Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Amphibia”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,117 records · Page 62Linked to original sources

Lack of effect of dexamethasone on corticosteroid production in the amphibian.

Previous studies have demonstrated the presence of glucocorticoid receptors in the adrenal gland and suggested a direct inhibitory effect of glucocorticoids on the adrenal cortex. The present study was designed to investigate the possibility that dexamethasone could inhibit adrenal steroidogenesis in amphibia. For this study, we have applied a well-defined perifusion model, using interrenal fragments from frogs (Rana ridibunda). The amounts of corticosterone and aldosterone released in the effluent perifusate were radioimmunoassayed by means of specific antisera which did not cross-react with dexamethasone. Administration of dexamethasone (10(-6) and 10(-5M) did not significantly alter the basal secretion of corticosterone and aldosterone. In addition, dexamethasone (10(-5)M) did not modify the response of the interrenal gland to graded doses of ACTH. Finally dexamethasone did not inhibit the stimulation of corticosterone and aldosterone production induced by a single infusion of the angiotensin II analogue [Sar1-Val5] AII. From these results, it is concluded that in amphibia, chronic dexamethasone administration does not exert a direct suppressive effect on adrenal secretion.

Adrenal Cortex Hormones↗

ACTH-like molecules in lymphocytes. A study in different vertebrate classes.

Immunocytochemical and cytofluorimetric studies were performed in several species of different classes (Pisces, Amphibia, Reptilia and Aves), in order to ascertain the presence of ACTH-like molecules in blood cells. Using monoclonal and polyclonal antibodies, we demonstrated that lymphocytes containing ACTH-like molecules are first detectable in anuran amphibia, and are present in lymphocytes of reptilia and aves. Taking into account previous results demonstrating that ACTH-like molecules are present in and modulate macrophage functions from molluscs to man, it is argued that a new biological role has probably been acquired by ACTH in higher vertebrates, where it is also expressed in cells belonging to the lymphocyte lineage, possibly exerting a regulatory role on antibody response.

Adrenocorticotropic Hormone↗

Is caerulein amphibian CCK?

The amphibian skin decapeptide caerulein is structurally related to the mammalian peptides gastrin and CCK, suggesting that the peptides might share a common evolutionary history. It has been suggested that caerulein is the amphibian counterpart of gastrin and CCK, and that the Amphibia do not possess authentic gastric and CCK. High Performance Liquid Chromatography (HPLC) in conjunction with radioimmunoassay using a caerulein-specific antiserum and C-terminal CCK antisera, was used to characterize CCK-and caerulein-like peptides in amphibian brain and gut. In the brain of Xenopus laevis, two CCK-like peptides were present, one of which was indistinguishable by HPLC from mammalian CCK8. No decapeptide caerulein was detected in the brain of Xenopus laevis or Rana temporaria. In the stomach of Xenopus and in the intestine of both species studied, CCK-like and caerulein-like peptides were present. The results indicate therefore that the Amphibia possess CCK8-like rather than caerulein-like peptides in brain. In contrast, stomach and intestine contain both CCK-like and caerulein-like peptides, but the latter are however distinguishable from the decapeptide found in skin.

Amino Acid Sequence↗

Some functional and structural properties of Bufus paracnemis and Pipa pipae hemoglobins.

1. Hemoglobin from terrestrial and an aquatic amphibia Bufo paracnemis and Pipa pipae respectively both living in the same region (Belém, Pará) were compared. 2. The number of hemolysate components were determined by starch-gel electrophoresis and CMC-chromatography. P. pipae hemoglobin presented 4 components and B. paracnemis 2, all of anodic mobility. 3. Functional properties of the hemoglobins (oxygen affinity. Bohr effect, carbon monoxide equilibrium) were determined and compared. 4. The differences found in the functional properties were correlated with the different habitat: aquatic or terrestrial for the amphibia. 5. The study of the oxygen functional properties of the hemoglobin showed in the stripped proteins of P. pipae in the presence of ATP, an oxygen affinity (P50 = 7.24 mmHg) that of B. paracnemis at the same pH (P50 = 15.84 mmHg). At high pH the P50 values are different being 15.84 mmHg for the terrestrial frog and 5 mmHg for P. pipae haemoglobin both at pH 8. In addition Bohr effect was noted only in P. pipae hemolysate in the presence of ATP. 6. The CO-equilibrium affinity constant in the presence of ATP are similar in both frogs, of about, log C50 = -6.9. The ratio Pco/Po2 for B. paracnemis hemoglobin was about 300 whereas for that of P. pipae was about 100 only. 7. The kinetic study of reactive sulfhydryl groups in both frog hemoglobin with 4-PDS (specific SH group reagent was used and shown high pseudo-first order constant for B. paracnemis hemoglobin) (k' = 0.46/min) either in presence or not of ATP, compared for that of P. pipae where values were K' = 0.003/min in the stripped protein and k' = 0.014/min in the presence of ATP. 8. Denaturation kinetic studies of the hemoglobin with sodium benzoate was performed and the results were compared with that of Rana catesbeiana, i.e. the pseudo-first order of the hemoglobin denaturation reaction are low for the aquatic P. pipae adult although for the B. paracnemis high molecular resistant was also noted. For P. pipae hemoglobin, nevertheless with ATP such resistance becomes higher. This does not occur with B. paracnemis hemoglobins.

Adenosine Triphosphate↗

Electroreceptors: involvement of excitatory amino acids in synaptic transmission.

Electroreceptors are present in the skin of fish, amphibia and lower mammals, e.g. platypus. Animals use these receptors for detecting weak electric and magnetic fields. Electroreceptors of fish and amphibia belong to the secondary receptors in which the primary transduction is carried out by neuroepithelial hair cells that transmit synaptically to the afferent nerve fibers. The role of excitatory amino acids in synaptic transmission in electroreceptors is the subject of this review.

Amphibians↗

L-serine dehydratase and L-serine-pyruvate aminotransferase activities in different animal species.

1. A rough inverse correlation between liver serine dehydratase activity and species body size was observed with mammals. This was not found for glutamate, malate or lactate dehydrogenase, fumarase or aspartate-2-oxoglutarate aminotransferase. Serine dehydratase (and certain liver aminotransferases showing a similar species-size dependence) may have a role in the stimulation of heat production. 2. Cold-exposed rats showed a 3-4 fold increase in serine dehydratase activity. 3. No liver serine dehydratase was measurable in amphibia. 4. In mammals high liver serine-pyruvate aminotransferase is associated with a flesh-eating dietary habit. High activity was found in amphibia and goldfish. A gluconeogenic role is suggested.

Animals↗

The evolution from asparagine or threonine to cysteine in position 146 contributes to generation of a more efficient and stable form of muscle creatine kinase in higher vertebrates.

Creatine kinase, a key enzyme in vertebrate excitable tissues that require large energy fluxes, catalyzes the reversible transfer of phosphate between adenosine triphosphate and creatine. Sequence alignment indicated that the 146th amino acid is cysteine in the muscle creatine kinase of higher vertebrates including Amphibia, Reptilia, Aves and Mammalia. In fishes, it is cysteine in Agnatha and Chondrichthyes, and asparagine or threonine in Osteichthyes, which is the ancestor of Amphibia, Reptilia, Aves and Mammalia. To explore the structural and functional role of this special residue, a series of site-directed mutants of rabbit muscle creatine kinase were constructed, including C146S, C146N, C146T, C146G, C146A, C146D and C146R. A detailed comparison was made between wild-type creatine kinase and the mutants in catalytic activity, physico-chemical properties and structural stability against thermal inactivation and guanidine hydrochloride denaturation. It was found that except for C146S, the mutants had relatively lower catalytic activity and structural stability than Wt-CK. Wt-CK and C146S were the most stable ones, followed by C146N and C146T, and then C146G and C146A, and C146D and C146R were the least stable mutants. These results suggested that the 146th residue plays a crucial role in maintaining the structural stability of creatine kinase, and that the evolution in this amino acid from asparagine or threonine to cysteine contributes to the generation of a more efficient and more stable form of creatine kinase in higher vertebrates.

Amino Acid Sequence↗

Primary cilia in vertebrate corneal endothelial cells.

The presence of primary cilia in corneal endothelial cells of a range of species from six non-mammalian vertebrate classes (Agnatha, Elasmobranchii, Amphibia, Teleostei, Reptilia and Aves) is examined by scanning and transmission electron microscopy. Our aim is to assess whether these non-motile cilia protruding into the anterior chamber of the eye are a consistent phylogenetic feature of the corneal endothelium and if a quantitative comparison of their morphology is able to shed any new light on their function. The length (0.42-3.80 microm) and width (0.12-0.44 microm) of the primary cilia varied but were closely allied with previous studies in mammals. However, interspecific differences such as the presence of a terminal swelling in the Teleostei and Amphibia suggest there are functional differences. Approximately one-third of the endothelial cells possess cilia but the extent of protrusion above the cell surface varies greatly, supporting a dynamic process of retraction and elongation. The absence of primary cilia in primitive vertebrates (Agnatha and Elasmobranchii) that possess other mechanisms to control corneal hydration suggests an osmoregulatory and/or chemosensory function.

Amphibians↗

Inhibition of gonadotropin-induced oviposition and ovarian steroidogenesis in the African clawed frog (Xenopus laevis) by the pesticide methoxychlor.

Concern over the role of environmental toxicants in amphibian population declines has highlighted the need to develop more comprehensive ecotoxicological test methods for this at-risk group. With continued interest in environmental endocrine disrupters (EDs), and the paucity of data pertaining to endocrine disrupting effects in amphibia, such tests should incorporate reproductive and endocrine endpoints. We investigated the effects of in vivo exposure to the pesticide methoxychlor (MXC) on reproductive and endocrine function in adult female African clawed frogs, (Xenopus laevis). Frogs were exposed to MXC (0.5-500 microg/l) in tank water throughout a cycle of oogenesis stimulated by exogenous gonadotropins. Gonadotropin-induced oviposition was delayed, and reduced numbers of unfertilizable eggs of increased size were oviposited by frogs exposed to 500 microg/l MXC. Reduced egg output was mirrored by increased gonado-somatic index in MXC-treated frogs. Post-oviposition, plasma sex steroid profiles were altered in MXC-exposed frogs as estradiol/progesterone and estradiol/testosterone ratios were elevated. Ex vivo synthesis of progesterone by ovarian explants was significantly reduced for frogs exposed to MXC> or = 0.5 microg/l. Additionally, plasma vitellogenin concentrations were significantly depressed in frogs exposed to 500 microg/l MXC. These data indicate that reproductive and endocrine dysfunction can occur in adult amphibia exposed to high concentrations of an environmental toxin with endocrine disrupting activity. Such effects may be indicative of the potential for adverse effects on amphibian wildlife exposed to environmental EDs.

Animals↗

Somatostatin- and urotensin II-related peptides: molecular diversity and evolutionary perspectives.

Recent advances in the fields of molecular cloning and peptide purification necessitate a reappraisal of our views concerning the evolution of the genes encoding somatostatin-related peptides. The currently widely held view that the genomes of tetrapods contain only the preprosomatostatin-I (PSS-I) gene, encoding somatostatin-14, with a second preprosomatostatin gene being expressed only in teleost fish is no longer tenable. Identification of genes encoding both somatostatin-14 and the somatostatin-related peptide, cortistatin in mammals, identification of the PSS-I and PSS-II preprosomatostatin genes in amphibia, and the isolation of gene products from at least two non-allelic preprosomatostatin genes in lampreys suggests the alternative hypothesis that duplication of the PSS-I gene occurred early in evolution, predating or concomitant with the appearance of the chordates. We speculate that at least two somatostatin genes are expressed in all classes of vertebrates but these genes have evolved at very different rates. It is probable that the preprosomatostatin-II (PSS-II) gene, encoding [Tyr7, Gly10] somatostatin-14 or a related peptide, arose from a second independent duplication of the PSS-I gene in the ancestor of present-day teleost fish at a time after the divergence of the teleost stock from the line of evolution leading to tetrapods. The recent isolation of urotensin II, a peptide which contains a region of structural similarity but is not evolutionarily related to somatostatin-14, from the central nervous systems of lampreys, elasmobranchs and amphibia necessitates that we modify the accepted view that urotensin II is exclusively a product of the caudal neurosecretory system of teleost fish.

Amino Acid Sequence↗

Directed axonal growth towards axolotl limb blastemas in vitro.

Limb amputation in urodele amphibia is followed by formation of a blastema, which subsequently develops into a complete limb with normal pattern of innervation. In this study, we investigated the effects of axolotl limb blastemas on axonal growth in gels of collagen and extracellular matrix (matrigel). When peripheral nerves with attached dorsal root ganglia were cultured in collagen gels together with blastemas, axonal outgrowth was markedly increased compared with control preparations. Blastemas contain fibroblast growth factors, and may also contain neurotrophic factors such as nerve growth factor, brain-derived neurotrophic factor, neurotrophin 3, neurotrophin 4, glial cell line-derived neurotrophic factor and hepatocyte growth factor/scatter factor, since these factors are expressed in developing limbs in other vertebrates. In collagen gels the neurotrophins and glial cell line-derived neurotrophic factor stimulated axonal growth, but outgrowing axons were shorter than in co-cultures with blastemas. The tyrosine kinase inhibitor K252a blocked the stimulatory effects of the neurotrophins on axonal growth but had relatively little effect on axonal growth in co-cultures with blastemas. In experiments in which peripheral nerves, with attached dorsal root ganglia, were cultured in matrigel, axons grew towards blastemas over distances of about 1mm. Directed axonal growth even occurred in these co-cultures after addition of high concentrations of all the above neurotrophic factors, suggesting that blastemas may release a different factor which stimulates axonal growth. The results indicate that during early stages of limb regeneration in amphibia, factor(s) are released which are capable of attracting the growth of peripheral nerves and may play an important role in the development of innervation of regenerated limbs. The identity of the factor(s) remains to be determined.

Ambystoma mexicanum↗

Lactoseries carbohydrate epitopes in the vertebrate retina.

The distribution of N-acetyl-lactosamine (NALA), a cell-surface carbohydrate epitope of the lactoseries, has been studied in the retina of representative species of all vertebrate classes by light microscope immunohistochemistry. In only some species of different classes (fish, amphibia and mammals) was NALA expression detected, and in these animals the distribution showed profound interspecies variability. In fishes and amphibia in which NALA was present, patterns ranged from single immunopositive cells to homogeneous labelling of cell layers. In mammals, NALA was found only in retinas that are cone dominated (tree squirrel and primates). In the tree squirrel, there was a dense cellular staining of the photoreceptor cell layer; whereas in primates, the carbohydrate epitope occurred only on some photoreceptor cells. From these receptor cells, positive axons could be traced to the inner plexiform layer. In spite of the profound interspecies differences, NALA is not randomly expressed, as its exclusive expression in mammals with cone-dominated vision indicates. The suggestion of a functional relevance for NALA glycosylation of retinal cells is supported by the labelling pattern for HNK-1 in these species, which was different from the pattern found in rod-dominated mammalian retinas.

Amino Sugars↗

Characterization of melanin-concentrating hormone in chum salmon pituitaries.

Many lower vertebrates exhibit colour change in response to the background. A dual hormonal control of colour change by two antagonistic pituitary melanophorotropic hormones was first postulated in amphibia by Hogben and Slome. It is well established that the melanotropins alpha- and beta-MSH are responsible for pigment dispersion in the integumentary melanophore of lower vertebrates and that these molecules are derived from a common precursor protein, proopiocortin, by specific processing within the intermediate lobe. No evidence has been found for an antagonistic hormone in amphibia, although the existence of such a molecule in the pituitary gland of teleost fishes has long been recognized and was termed the melanophore-concentrating hormone by Enami. Early attempts to separate the two hormones proved unsuccessful. Recently, Baker and Ball re-invoked the dual hormone concept, and it has been suggested that a melanin-concentrating hormone (MCH) is synthesized in the hypothalamus of teleosts and stored and released by the neurohyphophysis. We have now isolated a novel peptide from the pituitary of the salmon (Oncorhynchus keta) possessing an antagonistic function to MSH, and we describe here its chemical and biological characteristics.

Amino Acid Sequence↗

Diversity of O-linked glycosylation patterns between species. Characterization of 25 carbohydrate chains from oviducal mucins of Rana ridibunda.

Amphibia egg jelly coats are formed by components secreted along the oviduct. These secretion products overlay the oocytes as they pass along the different oviducal portions. Mucin type glycoproteins are the major constituents of the egg jelly coats. In this study, the O-linked carbohydrate chains of the jelly coats surrounding the eggs of Rana ridibunda were released by alkaline borohydride treatment. Fractionation of the mixture of O-linked oligosaccharide-alditols was achieved by a combination of chromatographic techniques including gel-permeation chromatography, ion-exchange chromatography and high-performance liquid chromatography using an amino-bonded silica column. The primary structures of these O-glycans were determined by one-dimensional and two-dimensional 1H-NMR spectroscopy and matrix-assisted laser-desorption-ionization-time-of flight mass spectrometry. 25 oligosaccharide structures, possessing a core consisting of Gal(beta1-3)GalNAc-ol with or without branching through a GlcNAc residue linked (beta1-6) to the GalNAc residue (core type 2 or core type 1, respectively) are described. The most representative antennae are: HSO3(6)[Fuc(alpha1-3)]GlcNAc; Gal(beta1-2)Gal; Gal(beta1-2)Gal(alpha1-3)[Fuc(alpha1-2)]Gal; GlcA(beta1-3)-Gal(beta1-3)[Fuc(alpha1-2)]Gal; GalNAc(alpha1-4)Gal(beta1-4)Gal; Gal(beta1-3)GalNAc(alpha1-4)Gal(beta1-4)Gal and GlcA(beta1-3)Gal(beta1-3)GalNAc. These results confirm the species-specific O-glycosylation of Amphibia oviducal mucins. The significance of this observation should be linked to a symbiotic role of carbohydrates involved in host-parasite interactions.

Animals↗

cDNA cloning and expression of ferritin heavy chain 1, ferritin heavy chain 2 and hemoglobin genes from the fire-bellied frog Bombina orientalis.

We cloned two Bombina orientalis ferritin heavy chains (ferritin heavy chains 1 and 2) and one hemoglobin beta-chain gene from a B. orientalis oviduct cDNA library, and the length of transcripts was 882, 858 and 611 bp encoding 177, 177 and 148 aa, respectively. B. orientalis ferritin heavy chain genes showed high similarity to those of amphibia (88-93%), mammals (70-71%), and fishes (70-72%), and the hemoglobin beta-chain gene showed moderate similarity to amphibian (65-68%) and mammalian (54-57%) hemoglobin beta-chain genes, respectively. Based on phylogenetic analysis, the genes were clustered to the same clade in amphibia. The two B. orientalis ferritin heavy chain genes showed different tissue-specific gene expression patterns. Thus, ferritin heavy chain 1 gene was highly expressed in intestine and oviduct but ferritin heavy chain 2 gene was ubiquitously expressed in most of the examined tissues. The hemoglobin beta-chain gene was more highly expressed in liver than in oviduct. These findings indicate that the genes may play different roles in different tissues. In this paper, we discuss the basic characteristics of B. orientalis ferritin heavy chain genes and hemoglobin beta-chain gene.

Amino Acid Sequence↗

Proteins regulating actin assembly in oogenesis and early embryogenesis of Xenopus laevis: gelsolin is the major cytoplasmic actin-binding protein.

Oocytes, notably those of amphibia, accumulate large pools of nonfilamentous ("soluble") actin, both in the cytoplasm and in the nucleoplasm, which coexist with extensive actin filament arrays in the cytoplasmic cortex. Because the regulation of oogenically accumulated actin is important in various processes of oogenesis, egg formation, fertilization and early embryogenesis, we have purified and characterized the major actin-binding proteins present in oocytes of Xenopus laevis. Here we report that the major actin-binding component in the ooplasm, but not in the nucleus, is a polypeptide of Mr approximately 93,000 on SDS-PAGE that reduces actin polymerization in vitro in a Ca2+-dependent manner but promotes nucleation events, and also reduces the viscosity of actin polymers, indicative of severing activity. We have raised antibodies against the purified oocyte protein and show that it is different from villin, is also prominent in unfertilized eggs and early embryos and is very similar to a corresponding protein present in various tissues and in cultured cells, and appears to be spread over the cytoplasm. Using these antibodies we have isolated a cDNA clone from a lambda gt11 expression library of ovarian poly(A)+-RNA. Determination of the amino acid sequence derived from the nucleotide sequence, together with the directly determined sequence of the amino terminus of the native protein, has shown that this clone encodes the carboxy-terminal half of gelsolin. We conclude that gelsolin is the major actin-modulating protein in oogenesis and early embryogenesis of amphibia, and probably also of other species, that probably also plays an important role in the various Ca2+-dependent gelation and contractility processes characteristic of these development stages.

Actin Cytoskeleton↗

The partition of calcium and protein in the blood of oviparous vertebrates during estrus.

Six classes of vertebrate animals were injected with massive doses of estrogen for various periods of time necessary to produce a grossly recognizable response. Swelling of the liver, associated with hypercalcemia, hyperproteinemia, and lipemia, occurred in Teleostei, Amphibia, Reptilia, and Aves, but not in Elasmobranchii or Mammalia. Calcium that was added to the serum was bound as a calcium proteinate complex, synthesized in the liver, and liberated into the plasma. The concentration of calcium per gram was considerably higher than in other oviparous animals. Teleostei, Amphibia, and Reptilia, produced one new component, protein-X(1), having a sedimentation constant of approximately 17S, and many properties of a protein previously described in birds as X(2). Calcium-binding capacity of teleostean and amphibian serum proteins was estimated at 25 to 35 mg. per gm. of the mixed proteins of the serum; reptilian serum proteins bound 55 mg. per gm. Estrogen-treated birds clearly produced two, rather than one, new proteins, a phosphoprotein, X(1), having a rate of 8.5S, and X(2), a phospholipid-lipoglycoprotein, 17S. The calcium-binding capacity was approximately 50 mg. per gm. of the mixed proteins of the serums. Circumstantial evidence suggests that the plasma proteins of oviparity appeared simultaneously with the evolution of bone as a tissue and an ultimobranchial gland having parathyroid function.

Animals↗

A comparative study of tropomyosin from vertebrate ventricles.

A comparative study of vertebrate ventricle tropomyosin has been carried out from the viewpoint of molecular evolution. The ventricles containing one-component tropomyosin were generally known, and in this paper those containing two components were also found in 8 species among mammals, reptiles, amphibia, and fish, but not among birds. The two components were concluded to be authentic tropomyosin and not artifacts since they showed lower electrophoretic mobilities in the presence of urea, and they were precipitated at pH 4.5 and bound to F-actin. Studies on cysteine contents and cyanogen bromide cleavage peptide patterns revealed that the characteristics of the two tropomyosin components from pig, turtle, amphibia and carp ventricles varied increasingly in that order from typical alpha- and beta-characteristics as seen in rabbit skeletal muscle tropomyosin. The single component of chicken ventricle tropomyosin showed alpha component characteristics in its electrophoretic mobility and cysteine content, and beta component characteristics in cyanogen bromide cleavage peptide pattern. The two components of carp ventricle tropomyosin seemed to be the most primitive, having two cysteine residues per molecule and a cyanogen bromide cleavage peptide pattern different from those of the two components of rabbit skeletal muscle.

Actins↗