2-carboxypiperazin-4-yl)-propyl-1-phosphonic acid (CPP) [N-methyl-D-aspartate (NMDA) receptor antagonist], but not 1,2,3, 4-tetrahydro-6-nitro-2,3-dioxo-benzo[f]quinoxaline-7-sulfonamide disodium [NBQX (non-NMDA receptor antagonist)], into the STN attenuated the early and late excitations in GP neurons, suggesting that cortico-subthalamic transmission is mediated mainly by NMDA receptors. Interference with the pallido-subthalamic transmission by bicuculline (GABA(A) receptor antagonist) injection into the STN made the inhibition distinct without affecting the early excitation. The present results indicate that the cortico-subthalamo-pallidal pathway conveys powerful excitatory effects from the motor-related cortical areas to the GP with shorter conduction time than the effects conveyed through the striatum.

Animals↗

Regional (14C) 2-deoxyglucose uptake during vibrissae movements evoked by rat motor cortex stimulation.

Repetitive left mystacial vibrissae movements were produced by electrical stimulation of right motor cortex (MI) were a bipolar electrode in the alert, unanesthetized rat. Regional increases of (14C) 2-deoxyglucose (2DG) uptake were mapped autoradiographically during these left vibrissae movements. Uptake of 2DG increased in a 2-4-mm-diameter area about the stimulating electrode in right MI and in a smaller region in left MI cortex. Columnar increases of 2DG uptake occurred bilaterally in somatosensory cortex in the face region of somatosensory cortex (SI). Bilateral increases of 2DG uptake occurred subcortically in dorsolateral caudate-putamen (CP) and subthalamic nucleus. Primary right-sided increases of 2DG uptake occurred in other basal ganglia structures including dorsal globus pallidus (GP), posterior, entopeduncular nucleus (EPN), ventrolateral substantia nigra pars reticulata (SNr), and anterolateral substantia nigra pars compacta (SNc). Uptake of 2DG increased on the right side of the following thalamic regions: much of the ventrolateral (VL) nucleus, particularly dorsally; the anterodorsal reticular nucleus; dorsolateral posteromedial (POm) nucleus; the ventromedial nucleus; and dorsolateral parafasicular nucleus. The anterior and ventral posterior portions of VL were not activated. Caudal to thalamus right-sided 2DG uptake increased in the medial, ventral, and lateral pontine nuclei, deep layers of superior colliculus, lateral deep mesencephalic nucleus (DMN), and nucleus cuneiformis (NCU). UPtake of 2DG increased in right rostral parvocellular and red nucleus in a few animals. Discrete portions of the right internal capsule and right medial pyramidal tract increased 2DG uptake during MI stimulation. Uptake of 2DG increased on the left side of the brain during right MI stimulation in the left lateral nucleus (NL) of cerebellum and in several discrete regions of left cerebellar hemisphere granule cells including anterior paravermis, lobulus simplex, crus II, and the paramedian lobule. Uptake of 2DG increased in left nucleus of the spinal tract of the trigeminal nerve (ntV) ventrally in subnuclei interpolaris and oralis. Left lateral portions of the facial nucleus were activated in a few animals. The lateral portions of the facial nucleus are known to project to vibrissae musculature. All of the above structures may be involved in the motor-sensory processing responsible for vibrissae movements. Regions not previously suggested to play a major role in vibrissae movements include DMN and NCU. Though NCU has been called the "locomotor center" it may play a role in facial movements as well. Polysynaptic activation of GP, EPN, NL, and cerebellar hemisphere occurred since no connections between MI and these regions exist. A pathway from ntV to POm to MI and SI is suggested to provide proprioceptive input to motor-sensory cortex from the moving vibrissae since neither the principal trigeminal sensory nucleus nor the ventrobasal nucleus of the thalamus increased 2DG uptake during MI stimulation.

Animals↗

Gradients of atrial refractoriness and inducibility of atrial fibrillation due to stimulation of ganglionated plexi.

INTRODUCTION: The mechanism(s) whereby atrial ectopy induces atrial fibrillation (AF) is still poorly understood. METHODS AND RESULTS: In 12 dogs, we determined the refractory period (RP) along the right atrium (RA) and right superior pulmonary vein (RSPV), and AF inducibility with and without concurrent stimulation of the anterior right ganglionated plexi (ARGP) at the base of the RSPV. Multielectrode catheters were attached to the RSPV and RA with the distal electrodes close to ARGP. The RP and window of vulnerability (WOV), i.e., the longest S1-S2 minus the shortest S1-S2 at which AF was induced, were measured before and during incremental levels of ARGP stimulation. Mapping of the onset of AF was performed using the EnSite mapping system (St. Jude Medical, St. Paul, MN, USA) positioned in the RA. A single premature depolarization (PD) from the RSPV that did not induce AF without ARGP stimulation could do so with ARGP stimulation. The onset of AF consistently arose at the myocardium subtending the ARGP. With GP stimulation, the average WOV at the RSPV-atrial junction was significantly wider than at the RA appendage (65 +/- 27 vs. 8 +/- 17 msec, P < 0.05) or further along the RSPV sleeve (48 +/- 39 vs. 10 +/- 20 msec, P < 0.05). Even without GP stimulation, high intensity (10-20 mA) premature stimuli delivered at the RA appendage induced AF, originating from atrial tissue subtending the ARGP, presumably due to axonal conduction that activated the ARGP. CONCLUSION: GP stimulation, subthreshold for atrial excitation, converts isolated PDs into AF-inducing PDs, suggesting that autonomic tone may play a critical role in the initiation of paroxysmal AF.

Animals↗

The GARP gene encodes a new member of the family of leucine-rich repeat-containing proteins.

We have characterized a new human gene, named GARP, localized in the 11q14 chromosomal region. GARP comprises two coding exons, is expressed as two major transcripts of 4.4 and 2.8 kilobases, respectively, and encodes a putative transmembrane protein of 662 amino acids, the extracellular portion of which is almost entirely made of leucine-rich repeats. The molecular weight of the protein immunoprecipitated from transfected cells is 80,000. The GARP protein has structural similarities with the human GP Ib alpha and GP V platelet proteins, and with the Chaoptin, Toll, and Connectin adhesion molecules of Drosophila.

3T3 Cells↗

Mapping of the structural gene for the herpes simplex virus type 2 counterpart of herpes simplex virus type 1 glycoprotein C and identification of a type 2 mutant which does not express this glycoprotein.

The gene encoding glycoprotein F (gF) of herpes simplex virus type 2 (HSV-2) was mapped to the region of the viral genome from 0.62 to 0.64 map units. This region is colinear with, and partially homologous to, the region of the HSV-1 genome previously shown to encode gC. Mapping of the gF gene was done by insertion of HSV-2 DNA fragments into the thymidine kinase gene of an HSV-1 virus and screening of the resultant recombinant viruses for the expression of gF. In this way, DNA sequences necessary for the expression of gF in infected cells were also delimited. Because several plaque morphology mutants (syncytial mutants) of HSV-1 have previously been shown to be gC-, a syncytial mutant of HSV-2 (GP) was tested for the expression of gF. It was found to be gF-, indicating that gF is not essential for replication of HSV-2 in cell culture, just as gC is not essential for replication of HSV-1. This result also suggests that the gF- and gC- phenotypes are related in the same, as yet undefined, way to the expression of a syncytial marker. A proposal to change the name of HSV-2 gF to gC (gC-2) is discussed.

Animals↗

Isolation of the human platelet glycoprotein IIb gene and characterization of the 5' flanking region.

Platelet membrane glycoprotein (GP) IIbIIIa complex functions as a receptor for fibrinogen, von Willebrand factor and fibronectin, and mediates adhesive reactions of platelets. The gene for the GPIIb subunit is only active in megakaryocytic cell type. We have isolated this gene from a genomic library. The GPIIb gene was characterized by restriction mapping and sequencing of the 5' and 3' regions containing the first and the last exons. The transcription start site and the polyadenylation signal were identified. From these data we deduced that the gene spans a region of 22 kb and that the mRNA contains a leader sequence of 32 nucleotides. At the 3' end the last exon encodes the 19 amino acids corresponding to the cytoplasmic domain of the GPIIb light chain. Upstream the transcription start site, two sequences are homologous to consensus binding sites of the nuclear factors SP1 and CP2. Two inverted repeats were also identified in this region.

Amino Acid Sequence↗