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[Cytospectrophotometric analysis of various color reactions for acid and basis proteins in nerve tissue cells].

Polyvinyl formal films soaked with various concentrations of proteins as well as Carnoy-fixed paraffin sections of rat brain were stained with various colour reactions for acidic and basic proteins. Sufficient specificity, reproductivity, sensitivity and applicability for cytospectrophotometric determinations have been shown for the staining of acidic proteins with Toluidine blue 0 (pH 9.0) or with Fast green FCF (pH 2.6), and for the staining of basic proteins with Alcian blue (pH 10.0), or with Fast green FCF (pH 8.2). Importance of cytophotometric analysis of individual protein fractions is outlined for the functional cytochemistry of the nervous system.

Albumins

Studies on the development of the chick optic tectum. IV. An autoradiographic study of the development of retino-tectal connections.

The normal pattern of innervation of the optic tectum has been studied autoradiographically in a series of chick embryos which were injected intraocularly with [3-H]proline at intervals between the 6th and 21st days of incubation. From the distribution of the radioactively labeled proteins transported in the rapid phase of axonal flow, it is evident that retinal fibers first enter the tectum late on the 6th day of incubation and then spread across its surface from its rostrolateral aspect to its caudo-dorso-medial pole during the ensuing 6 days. At the 9th day, when the fibers have grown across the surface of the rostral half of the tectum, there is no indication that the terminal portions of the axons have left the stratum opticum to enter the outer layers of the stratum grieseum et fibrosum superficiale. The first suggestion of such an invasion of the stratum grieseum et fibrosum superficiale is found at day 10, when labeled fibers can be seen in this stratum, over a restricted, oval, area near the center of the tectum. Over the course of the next 2 days the region of the stratum grieseum et fibrosum superficiale occupied by retinal fibers expands, more-or-less concentrically, until by day 14 some labeled fibers are seen in the outer part of the stratum, throughout the tectum. Concurrent with the ingrowth of optic nerve fibers the final cytoarchitectonic differentiation of the outer layers of the tectum occurs so that by day 18 the autoradiographs show a pattern of labeling of layers a-f of the stratum griseum et fibrosum superficiale similar to that seen in mature, post-hatched chicks. Since the region of the tectum which is first innervated by retinal fibers corresponds to the projection field of the region around the upper end of the choroid fissure where the first ganglion cells are generated, it would appear that the axons of the first-formed ganglion cells grow over the rostral surface of the tectum before establishing the first retino-tectal synapses near the central portion of the tectum. Subsequently, as the ganglion cell population grows concentrically from around the area centralis, there is a parallel expansion of the region in which retino-tectal synapses are being formed in the tectum.

Animals

Cellular immune response to peripheral nerve basic protein in idiopathic facial paralysis (Bell's palsy).

Lymphocytes from patients with Bell's palsy were shown to undergo significant stimulation when cultured in vitro in the presence of a purely neuritogenic basic protein (P1L) isolated from human peripheral nerve myelin. No sensitization was observed to other neural antigens, namely, another periperal nerve myelin basic protein (P2) and the central nerve myelin basic encephalitogenic protein (BE). A similar pattern of response was also demonstrated in patients with Guillain-Barré syndrome (GBS). Lymphocytes from patients suffering from other neuropathies or other diseases involving the face showed no response to any of these antigens. The specific in vitro response to P1L protein in Bell's palsy may suggest that an in vivo sensitization of lymphocytes to such self protein occurs in this condition, and that cell-mediated, probably post-infectious, autoimmune mechanisms may be an important factor in the pathogenesis of the paralysis. Thus, Bell's palsy is immunologically similar to GBS, or may even represent a mononeuritic variant of GBS. In view of these findings the administration of steroids to patients with Bell's palsy seems logical on the basis of their immunosuppressive action.

Adolescent

Neuritogenic and encephalitogenic properties of the peripheral nerve basic proteins.

Two basic proteins, P1 of molecular weight 14,200 and P2 of molecular weight 12,300, purified from bovine peripheral nerve, were assayed for biological activity. The P1 protein is an exclusively neuritogenic agent, capable of producing clinical signs of experimental allergic neuritis (EAN) and histological abnormalities in the peripheral nervous system (PNS) of guinea pigs and rabbits, without any changes in their central nervous system (CNS). P2 protein, like the CNS basic encephalitogenic protein (BE), has combined neuritogenic and encephalitogenic activities, therefore it induces in these animals neurological signs and pathological evidence of EAN, as well as histological characteristics of experimental allergic encephalomyelitis (EAE).

Animals

In Vivo Screen of Parkinson's Disease GWAS Risk Genes Identifies ARIH2 as a Novel Regulator of α-Synuclein Toxicity in Dopaminergic Neurons.

Parkinson's disease (PD) is a late-onset neurodegenerative disease characterized by preferential degeneration of midbrain dopaminergic neurons and α-synuclein-containing Lewy bodies that are found in both familial and sporadic forms. Genome-wide association studies (GWAS) have identified many loci associated with risk of sporadic PD, but their role in PD pathogenesis remains largely unknown. We screened a subset of GWAS genes in Caenorhabditis elegans (C. elegans) as potential modulators of α-synuclein-mediated degeneration of dopaminergic neurons. Loss of ari-2 (human ARIH2), an E3 ubiquitin ligase, was identified as the strongest suppressor of dopaminergic neurodegeneration in C. elegans. Unbiased proteomics analysis in human-induced pluripotent stem cell-derived dopaminergic neurons revealed novel substrates of ARIH2 including TPPP3, a regulator of microtubule dynamics. Importantly, TPPP3 was required for ARIH2's effects on α-synuclein-induced dopaminergic neurodegeneration. Our studies reveal an unexpected genetic interaction between two PD-linked genes, α-synuclein and ARIH2, and suggest that inhibition of ARIH2's enzymatic activity may serve as a potential therapeutic approach in PD.

Animals

Distribution of S-100 and 14-3-2 proteins on neuronal cell membranes.

The distribution of nervous tissue specific S-100 and 14.3.2 proteins was studied over the total surface of isolated, intact nerve cells by immunofluorescence microscopy. The distribution of the antigens was different on the front and back of the cells, indicating complicated S-100 and 14.3.2 patterns. A partly overlapping in membrane pattern of S-100 and 14.3.2 proteins was observed, although S-100 protein dominated with respect to membrane areas covered. At higher resolution the specific fluorescence appeared as conglomerates and islets. The neuronal membrane patterns of S-100 and 14.3.2 antigens, including synapses suggest that nerve cell membranes are functionally differentiated, thus greatly increasing the capacity for identification of incoming stimuli.

Animals

Ca2+ and cyclic AMP regulate phosphorylation of same two membrane-associated proteins specific to nerve tissue.

It was shown previously that addition of cyclic AMP (cAMP) to a synaptic membrane fraction incubated with [gamma-32P]ATP stimulated the phosphorylation of two proteins, designated proteins Ia and Ib, found only in nerve tissue. Addition of Ca2+ plus veratridine to synaptosomes preincubated with 32Pi stimulated the phosphorylation of two proteins with similar apparent molecular weights. Various techniques have now been used to determine whether the two proteins phosphorylated in synaptosomes in the presence of Ca2+ plus veratridine are the same as proteins Ia and Ib phosphorylated in synaptic membranes in the presence of cAMP. The proteins phosphorylated by the two procedures were extracted under similar conditions, had similar apparent molecular weights and charges, and were digested by collagenase at similar rates and to the same radioactive intermediates and end products. Furthermore, the two sets of proteins were digested by three other proteolytic enzymes to phosphopeptides with similar molecular weights. The results indicate that Ca2+ and cAMP are each capable of regulating the phosphorylation of proteins Ia and Ib.

Adenosine Triphosphate

Immunological cross-reactivity between basic proteins of myelin and cancer. I. Lymphocyte transformation studies in immunized guinea-pigs.

The studies described were designed to examine the question of cross-reactivity between basic protein of myelin and a basic protein common to many human tumours. The lymphocytes from guinea-pigs injected with acid extracts of human cancer tissue showed significant (P less than 0-01) tranformation on exposure to basic protein of human myelin. Conversely lymphocytes from guinea-pigs injected with basic protein of human myelin showed significant (P less than 0-01) transformation on exposure to the acid extracts of human cancer tissue. Lymphocytes from control non-injected guinea-pigs did not transform on exposure to either antigen. These findings demonstrate immunological cross-reactivity in guinea-pigs between basic proteins of human myelin and of human cancer tissue using an assay system other than the macrophage electrophoretic migration hitherto used to show this effect in man.

Adenoma, Bile Duct

Tissue specificity of nuclear acidic proteins isolated from bovine brain and adrenal medulla.

Nuclear acidic proteins from bovine brain and adrenal medulla demonstrated dissimilar electophoretic and chemical profiles. The amino acid analysis of the acidic nuclear protein fraction isolated from these tissues revealed some variation in the ratio of acidic to basic amino acids. The estimation of free carboxylic acid groups confirmed the more acidic nature of the brain proteins. In comparing the acrylamide gels either visually or optically, several electrophoretically specific bands were apparent. Although the total number of protein bands from each tissue was approximately the same, the adrenal medulla contained a larger proportion of the more positively charged proteins. These observations are interpreted to indicate that the nuclear acidic protein from brain and adrenal medulla may show functional variation.

Adrenal Medulla

[Immunocytochemical localization of gliofibrillary proteins (GDAP) in human cerebral tumors. Histological and in vitro studies].

On the basis of studies utilizing antibody to GFAP (glial fibrillary acidic protein) in the indirect immunofluorescent and immunoperoxydase methods we report the presence of GFAP in 5 astrocytomas, 1 ependymoma and 1 medulloblastoma. The GFAP was evidenced on cryostat sections of frozen material and in short-term tissue culture. Five others tumors including 1 oligodendrocytoma, 1 choroid-plexus papilloma, 1 meningioma and 2 secondary sarcomas were negative. Possible applications of antibodies to GFAP for localization and therapy of brains tumors were considered.

Antigens

General characteristics of protein degradation in diabetes and starvation.

The enhanced protein degradation associated with diabetes and starvation is fundamentally different from normal protein catabolism. In normal eukaryotic cells large molecular weight proteins tend to be degraded more rapidly than small proteins, acidic proteins tend to be degraded more rapidly than neutral or basic proteins, and glycoproteins tend to be degraded more rapidly than nonglycoproteins. All three of these general correlations are absent or markedly reduced in liver and muscle of diabetic and starved rats. In contrast, the correlations between proteins size and half-life, between protein net charge and half-life, and between protein carbohydrate content and half-life are not affected in brain of diabetic or starved animals. These results suggest that diabetes and starvation alter the general characteristics of intracellular protein degradation in target tissues of insulin. Degradation of serum proteins is also affected in diabetes and starvation. In normal animals a general correlation exists between isoelectric points of serum proteins and their degradative rates. This relationship is abolished in diabetes and starvation, as it is among liver and muscle proteins. The implications of our findings are discussed with regard to possible mechanisms of the enhanced protein breakdown.

Animals

Tumor Suppressive Role of Hsa-miR-328-3p in Colon Cancer by Regulating EN2.

BACKGROUND/AIM: Colon cancer is a prevalent and life-threatening malignancy worldwide. Recent studies have focused on how microRNAs (miRNAs) act as post-transcriptional modulators in colon cancer progression. Herein, this study aimed to identify the impact of miRNAs that are decreased in colon cancer and to investigate their regulatory mechanisms. MATERIALS AND METHODS: Differentially expressed miRNAs (DEmiRNAs) and genes (DEGs) were identified through analysis of miRNA sequencing and RNA sequencing data from normal and tumor tissues in The Cancer Genome Atlas (TCGA). Expression levels were validated by quantitative polymerase chain reaction (qPCR) in both tissues and cell lines. Functional effects of miRNAs were evaluated by assessing cell viability, proliferation, migration, and invasion following transfection with miRNA mimics. RESULTS: Analysis of miRNA-seq data from the TCGA database identified hsa-miR-328-3p as a miRNA consistently downregulated across all stages of colon cancer. This downregulation was independently validated in colon cancer patient tissues by qPCR. Functional assays demonstrated that enforced expression of hsa-miR-328-3p significantly reduced cell viability, proliferation, migration, and invasion in colon cancer cell lines, supporting its tumor-suppressive role. To elucidate the molecular mechanism underlying these inhibitory effects, target gene analysis was performed. Engrailed homeobox 2 (EN2) was identified as a potential target of hsa-miR-328-3p, and a dual-luciferase assay confirmed that EN2 is directly regulated by hsa-miR-328-3p. CONCLUSION: Collectively, these findings indicate that hsa-miR-328-3p is frequently downregulated in colon cancer and functions as a tumor suppressor by negatively regulating its target gene, EN2, thereby contributing to colon cancer malignancy. EN2 may serve as a potential diagnostic biomarker for colon cancer, while restoration of hsa-miR-328-3p expression represents a promising therapeutic strategy. Further studies are needed to clarify the precise molecular mechanisms linking the hsa-miR-328-3p/EN2 axis to colon cancer progression.

Humans

Tissue specificity and regulation of the N-terminal diversity of reticulon 3.

Over the last few years, the widely distributed family of reticulons (RTNs) is receiving renewed interest because of the implication of RTN4/Nogo in neurite regeneration. Four genes were identified in mammals and are referred to as RTN1, 2, 3 and the neurite outgrowth inhibitor RTN4/Nogo. In the present paper, we describe the existence of five new isoforms of RTN3 that differ in their N-termini, and analysed their tissue distribution and expression in neurons. We redefined the structure of human and murine rtn3 genes, and identified two supplementary exons that may generate up to seven putative isoforms arising by alternative splicing or differential promoter usage. We confirmed the presence of five of these isoforms at the mRNA and protein levels, and showed their preferential expression in the central nervous system. We analysed rtn3 expression in the cerebellum further, and observed increased levels of several of the RTN3 isoforms during cerebellum development and during in vitro maturation of cerebellar granule cells. This pattern of expression paralleled that shown by RTN4/Nogo isoforms. Specifically, RTN3A1 expression was down-regulated upon cell death of cerebellar granule neurons triggered by potassium deprivation. Altogether, our results demonstrate that the rtn3 gene generates multiple isoforms varying in their N-termini, and that their expression is tightly regulated in neurons. These findings suggest that RTN3 isoforms may contribute, by as yet unknown mechanisms, to neuronal survival and plasticity.

Alternative Splicing

Experimental allergic neuritis induced by a basic neuritogenic protein (P1L) of human peripheral nerve origin.

Experimental allergic neuritis (EAN) in the peripheral nervous system, without involvement of the central nervous system, was produced in laboratory animals by the injection of a basic neuritogenic protein, P1L, purified from human peripheral nerves. The animals manifested a positive skin test with P1L, and their lymphocytes were found to be transformed in vitro in the presence of this protein several days before the appearance of the clinical signs. Passive transfer of the disease was performed with lymph node cells from donor guinea pigs immunized with P1L protein. EAN, the experimental model for the human disease Guillaain-Barré syndrome, was shown to be a transient disease and could be suppressed by the administration of hydrocortisone.

Animals

Development, reactivity and GFA immunofluorescence of astroglia-containing monolayer cultures from rat cerebrum.

This report describes detailed protocols for the dissociation, seeding and growth in vitro of monolayer cultures derived from neonatal rat cerebrum. Primary cultures derived by using different seeding densities and in vitro ages were examined qualitatively and quantitatively for morphological composition in terms of two major cell classes (flat cells and process-bearing cells) and for the presence within these classes of glial fibrillary acidic protein (GFA) as detected by immunofluorescence histochemistry. Also examined was the reaction of the cells to serum withdrawal plus the administration of dibutyryl cyclic AMP in terms of the conversion of flat cells into process-bearing cells. Conditions are defined for the generation of in vitro cell populations, more than 90% of which are GFA-containing flat cells which can all be experimentally converted into cells with processes. These well-defined culture preparations will serve as useful models for future studies of astroglial behaviour.

Animals