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R D Lane

Publications and source records attributed to R D Lane.

At least 37 records · Page 2Linked to original sources

The major calpain isozymes are long-lived proteins. Design of an antisense strategy for calpain depletion in cultured cells.

Calpains are intracellular Ca2+-dependent proteases that are thought to participate in Ca2+-associated signal transduction pathways. It has been proposed that calpains are activated by an autoproteolytic mechanism. If this is true one would expect a relatively short half-life for calpain protein in cells. To test this hypothesis, WI-38 human diploid fibroblasts were pulse-labeled with [35S]methionine, and calpain was immunoprecipitated at various times after chasing with nonradioactive methionine to determine residual radioactivity. The results demonstrated that the two major calpain isozymes, m-calpain and micro-calpain, had metabolic half-lives of approximately 5 days. Calpains were long-lived proteins in several human cell lines, A-431, HeLa, VA-13, C-33A, and TE2 cells. In addition, calpastatin, the calpain-specific inhibitor protein, also had a long metabolic half-life. These observations suggest that the model for calpain activation by autoproteolysis requires re-investigation. Based on a knowledge of calpain metabolic stability, a protocol was devised for chronic exposure of WI-38 cells and HeLa cells to a calpain small subunit antisense oligodeoxyribonucleotide. Depletion of calpain small subunit after 5 or more days of treatment led to inhibition of cell proliferation that could be reversed by removal of antisense oligodeoxyribonucleotide from the culture medium. Together with previous studies, these results indicate a requirement for calpains in mammalian cell proliferation.

Amino Acid Sequence↗

Fenfluramine depletes serotonin from the developing cortex and alters thalamocortical organization.

A previous experiment from our laboratory showed that neonatal destruction of cortical serotoninergic (5-HT) axons with 5,7-dihydroxytryptamine (5,7-DHT) reduced the size of the clusters of vibrissae-related thalamocortical axons. This result suggested an important role for 5-HT in thalamocortical development, but could be questioned because of potentially direct toxic effects of 5,7-DHT on thalamocortical axons. In the present study, 5-HT was depleted from the cortex using a different method, neonatal administration of +fenfluramine, and vibrissae-related patches of thalamocortical afferents were measured when animals reached 6 days of age. Fenfluramine reduced cortical 5-HT levels to 93.9 +/- 6.0% of normal (P < 0.01) and decreased the average area of vibrissae-related lamina IV patches by 23.8 +/- 4.4% (P < 0.05). Depletion of 5-HT with +fenfluramine did not significantly reduce body, brain, or cortical weight, or the overall dimensions of the somatosensory cortex. Thus, these results extend our previous studies by showing that thalamocortical organization can be altered when 5-HT is depleted without the potential for direct toxic effects on thalamic axons.

Animals↗

Lesion-induced reorganization in the brainstem is not completely expressed in somatosensory cortex.

Electrophysiological and neuroanatomical methods were used to determine the extent to which neonatal forelimb removal altered the organization of the cuneate nucleus and representations of the fore- and hindlimbs in the primary somatosensory cortex of adult rats. Neonatal forelimb removal resulted in invasion of the cuneate nucleus by sciatic nerve primary afferents and development of cuneothalamic projection neurons with split receptive fields that included both the hindlimb and forelimb stump. Mapping in the primary somatosensory cortex of the neonatally manipulated adult rats demonstrated abnormalities, but the major change observed in the cuneate nucleus was demonstrable at only a few (5%) cortical recording sites in the remaining stump representation and there were none at all in the hindlimb representation. These results suggest that lesion-induced brainstem reorganization may be functionally suppressed at either the thalamic or cortical level.

Animals↗

Levels of emotional awareness and the degree of right hemispheric dominance in the perception of facial emotion.

To examine correlates of individual differences in the degree of right hemispheric dominance in the perception of facial emotion, 51 medical students completed the Levy Chimeric Faces Test and an independent measure of differentiation and complexity in the processing of emotional information, the Levels of Emotional Awareness Scales. A strong positive correlation was observed between the two measures, especially when variance due to verbal ability was removed and native English speakers only were included. These results suggest that as right hemisphere dominance in the perception of facial emotion increases, the ability to perceive complexity during the processing of emotional information increases.

Adult↗

Effects of non-right-handedness on risk for sudden death associated with coronary artery disease.

The hypothesis that non-right-handedness is associated with sudden cardiac death was tested based on evidence that sympathetic imbalance may contribute to ventricular arrhythmogenesis and evidence that left-handers may have a shorter lifespan than right-handers. The study included 26 patients with coronary artery disease (CAD), a history of ventricular tachycardia-ventricular fibrillation (VT-VF), and implanted defibrillators, and 26 patients with CAD and no history of serious arrhythmias who were matched for age, sex, and New York Heart Association functional class. Patients with any history of neurologic disorders were excluded. Left-handers either wrote with the left hand or were converted from left- to right-handedness in childhood. Non-right-handers used the left hand for writing, drawing, or throwing. Handedness rates in patients with VT-VF and case-control subjects were compared with published norms in the general population to take expected rates into account. The rates of left-handedness (6 of 26 or 23.1%) and non-right-handedness (9 of 26 or 34.6%) in patients with VT-VF were significantly higher (p < 0.003 and p < 0.0001, 2-tailed, respectively) than those of similarly aged adults in the general population (left-handedness, 5%; non-right-handedness, 10.2%). The rates of left-handedness (2 of 26 or 7.7%) and non-right-handedness (4 of 26 or 15.4%) observed in the case-control group correspond closely to the expected values for that group (left-handedness, 1.3 of 26 or 5%; non-right-handedness, 2.65 of 26 or 10.2%) derived from the general population rates and were not significantly different from them.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Heart rate differences between right and left unilateral electroconvulsive therapy.

Left and right unilateral electrode placements were alternately applied in electroconvulsive therapy given to 21 men with melancholia. Accompanying heart rate elevations were greater following right unilateral treatment than left unilateral, apparently because of longer persistence of peak rates. This is consistent with right cerebral hemisphere superiority in the control of heart rate activity in neurologically intact humans.

Adult↗

Effect of serotonin depletion on vibrissa-related patterns of thalamic afferents in the rat's somatosensory cortex.

To investigate the role of 5-HT in the development of the somatosensory cortex, this amine was depleted in newborn (P-0) rats with a single subcutaneous injection of the toxin 5,7-dihydroxytryptamine (5,7-DHT) and thalamocortical organization was assayed by application of the carbocyanine dye Di-I to the thalamocortical radiations or ventrobasal thalamus, or by staining cortical sections for AChE or cytochrome oxidase (CO). High-performance liquid chromatographic analysis of cortices from animals killed on P-6 or P > 60 demonstrated that 5,7-DHT treatment resulted in 85.04 +/- 12.6% and 72.5 +/- 1.5% reductions in cortical 5-HT, respectively. Alternate cortices from the brains of animals killed on P-6 processed for 5-HT immunoreactivity demonstrated a complete absence of the vibrissa-related pattern of immunoreactivity and only a small number of coarse immunoreactive axons. The 85% depletion of 5-HT did not alter the somatotopic organization of thalamocortical afferents in animals killed on P-6 or P > 60, but it did cause 30.5 +/- 7.3% and 19.1 +/- 3.7% reductions in the cross-sectional areas of the patches of thalamocortical afferents corresponding to the long mystacial vibrissae (p < 0.05). These reductions were not associated with significant reductions in either brain or cortical weight or with decreases in the dimensions of the thalamic representation of the vibrissa follicles. These results indicate that 5-HT plays a significant role in the development of the thalamic innervation of the primary somatosensory cortex.

5,7-Dihydroxytryptamine↗

Increased serotoninergic innervation of the hamster's superior colliculus alters retinotectal projections.

Anterograde tracing with horseradish peroxidase (HRP) was used to compare the organization of retinotectal projections in normal adult hamsters and in animals that sustained subcutaneous injections of the neurotoxin 5,7-dihydroxytryptamine (5,7-DHT) on the day of birth. Neonatal injection of this neurotoxin decreases the density of the serotoninergic (5-HT) innervation of the cerebral and cerebellar cortices, but increases the density of these fibers in the brainstem including the superior colliculus (SC). Analysis of tissue from the retinorecipient laminae of the SC by high-pressure liquid chromatography indicated that these lesions increased the amount of 5-HT in the adult SC by 47%. The increased serotoninergic innervation of SC was associated with a marked change in the distribution of the uncrossed retinotectal projection. In normal adult hamsters, fibers from the ipsilateral eye form dense clusters in the lowermost stratum griseum superficiale (SGS) and stratum opticum (SO). A small number of uncrossed fibers are also visible in the more caudal portions of these layers. In the animals that sustained neonatal 5,7-DHT injections, uncrossed retinotectal fibers formed a nearly continuous band in rostral SO and lower SGS, and numerous labeled fibers were present in the caudal SC, primarily in the SO. Neonatal treatment with 5,7-DHT also produced alterations in the crossed retinotectal pathway and in the crossed and uncrossed retinogeniculate projections. These results indicate that the 5-HT input to the developing brainstem may strongly influence the development of retinofugal projections.

5,7-Dihydroxytryptamine↗

Immunochemical heterogeneity in the tecto-LP pathway of the rat.

The projection from the rat's superior colliculus (SC) to the lateral posterior nucleus of the thalamus (LP) has previously been described as arising from a morphologically homogeneous population of neurons in the stratum opticum (SO). The present study combined immunocytochemistry with retrograde tracing and lesion techniques to determine whether or not the SC-->LP projection arose from neurons that were also neurochemically homogeneous. The combination of retrograde tracing and immunocytochemistry with an antibody directed against calbindin-D 28K (CBD) showed that 64.4% of the neurons that project from SC to LP contain this calcium-binding protein. Retrograde tracing and immunocytochemistry for adenosine deaminase (ADA) showed that a smaller number of tecto-LP cells (15.7%) were immunoreactive (IR) for this enzyme. Moreover, nearly all (93.0%) of the ADA-IR tecto-LP cells also contained CBD-IR. Adenosine deaminase-IR axons in LP were restricted to the dorsomedial portion of the nucleus and their density was substantially reduced after ablation of the ipsilateral superficial SC laminae. The lateral posterior nucleus contained numerous CBD-IR cells and fibers throughout its extent and it was thus difficult to determine the extent to which the extra-perikaryal CBD-IR in this nucleus was dependent upon the tecto-LP pathway. Nevertheless, destruction of the ipsilateral SC did reduce the density of CBD-IR in LP. These results suggest that the SC-->LP projection in rat arises from at least four neurochemically distinct cell groups: 1) those that contain CBD, 2) those that contain both CBD and ADA, 3) a very small population that contains only ADA, and 4) a group that is not recognized by either of these markers. Our results further suggest that ADA containing fibers may have a more restricted terminal distribution in LP than axons that contain only CBD.

Adenosine Deaminase↗

Reconstitution, identification, purification, and immunological characterization of the 110-kDa Na+/Ca2+ antiporter from beef heart mitochondria.

The mitochondrial Na+/Ca2+ antiporter plays a key role in the physiological regulation of intramitochondrial Ca2+, which in turn attunes mitochondrial enzymes to the changing demands of the cell for ATP. We have now purified the Na+/Ca2+ antiporter from beef heart mitochondria by assaying detergent-solubilized chromatography fractions for reconstitutive activity. Na+ and Ca2+ transport were assayed using the fluorescent probes, sodium-binding benzofuran isophthalate and Fura-2, respectively. This approach enabled us to identify Na+/Ca2+ exchange activity with a 110-kDa inner membrane protein that catalyzed Na(+)-dependent Ca2+ transport and Ca(2+)-dependent Na+ transport. A new finding was that the Na+/Ca2+ antiporter also catalyzed Na+/Li+ exchange in the absence of Ca2+. All modes of transport were electroneutral and were inhibited by diltiazem and tetraphenylphosphonium cation. Monospecific polyclonal antibodies to the 110-kDa protein inhibited Na+/Ca2+ and Na+/Li+ exchange in the reconstituted system and recognized 110-kDa proteins in mitochondrial membranes isolated from rat heart, liver, and kidney.

Animals↗

Antibodies directed against synthetic peptides distinguish between the catalytic subunits of protein phosphatases 1 and 2A.

Two antipeptide antibodies (designated type 1 antibody and type 2A antibody) were raised against synthetic peptides, Cys-Thr-Pro-Pro-Arg-Asn-Ser-Ala-Lys-Ala-Lys-Lys and Cys-Val-Thr-Arg-Arg-Thr-Pro-Asp-Try-Phe-Leu, corresponding to the carboxyl termini of the catalytic subunits of protein phosphatase 1 and phosphatase 2A (Cys was added for specific coupling to carrier protein). These antipeptide antibodies were highly specific and were useful in discriminating between protein phosphatase 1 and phosphatase 2A in crude extracts or purified preparations. Type 2A antibody reacted with both native and denatured protein phosphatase 2A whereas under the same condition type 1 antibody reacted only with denatured protein phosphatase 1.

Amino Acid Sequence↗

A comparison of the intracellular distribution of mu-calpain, m-calpain, and calpastatin in proliferating human A431 cells.

Little is known about the relative intracellular localizations of the calcium-dependent proteases, calpains, and their naturally occurring inhibitor, calpastatin. In the present study, the intracellular localization of mu-calpain, m-calpain, and calpastatin was studied at the light microscopic level in proliferating A431 cells. Highly specific antibodies against the three antigens revealed distinct staining patterns in interphase and mitotic cells. Most notably, calpastatin in interphase cells was localized near the nucleus in tube-like, or large granular structures, while the calpains were more uniformly distributed through the cytoplasm in either a fibrillar form (mu-calpain) or a diffuse or fine granular form (m-calpain). The distribution patterns of the two calpain isozymes were distinctly different during mitosis. m-Calpain was concentrated at the mitotic spindle poles and midbody, while mu-calpain appeared to accumulate at the cell membrane and the spindles. Four other human cell lines as well as normal human monocytes were examined to determine if the calpains-calpastatin segregation patterns are common to other cells or are unique to the A431 line. With the exception of abundant nuclear mu-calpain in the C-33A cervical carcinoma, the segregation of the proteins was similar to that of A431. These studies indicate that calpains may be localized at regions which are relatively poor in calpastatin content. Proteins at these sites may be susceptible to calpain-catalyzed cleavage.

Antibodies, Monoclonal↗

Supraventricular tachycardia in patients with right hemisphere strokes.

BACKGROUND AND PURPOSE: The physiological basis for the arrhythmias commonly observed after a stroke is not well understood. Based on evidence that the right and left cerebral hemispheres influence cardiac function in different ways, we sought to determine whether the nature and severity of cardiac arrhythmias in the context of an acute stroke vary in relation to whether the stroke is located in the left or the right hemisphere. METHODS: Data were obtained from the medical records of nineteen patients with left hemisphere strokes and nineteen patients with right hemisphere strokes who had also had 24-hour electrocardiographic (Holter) recordings within 2 weeks of admission to a stroke unit. Written Holter monitor reports already on file were used for the data analysis. RESULTS: All four patients with supraventricular tachycardia had right hemisphere strokes (p = 0.05). There was a nonsignificant trend for left hemisphere stroke patients to have more severe ventricular arrhythmias. CONCLUSIONS: These data provide partial support for the hypothesis that the two cerebral hemispheres have a differential influence on the nature and severity of arrhythmias following an acute stroke. We speculate that parasympathetic tone was diminished ipsilateral to the affected hemisphere associated with a reciprocal rise in sympathetic tone on that side and recommend that a prospective study be undertaken to test this hypothesis more definitively.

Arrhythmias, Cardiac↗

Purification of a reconstitutively active K+/H+ antiporter from rat liver mitochondria.

We describe purification of three different states of the 82-kDa K+/H+ antiporter from rat liver mitochondria. The denatured 82-kDa protein, identified by its selective labeling with [14C]dicyclohexylcarbodiimide (DCCD), was purified by preparative two-dimensional gel electrophoresis. This purified product was used to raise and immunopurify monospecific polyclonal antibodies. Western blot analysis showed that the [14C] DCCD-labeled 82-kDa protein is not a DCCD-crosslinked product. The native, [14C]DCCD-labeled, 82-kDa protein was purified by (NH4)2SO4 fractionation and column chromatography, using 14C labeling and gel electrophoresis to track the protein. The native, non-DCCD-labeled 82-kDa protein was purified by similar procedures, using immunopurified antibodies to track the protein. DCCD binding had no effect on chromatographic behavior of the antiporter protein. This protocol resulted in purification of the 82-kDa protein to apparent homogeneity. The purified, native 82-kDa protein was reconstituted into proteoliposomes and assayed for K+ transport with the new fluorescent probe, PBFI. K+ transport was electroneutral and was inhibited by DCCD, Mg2+, and timolol. The turnover number for K+ transport was about 1000 s-1, very similar to the value previously estimated in intact mitochondria.

Animals↗

The Levels of Emotional Awareness Scale: a cognitive-developmental measure of emotion.

The Levels of Emotional Awareness Scale (LEAS) is based on a new cognitive-developmental model of emotional experience. The scale poses evocative interpersonal situations and elicits descriptions of the emotional responses of self and others which are scored using specific structural criteria. Forty undergraduates (20 of each sex) were tested. Interrater reliability and intratest homogeneity of the LEAS were strong. The LEAS was significantly correlated with two measures of maturity: the Washington University Sentence Completion Test (SCT) of Ego Development, and the Parental Descriptions Scale-a cognitive-developmental measure of object representation. In addition, the LEAS correlated positively with openness to experience and emotional range but not with measures of specific emotions, repression or the number of words used in the LEAS responses. These findings suggest that it is the level of emotion, not the specific quality of emotion, that is tapped by the LEAS.

Adult↗

Inverse relationship between defensiveness and lifetime prevalence of psychiatric disorder.

Defensiveness (the tendency not to report unfavorable information about oneself), as measured by the Marlowe-Crowne Social Desirability Scale, has been shown to be inversely correlated with self-reported symptoms. In this family study of depression, direct interviews with 380 subjects combined with relatives' reports revealed a similar inverse relationship between defensiveness and lifetime prevalence of any psychiatric disorder, especially when diagnostic status was most certain and among those at greater risk for psychopathology. The authors conclude that the Marlowe-Crowne scale measures a factor or trait associated with the relative absence of psychiatric disorder, not the underreporting or denial of disorder.

Adult↗