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Biomedical subjects

R Brandt

Publications and source records attributed to R Brandt.

At least 55 records · Page 3Linked to original sources

Two distinct signaling pathways mediate DIF induction of prestalk gene expression in Dictyostelium.

During Dictyostelium development, the differentiation inducing factor (DIF) triggers expression of the prestalk gene ecmB and induces stalk cell differentiation, a form of programmed cell death. The effects of DIF are mediated by a sustained increase in cytosolic Ca2+ levels. The Ca2+ ATPase inhibitor BHQ causes a similar rise in Ca2+ levels and also induces prestalk gene expression. We show here that Ca2+ is a specific intermediate for prestalk gene induction, since BHQ represses transcription of the cAMP-inducible aggregative gene PDE, the postaggregative gene CP2, and the prespore gene D19. The prestalk gene ecmA is also induced by DIF, but induction appears to occur in two steps, which occur within 1 h and after 2 h, respectively. The slow step shows the same kinetics as ecmB induction and similar to ecmB induction, this step is BHQ inducible and requires an initial round of protein synthesis. The fast step does not require protein synthesis and cannot be induced by BHQ. This indicates that in addition to the slow Ca2+-mediated pathway, there is probably a second fast Ca2+-independent signal transduction pathway for DIF.

Animals↗

Differential interactions of MAP2, tau and MAP5 during axogenesis in culture.

The subcellular interactions of the neuronal microtubule-associated proteins tau, MAP2 and MAP5 were determined in cultured rat hippocampal neurons using differential detergent extraction and laser scanning microscopy. Axon development correlated with a transition from a MAP2-actin filament interaction to a MAP2-microtubule association and binding of tau to the distal axon. Tau and MAP2 binding specifically increased in the axon and the minor neurites, respectively. No compartment-specific association of MAP5 was observed. Tau binding preceded the accumulation of microtubules at the distal axon which represented a characteristic event during axogenesis. The data provide evidence for a role of MAP2 in regulating microfilament-microtubule interactions during neurite formation and of tau in organizing microtubules at the distal axon.

Animals↗

Cytoskeletal mechanisms of axon outgrowth and pathfinding.

The use of modern techniques involving gene transfer and functional knock-out strategies has lead to new concepts of the way in which cytoskeletal elements interact to produce the unique morphologies of neurons. This review presents these concepts and discusses their implications for neuronal development, especially with respect to the role of microtubules, microfilaments, and neurofilaments.

Actin Cytoskeleton↗

Aqueous solubilization of transmembrane peptide sequences with retention of membrane insertion and function.

We recently reported that the peptide C-K4-M2GlyR mimics the action of chloride channels when incorporated into the apical membrane of cultured renal epithelial monolayers. C-K4-M2GlyR is one of a series of peptides that were prepared by the addition of lysine residues to the N- or C-terminus of the M2 transmembrane sequence of the brain glycine receptor. This study addresses how such modifications affect physical properties such as aqueous solubility, aggregation, and secondary structure, as well as the ability of the modified peptides to form channels in epithelial monolayers. A graded improvement in solubility with a concomitant decrease in aggregation in aqueous media was observed for the M2GlyR transmembrane sequences. Increases in short-circuit current (I(SC)) of epithelial monolayers were observed after treatment with some but not all of the peptides. The bioactivity was higher for the more soluble, less aggregated M2GlyR peptides. As described in our previous communication, sensitivity of channel activity to diphenylamine-2-carboxylate, a chloride channel blocker, and bumetanide, an inhibitor of the Na/K/2Cl cotransporter, was used to assess changes in chloride selectivity for the different assembled channel-forming peptides. The unmodified M2GlyR sequence and the modified peptides with less positive charge are more sensitive to these agents than are the more highly charged forms. This study shows that relatively insoluble transmembrane sequences can be modified such that they are easier to purify and deliver in the absence of organic solvents with retention of membrane association, insertion, and assembly.

Amino Acid Sequence↗

Functional promiscuity of gene regulation by serpentine receptors in Dictyostelium discoideum.

Serpentine receptors such as smoothened and frizzled play important roles in cell fate determination during animal development. In Dictyostelium discoideum, four serpentine cyclic AMP (cAMP) receptors (cARs) regulate expression of multiple classes of developmental genes. To understand their function, it is essential to know whether each cAR is coupled to a specific gene regulatory pathway or whether specificity results from the different developmental regulation of individual cARs. To distinguish between these possibilities, we measured gene induction in car1 car3 double mutant cell lines that express equal levels of either cAR1, cAR2, or cAR3 under a constitutive promoter. We found that all cARs efficiently mediate both aggregative gene induction by cAMP pulses and induction of postaggregative and prespore genes by persistent cAMP stimulation. Two exceptions to this functional promiscuity were observed. (i) Only cAR1 can mediate adenosine inhibition of cAMP-induced prespore gene expression, a phenomenon that was found earlier in wild-type cells. cAR1's mediation of adenosine inhibition suggests that cAR1 normally mediates prespore gene induction. (ii) Only cAR2 allows entry into the prestalk pathway. Prestalk gene expression is induced by differentiation-inducing factor (DIF) but only after cells have been prestimulated with cAMP. We found that DIF-induced prestalk gene expression is 10 times higher in constitutive cAR2 expressors than in constitutive cAR1 or cAR3 expressors (which still have endogenous cAR2), suggesting that cAR2 mediates induction of DIF competence. Since in wild-type slugs cAR2 is expressed only in anterior cells, this could explain the so far puzzling observations that prestalk cells differentiate at the anterior region but that DIF levels are actually higher at the posterior region. After the initial induction of DIF competence, cAMP becomes a repressor of prestalk gene expression. This function can again be mediated by cAR1, cAR2, and cAR3.

Adenosine↗

Conversion of serine to aspartate imitates phosphorylation-induced changes in the structure and function of microtubule-associated protein tau.

Microtubule-associated protein tau is a neuronal phosphoprotein that promotes microtubule assembly in vitro and has been shown to play a role in the development of axonal morphology. Tau can be phosphorylated in vitro by several kinases, some of which cause a change in the conformation and activities of tau. Here we report the consequences of converting two of the protein kinase A phosphorylation sites (positions 156 and 327), first to alanine to eliminate phosphorylation, and second to aspartate, to mimic phosphorylation. We show that a serine to aspartate mutation at position 327 results in a conformational change similar to that caused by phosphorylation of this residue. This mutation does not affect the activities of tau in microtubule assembly as compared with wild-type tau. However, an additional mutation at position 156 to aspartate drastically decreases the microtubule nucleation activity of tau but does not affect the activity of tau to promote microtubule growth. All constructs are similarly bound to microtubules and promote process formation when expressed in cytochalasin-treated PC12 cells. We conclude that serine to aspartate mutations provide a useful system for analyzing the effect of individual phosphorylation sites on the conformation and function of tau in vitro and in cells. The results provide evidence that microtubule growth and nucleation can be differentially affected by phosphorylation of individual residues in a region amino-terminally flanking the microtubule binding domain of tau.

Animals↗

Cripto enhances the tyrosine phosphorylation of Shc and activates mitogen-activated protein kinase (MAPK) in mammary epithelial cells.

Cripto-1 (CR-1), a recently discovered protein of the epidermal growth factor (EGF) family, was found to interact with a high affinity, saturable binding site(s) on HC-11 mouse mammary epithelial cells and on several different human breast cancer cell lines. This receptor exhibits specificity for CR-1, since other EGF-related peptides including EGF, transforming growth factor alpha, heparin-binding EGF-like growth factor, amphiregulin, epiregulin, betacellulin, or heregulin beta1 that bind to either the EGF receptor or to other type 1 receptor tyrosine kinases such as erb B-3 or erb B-4 fail to compete for binding. Conversely, CR-1 was found not to directly bind to or to activate the tyrosine kinases associated with the EGFR, erb B-2, erb B-3, or erb B-4 either alone or in various pairwise combinations which have been ectopically expressed in Ba/F3 mouse pro-B lymphocyte cells. However, exogenous CR-1 could induce an increase in the tyrosine phosphorylation of 185- and 120-kDa proteins and a rapid (within 3-5 min) increase in the tyrosine phosphorylation of the SH2-containing adaptor proteins p66, p52, and p46 Shc in mouse mammary HC-11 epithelial cells and in human MDA-MB-453 and SKBr-3 breast cancer cells. CR-1 was also found to promote an increase in the association of the adaptor Grb2-guanine nucleotide exchange factor-mouse son of sevenless (mSOS) signaling complex with tyrosine-phosphorylated Shc in HC-11 cells. Finally, CR-1 was able to increase p42(erk-2) mitogen-activated protein kinase (MAPK) activity in HC-11 cells within 5-10 min of treatment. These data demonstrate that CR-1 can function through a receptor which activates intracellular components in the ras/raf/MEK/MAPK pathway.

Animals↗

Metric analysis of threshold spectral sensitivity in the honeybee.

Behavioral spectral sensitivity curves are frequently used to characterize peripheral stages of visual processing. We test specific hypotheses about the physiology underlying honeybee spectral sensitivity by approximating published sensitivity curves with several metric models. The analysis shows that: (1) models assuming no interactions between different receptor types do not explain the behavioral data. Similarly, neither simple luminance mechanism models (sum of receptor excitations), nor models in which only the most sensitive receptor determines sensitivity fit the data. (2) The minimum number of postreceptoral mechanisms mediating discrimination is two. (3) Both mechanisms are of the chromatic type. Adding an achromatic mechanism decreases the accuracy of approximation.

Animals↗

Impact of volume loading and load reduction on ventricular refractoriness and conduction properties in canine congestive heart failure.

OBJECTIVES: This investigations was undertaken to examine the alteration of electrophysiologic properties, including refractoriness, strength-interval relations and conduction, with the development of heart failure and to characterize the impact of volume loading on these indexes in the cardiomyopathic setting. METHODS: Electrophysiologic properties in eight dogs with pacing-induced dilated cardiomyopathy were compared with those in six control dogs before and after rapid infusion of 800 ml of intravenous saline. RESULTS: The right ventricular (RV) and left ventricular (LV) effective refractory period (ERP) and absolute refractory period (ARP) were significantly longer in dogs with pacing-induced cardiomyopathy than in control dogs: RV ERP 181 +/- 11 ms versus 138 +/- 7 ms (mean +/- SD) (p < 0.0001) and anterior LV ERP 177 +/- 13 ms versus 128 +/- 11 ms (p < 0.0001), respectively; ARP 159 +/- 14 ms versus 114 +/- 7 ms (p < 0.0001) at the RV site and 153 +/- 12 versus 117 +/- 5 ms (p < 0.0001) at the anterior LV site. After volume loading in cardiomyopathic animals, posterior and anterior LV ERPs became prolonged to 178 +/- 5 ms (p = 0.004) and 189 +/- 14 ms (p = 0.065), respectively, shifting the strength-interval relation in the direction of longer S1S2 coupling intervals. Anterior LV monophasic action potential durations at 90% repolarization also became prolonged from 192 +/- 10 ms to 222 +/- 23 ms (p < 0.012) with volume loading. These findings were not altered by subsequent sodium nitroprusside. Local conduction times parallel and perpendicular to fiber orientation were not altered by development of cardiomyopathy or volume alterations. CONCLUSIONS: The development of dilated cardiomyopathy results in significant prolongation of refractoriness and repolarization that is increased further by volume augmentation but is not reversed by pharmacologic load reduction. Although these abnormalities may contribute to the environment needed for a non-reentrant, triggered or stretch-mediated arrhythmogenic process in cardiomyopathic states, additional studies will be required to demonstrate such a focal mechanism conclusively.

Action Potentials↗

Evidence for binding of in vitro glycated low-density lipoproteins by fructosyllysine-specific sites on macrophages and U937 monocyte-like cells.

Early development of arteriosclerosis is a main late complication of diabetes mellitus. Although its uptake by LDL receptors is impaired, glycated LDL is thought to play a role in foam cell formation from macrophages. In the present study we show binding of glycated LDL (8-9 mol fructosyllsine/mol apo B) to macrophages and to the monocyte-like cell line U937. The binding involves fructosyllysine-specific binding sites, as well as LDL and scavenger receptors. Fructosyllysine and glycated albumin were competitors for binding of 125I-labelled glycated LDL by macrophages and U937 cells. Scatchard analysis of binding data using a two ligands binding model showed a linear plot with Ka = 2.6 x 10(7) M-1 for U937 cells, which lack scavenger receptors. On U937 cells only the 200 kDa fructosyllysine-specific receptor protein and the 165 kDa LDL receptor were involved in binding glycated LDL as evidenced by ligand blotting. U937 cell uptake and degradation of glycated LDL was mediated by fructosyllysine-specific and LDL receptors. Binding of glycated LDL by macrophages via fructosyllysine-specific sites could be demonstrated in only 6 from 35 rats investigated, indicating that the receptor is not expressed in each individual. Whether the fructosyllysine-specific receptor mediated pathway is relevant for uptake and degradation of glycated LDL in vivo is yet to be determined.

Animals↗

Transferrin isoform distribution: gender and alcohol consumption.

Transferrin (Tf) has different isoforms based on the degree of sialylation of its two N-linked oligosaccharide chains. The least sialylated isoforms of Tf; with 0 (asialo Tf), 1 (monosialo Tf), and 2 (disialo Tf) sialic acids are referred to as carbohydrate-deficient transferrin (CDT). CDT has been reported to be a specific and sensitive marker for the detection and monitoring of alcohol abuse. However, the possible differences between the three CDT isoforms in males and females relative to alcohol consumption has not been known. The present study included 82 males (M) and 43 females (F) with well documented drinking habits. The Tf isoforms were separated by FPLC and measured by RIA in the collected fractions, as well as by a commercially available method (CDTect RIA). The results were expressed as relative values and absolute values. Female low consumers compared to male low consumers had higher levels of asialo Tf (p < 0.01) and monosialo Tf (p < 0.01), but not of disialo Tf or sum of asialo, monosialo, and disialo Tf. Male high consumers and chronic consumers compared to male low consumers had 53% and 219% higher levels of asialo Tf, 4% and 28% higher monosialo Tf, 57% and 148% higher disialo Tf, and 48% and 134% higher sum of CDT isoforms, respectively. The corresponding increases in females were for asialo Tf 68% and 249%, for monosialo Tf 36% and 58%, for disialo Tf 54% and 225%, and for sum of CDT isoforms 52% and 192%, respectively. For both genders, total Tf, trisialo Tf, and the levels of more sialylated transferrin isoforms were constant when comparing the consumption groups. Results expressed as relative values and absolute values were in good agreement. In conclusion, the present study indicates that alcohol consumption strongly increases the levels of asialo Tf and disialo Tf and slightly increases the level of monosialo Tf. However, women had higher asialo Tf and monosialo Tf levels than men. Alcohol consumption does not increase trisialo or more sialyated Tf subfractions. Expressing the CDT results as absolute or relative values made no obvious difference in diagnostic efficiency.

Adult↗

Tau binds to the distal axon early in development of polarity in a microtubule- and microfilament-dependent manner.

Microtubule-associated protein tau is localized to the axon in situ and has been implicated in the development of neuronal polarity. Here we report that tau is extracted differentially in cultured hippocampal neurons yielding an axon-specific localization under conditions that keep the integrity of the plasma membrane. The amount of bound tau increases toward the distal axon and is highest at the transition from the axonal shaft to the growth cone. This distribution is significantly different from the distribution of axonal microtubules that are most concentrated at the proximal axon. Distal binding of tau to one process appears early in development of polarity in culture and correlates with the onset of axon formation (day 2 in culture). Binding to the distal axon requires intact microtubules and microfilaments. Distal tau binding does not stabilize microtubules selectively against drug-induced disassembly, because colchicine-induced microtubule depolymerization is highest distally. We conclude that binding of tau to the distal axon follows a complex mechanism, is an early event in the development of polarity, and reproduces the axon-specific localization of tau in situ.

Actin Cytoskeleton↗

The tau proteins in neuronal growth and development.

The neuronal microtubule-associated protein tau has been implicated as having a role in the outgrowth of neural processes and the development of neuronal polarity. In vitro, tau promotes microtubule assembly, stabilizes cellular microtubules, and affects their dynamic behavior. Antisense experiments using cultured neurons provided evidence for an essential role of tau in the development of axons. However, tau knockout mice turned out to be surprisingly healthy and developed neurons which were functionally and structurally almost normal. This raises the question of how essential tau is for neuronal development. In the first part of this paper, data on the function of tau as a microtubule assembly-promoting and stabilizing factor are reviewed. Then, studies investigating the role of tau in the development of neuronal polarity are discussed. In the last part, recent results which provide evidence for a role of tau not directly related to its activity on microtubule assembly are summarized.

Aging↗

The transition of microglia to a ramified phenotype is associated with the formation of stable acetylated and detyrosinated microtubules.

In situ and in vitro, microglia can have different morphologies, which are thought to reflect distinct physiological activities. Two extreme forms are ameboid and ramified microglia. To study cytoskeletal changes during differentiation, we used defined cell culture systems to yield cultures of ameboid or ramified microglia from mouse brain. With respect to proliferation, secretion, receptor-expression, and phagocytosis, ramified microglia was generally less active. We found that the transition to a ramified phenotype was accompanied by an increase in the relative amount of acetylated and detyrosinated tubulin. Whereas the modified microtubules were restricted to regions close to the microtubule-organizing centers (MTOCs) in ameboid cells, acetylated microtubules were abundant in ramified cells, where they appeared to traverse from one process to another with no apparent anchoring at MTOCs. The increase in acetylated and detyrosinated microtubules was paralleled by an increased stability against nocodazole-induced microtubule disassembly and by a lower rate of change in the length of the processes. Staining of retinal wholemounts confirmed the presence of acetylated microtubules in ramified microglia in situ. We conclude that during the transition of microglia to a ramified phenotype regulated processes exist, which cause a reorganization of microtubules and a change in composition of the microtubule skeleton resulting in a less dynamic and more stable microtubule network. Intracellular factors that are specifically involved in microtubule stabilization in ramified microglia need to be identified in future research and may provide a useful criterion for defining ramified microglia.

Acetylation↗

Differential expression of fructosyllysine-specific receptors on monocytes and macrophages and possible pathophysiological significance.

A differing individual expression of fructosyllysine-specific receptors has been found on the monocytes of 90 insulin-dependent diabetic patients and 101 healthy control subjects. The degree of receptor expression is neither age- nor sex-dependent; however, in the diabetic group it correlates significantly with the severity and age of onset of diabetic microangiopathy. To interpret the results of the human study, spontaneously diabetic and non-diabetic BB/OK rats were used to estimate tissue content of glucose-modified proteins and capillary basement membrane thickness in relation to the receptor expression on macrophages. In non-diabetic and diabetic rats no correlation was found between receptor expression and tissue content (i.e. artery, nerve) of fructosyllsine and fluorescent advanced glycation end products. However, animals which express the fructosyllysine receptor showed a greater increase in muscle capillary basement membrane thickness. There are indications that fructosyllysine receptor expression is positively associated with indices of diabetic complications such as microangiopathy and/or capillary basement membrane thickening.

Adult↗

Comparison of the uptake of retinoids 13-cis-retinoic acid and Ro 13-6298 delivered to HL-60 cells by serum albumin or low-density lipoprotein.

Retinoids, a class of polyisoprenoids including retinol and retinoic acid, regulate and control diverse physiological functions via their cell-differentiating and morphogenic potential. In the present study we showed that the extracellular concentration of retinoid-binding proteins such as albumin limits the amount of retinoid entering the human promyelocytic leukemia cell line HL-60. These cells accumulate 5 -10 times more retinoid when delivered free in solution than when bound to either albumin or low-density lipoprotein (LDL). Moreover. the effect of protein binding is concentration-dependent, with a higher concentration of binding protein corresponding to a lower level of cellular uptake. Furthermore, the uptake of the ester derivative is higher than that of the acidic retinoid. These observations suggest that (a) the cellular uptake of both retinoids occurs via the free form of the ligand in solution, with the free concentration of ligand decreasing as the carrier-protein concentration increases, and (b) according to a passive mechanism, the ester derivative, unionized and lipophilic, enters the cells more easily than does the acidic derivative.

Antineoplastic Agents↗