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Localization of the DMDL gene-encoded dystrophin-related protein using a panel of nineteen monoclonal antibodies: presence at neuromuscular junctions, in the sarcolemma of dystrophic skeletal muscle, in vascular and other smooth muscles, and in proliferating brain cell lines. , Nguyen TM., J Cell Biol. December 1, 1991; 115 (6): 1695-700.
Expression of the Xhox3 Homeobox Protein in Xenopus Embryos: Blocking Its Early Function Suggests the Requirement of Xhox3 for Normal Posterior Development: (axial pattern/central nervous system/embryonic mesoderm/homeobox gene/Xenopus laevis). , Ruiz I Altaba A ., Dev Growth Differ. December 1, 1991; 33 (6): 651-669.
Expression cloning of a cDNA encoding the bovine histamine H1 receptor. , Yamashita M ., Proc Natl Acad Sci U S A. December 15, 1991; 88 (24): 11515-9.
Molecular nature of Spemann's organizer: the role of the Xenopus homeobox gene goosecoid. , Cho KW ., Cell. December 20, 1991; 67 (6): 1111-20.
Triggering and gating of motor responses by sensory stimulation: behavioural selection in Xenopus embryos. , Soffe SR ., Proc Biol Sci. December 23, 1991; 246 (1317): 197-203.
The evolution of vertebrate gastrulation. , De Robertis EM ., Dev Suppl. January 1, 1992; 117-24.
Distribution of vasotocin- and mesotocin-like immunoreactivities in the brain of the South African clawed frog Xenopus-laevis. , González A ., J Chem Neuroanat. January 1, 1992; 5 (6): 465-79.
Body axis determination during early development in amphibians. , Savard P., Biochem Cell Biol. January 1, 1992; 70 (10-11): 875-91.
Serotonin synthesis and accumulation by neurons of the anuran retina. , Zhu B., Vis Neurosci. January 1, 1992; 9 (3-4): 377-88.
Excitatory amino acids and neuronal plasticity: modulation of AMPA receptors as a novel substrate for the action of nootropic drugs. , Nicoletti F., Funct Neurol. January 1, 1992; 7 (5): 413-22.
The use of field emission in- lens scanning electron microscopy to study the steps of assembly of the nuclear envelope in vitro. , Goldberg MW ., J Struct Biol. January 1, 1992; 108 (3): 257-68.
Synaptic plasticity and gravity: ultrastructural, biochemical and physico-chemical fundamentals. , Rahmann H., Adv Space Res. January 1, 1992; 12 (1): 63-72.
Embryonic retinal ablation and post-metamorphic optic nerve crush: effects upon the pattern of regenerated retinotectal connections. , Underwood LW., J Exp Zool. January 1, 1992; 261 (1): 18-26.
Developmental regulation of alternative splicing in the mRNA encoding Xenopus laevis neural cell adhesion molecule ( NCAM). , Zorn AM ., Dev Biol. January 1, 1992; 149 (1): 197-205.
The effect of carboxyl-terminal deletions on the nuclear transport rate of rat hsc70. , Mandell RB., Exp Cell Res. January 1, 1992; 198 (1): 164-9.
Development of motor systems: a comparative approach. , ten Donkelaar HJ., Eur J Morphol. January 1, 1992; 30 (1): 9-22.
Recent progress on the mechanisms of embryonic lens formation. , Grainger RM ., Eye (Lond). January 1, 1992; 6 ( Pt 2) 117-22.
Changing patterns of binocular visual connections in the intertectal system during development of the frog, Xenopus laevis. III. Modifications following early eye rotation. , Grant S., Exp Brain Res. January 1, 1992; 89 (2): 383-96.
cdc2 kinase-induced destabilization of MAP2-coated microtubules in Xenopus egg extracts. , Faruki S., J Cell Sci. January 1, 1992; 101 ( Pt 1) 69-78.
The influence of the olfactory placode on the development of the telencephalon in Xenopus laevis. , Graziadei PP., Neuroscience. January 1, 1992; 46 (3): 617-29.
The "ON"-bipolar agonist, L-2-amino-4-phosphonobutyrate, blocks light-evoked cone contraction in xenopus eye cups. , Besharse JC ., Neurochem Res. January 1, 1992; 17 (1): 75-80.
Identification of RBK1 potassium channels in C6 astrocytoma cells. , Wang SY., Glia. January 1, 1992; 5 (2): 146-53.
Plasticity of binocular visual connections in the frog, Xenopus laevis: reversibility of effects of early visual deprivation. , Keating MJ., Exp Brain Res. January 1, 1992; 90 (1): 121-8.
Regeneration in the Xenopus tadpole optic nerve is preceded by a massive macrophage/microglial response. , Wilson MA., Anat Embryol (Berl). January 1, 1992; 186 (1): 75-89.
Primary olfactory terminations in the forebrain of amphibia: a comparative study with soybean agglutinin. , Franceschini V., J Hirnforsch. January 1, 1992; 33 (6): 627-35.
[The structure of the reticulum of Mauthner's neurons in tadpoles of the clawed toad grown under increased gravitational force]. , Moshkov DA., Tsitologiia. January 1, 1992; 34 (5): 50-7.
Calcium-binding proteins in chemoreceptors of Xenopus laevis. , Kerschbaum HH., Tissue Cell. January 1, 1992; 24 (5): 719-24.
Effects of steroids on gamma-aminobutyric acid receptors expressed in Xenopus oocytes by poly(A)+ RNA from mammalian brain and retina. , Woodward RM., Mol Pharmacol. January 1, 1992; 41 (1): 89-103.
Valproic acid induced abnormal development of the central nervous system of three species of amphibians: implications for neural tube defects and alternative experimental systems. , Oberemm A., Teratog Carcinog Mutagen. January 1, 1992; 12 (6): 251-62.
Induction of anteroposterior neural pattern in Xenopus by planar signals. , Doniach T., Dev Suppl. January 1, 1992; 183-93.
Goosecoid and the organizer. , De Roberts EM., Dev Suppl. January 1, 1992; 167-71.
Molecular mechanisms of pattern formation in the vertebrate hindbrain. , Nieto MA., Ciba Found Symp. January 1, 1992; 165 92-102; discussion 102-7.
Choroid plexus, ependyma and arachnoidea express receptors for vitamin D: differences between "seasonal" and "non-seasonal" breeders. , Bidmon HJ., Prog Brain Res. January 1, 1992; 91 279-83.
Expression of XMyoD protein in early Xenopus laevis embryos. , Hopwood ND ., Development. January 1, 1992; 114 (1): 31-8.
Expression of functional bradykinin receptors in Xenopus oocytes. , Phillips E., J Neurochem. January 1, 1992; 58 (1): 243-9.
The patterning and functioning of protrusive activity during convergence and extension of the Xenopus organiser. , Keller R ., Dev Suppl. January 1, 1992; 81-91.
Specification of the body plan during Xenopus gastrulation: dorsoventral and anteroposterior patterning of the mesoderm. , Slack JM ., Dev Suppl. January 1, 1992; 143-9.
Comparative study of glial fibrillary acidic protein (GFAP)-like immunoreactivity in the retina of some representative vertebrates. , Sassoè Pognetto M., Eur J Histochem. January 1, 1992; 36 (4): 467-77.
Neuropeptides in the amphibian brain. , Andersen AC., Int Rev Cytol. January 1, 1992; 138 89-210, 315-26.
Cloning, functional expression, and developmental regulation of a neuropeptide Y receptor from Drosophila melanogaster. , Li XJ., J Biol Chem. January 5, 1992; 267 (1): 9-12.
Cloning of a Na(+)- and Cl(-)-dependent betaine transporter that is regulated by hypertonicity. , Yamauchi A., J Biol Chem. January 5, 1992; 267 (1): 649-52.
Primary structure and functional expression of the human cardiac tetrodotoxin-insensitive voltage-dependent sodium channel. , Gellens ME., Proc Natl Acad Sci U S A. January 15, 1992; 89 (2): 554-8.
Spatio-temporal patterns of retinal ganglion cell death during Xenopus development. , Gaze RM., J Comp Neurol. January 15, 1992; 315 (3): 264-74.
Development of the olfactory nerve in the clawed frog, Xenopus laevis: II. Effects of hypothyroidism. , Burd GD ., J Comp Neurol. January 15, 1992; 315 (3): 255-63.
Cloning and expression of a cardiac/ brain beta subunit of the L-type calcium channel. , Perez-Reyes E., J Biol Chem. January 25, 1992; 267 (3): 1792-7.
A cDNA from brain of Xenopus laevis coding for a new precursor of thyrotropin-releasing hormone. , Bulant M., FEBS Lett. January 27, 1992; 296 (3): 292-6.
Distinct spatial and temporal expression patterns of K+ channel mRNAs from different subfamilies. , Drewe JA., J Neurosci. February 1, 1992; 12 (2): 538-48.
The stopping response of Xenopus laevis embryos: behaviour, development and physiology. , Boothby KM., J Comp Physiol A. February 1, 1992; 170 (2): 171-80.
Isoform-selective deficit of glycine receptors in the mouse mutant spastic. , Becker CM., Neuron. February 1, 1992; 8 (2): 283-9.
Cloning of a putative glutamate receptor: a low affinity kainate-binding subunit. , Bettler B., Neuron. February 1, 1992; 8 (2): 257-65.