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M Simons

Publications and source records attributed to M Simons.

At least 19 recordsLinked to original sources

Production of intracellular amyloid-containing fragments in hippocampal neurons expressing human amyloid precursor protein and protection against amyloidogenesis by subtle amino acid substitutions in the rodent sequence.

A distinguishing feature of Alzheimer's disease (AD) is the deposition of amyloid plaques in brain parenchyma. These plaques arise by the abnormal accumulation of beta A4, a proteolytic fragment of amyloid precursor protein (APP). Despite the fact that neurons are dramatically affected in the course of the disease, little is known about the neuronal processing of APP. To address this question we have expressed in fully mature, synaptically active rat hippocampal neurons, the neuronal form of human APP (APP695), two mutant forms of human APP associated with AD, and the mouse form of APP (a species known not to develop amyloid plaques). Protein expression was achieved via the Semliki Forest Virus system. Expression of wild type human APP695 resulted in the secretion of beta A4-amyloid peptide and the intracellular accumulation of potential amyloidogenic and non-amyloidogenic fragments. The relative amount of amyloid-containing fragments increased dramatically during expression of the clinical mutants, while it decreased strongly when the mouse form of APP was expressed. 'Humanizing' the rodent APP sequence by introducing three mutations in the beta A4-region also led to increased production of amyloid peptide to levels similar to those obtained with human APP. The single Gly601 to Arg substitution alone was sufficient to triple the ratio of beta A4-peptide to non-amyloidogenic p3-peptide. Due to the capacity of these cells to secrete and accumulate intracellular amyloid fragments, we hypothesize that in the pathogenesis of AD there is a positive feed-back loop where neurons are both producers and victims of amyloid, leading to neuronal degeneration and dementia.(ABSTRACT TRUNCATED AT 250 WORDS)

Alzheimer Disease

Two-dimensional gel mapping of the processing of the human amyloid precursor protein in rat hippocampal neurons.

The proteolytic fragments derived from the amyloid precursor protein (APP) in primary cultures of rat hippocampal neurons were analyzed by two-dimensional gel electrophoresis. The Semliki Forest Virus expression vector was used to express human APP695 and a mutant form associated with familial Alzheimer's disease (APP-FAD670/671). Hippocampal neurons expressing wtAPP695 or APP-FAD670/671 secrete at least six APP fragments of 100-110 kDa with isoelectric focusing points ranging from 4.5 to 4.0. The heterogeneity of the secreted APP forms is shown to be in part due to differences in glycosylation. In contrast to wtAPP695, neurons producing the APP-FAD670/671 variant did not secrete detectable amounts of secretory APP derived from cleavage within the amyloid beta A4 domain. This result suggests that there is little alpha-secretase cleavage in neurons expressing the APP-FAD670/671 mutant.

Alzheimer Disease

Intracellular routing of human amyloid protein precursor: axonal delivery followed by transport to the dendrites.

A characteristic neuropathological feature of Alzheimer's disease is the cerebral deposition of amyloid plaques. These deposits contain beta A4 amyloid peptide, a cleavage product of the transmembrane protein amyloid protein precursor (APP). Despite numerous studies on the processing of the different APP isoforms in non-neuronal cells, little is known about its sorting and transport in neurons of the central nervous system (CNS). To analyze this question we expressed in cultured rat hippocampal neurons the human APP 695, tagged at its N-terminus with the myc epitope, using the Semliki forest virus (SFV) expression system. APP was first delivered from the cell body to the axon and later appeared also in the dendrites. Inhibition of protein synthesis at the time of axonal expression did not block the late appearance of the protein in the dendrites. An antibody directed against the myc tag, bound to the cell surface at 4 degrees C at the time of axonal APP expression, could be chased to the dendritic domain after subsequent incubation at 37 degrees C. These results suggest that the newly synthesized APP, after initial axonal delivery, may be transported to the dendrites by a transcytotic mechanism. The routing of APP in polarized neurons is different from that of polarized epithelial cells, in which the protein is delivered basolaterally, arguing for neuronal specific sorting and processing mechanisms.

Amino Acid Sequence

Beta-adrenergic modulation of the collateral-dependent coronary microcirculation.

The effect of chronic, collateral-dependent perfusion on beta-adrenergic coronary microvascular responses was examined. Ameroid constrictors were placed on the proximal left circumflex (LCx) coronary artery in 16 pigs. In 8 pigs, heparinized saline containing vascular endothelial growth factor (VEGF) was administered into the perivascular space of the proximal LCx artery using an implanted osmotic pump. After 5-7 weeks, coronary arterial microvessels (70-150 microns) were studied in a pressurized (40 mm Hg) no-flow state with video-microscopy. beta-Adrenoceptor-mediated relaxations of isolated microvessels from the collateral-dependent LCx region to isoproterenol (P < 0.01) were markedly reduced, as were those to the adenylate cyclase activator forskolin (P < 0.01), compared to the respective response of vessels from the normally perfused left anterior descending artery region. Responses to the Gs-protein activator NaF showed a similar trend, but the differences were not significant. Chronic treatment with VEGF normalized responses to isoproterenol, NaF, and forskolin in the collateral-dependent LCx region. Blood flow in the LCx region increased in both control (P < 0.01) and VEGF-treated (P < 0.05) groups during rapid atrial pacing. The absolute increase in LCx blood flow was greater in the VEGF group than in the control group at rest (P < 0.05), but not during rapid pacing. Thus, beta-adrenergic microvascular relaxation is impaired in the collateral-dependent coronary microcirculation. The periadventitial delivery of VEGF improves myocardial perfusion to the collateral-dependent area and preserves beta-adrenergic-mediated relaxation of microvessels in the collateral-dependent myocardium.

Animals

Magnetic resonance mapping demonstrates benefits of VEGF-induced myocardial angiogenesis.

Coronary occlusive disease is the leading cause of death in industrial nations and affects one in four adults. Although heart attacks are caused by occlusion of a coronary artery, some patients have occlusions without infarction because they have sufficient collateral vessels providing an alternate pathway for blood supply. Vascular endothelial growth factor (VEGF) is an angiogenic peptide that can stimulate collateral vessel development in the ischaemic myocardium. We used magnetic resonance imaging (MRI) and image processing to identify and quantify non-invasively the benefits related to VEGF infusion on collateral development in the heart. This was accomplished as a placebo-controlled study in the porcine model of chronic ischaemia that most closely mimics the human pathophysiology of progressive coronary occlusion. Image series converted to a space-time map demonstrated that with treatment the ischaemic zone was smaller and the contrast arrival delay was less, which resulted in better ejection fraction and regional wall thickening. These findings demonstrate in a manner applicable to humans, that VEGF improves collateral blood supply, resulting in improved cardiac global and regional function after and in spite of coronary artery occlusion.

Angiogenesis Inducing Agents

c-myb affects intracellular calcium handling in vascular smooth muscle cells.

The protooncogene c-myb is responsible for elevating intracellular calcium concentration ([Ca2+]i) at the G1/S interface in vascular smooth muscle cells (VSMC). However, the molecular components of this pathway are undefined, and the biological effects of increased levels of divalent cation are unknown. We have demonstrated that growth-arrested c-myb-transfected VSMC, compared with wild type VSMC, exhibit a fourfold increased number of insulin-like growth factor I (IGF-I) receptors, increased amount of secreted IGF-I activity, and a twofold increased level of [Ca2+]. The c-myb transfected cells, compared with wild type cells, also possess a twofold increased rate of calcium influx and a twofold decreased rate of calcium efflux. The elevated calcium influx rate of transfected cells is decreased to that of wild type cells with IGF-I neutralizing antibody, whereas the decreased calcium efflux rate of transfected cells is increased to that of wild type cells with antisense c-myb oligonucleotides. Proliferating wild type VSMC exhibit an increased calcium influx rate in late G1, which is dependent on production of augmented amounts of IGF-I activity but not increased levels of IGF-I receptors. The wild type VSMC also show a decreased calcium efflux rate at the same point in the cell cycle, which is dependent on expression of c-myb. The treatment of wild type cells with antisense c-myb or IGF-I receptor oligonucleotides induces a late G1 block in cell proliferation, which can be overcome by exposure to the calcium ionophore, 4-bromo-A-27318, in amounts sufficient to raise [Ca2+]i to levels observed at the G1/S interface. We conclude that IGF-I/IGF-I receptors and c-myb are involved in control of [Ca2+]i at the G1/S interface by separately regulating the rates of calcium influx and efflux and that elevated levels of divalent cation are necessary for progression of VSMC into the S phase of the cell cycle.

Animals

c-myc in vasculoproliferative disease.

Antisense oligonucleotides to genes central to cellular proliferation have suppressed smooth muscle cell growth in vitro and in vivo. We now report that although the response of cultured smooth muscle cells to antisense oligonucleotides to c-myc and c-myb is identical, the response of the injured arterial wall to these oligomers depends on the kinetics of gene expression and oligonucleotide delivery. Two different antisense oligonucleotides to each oncogene were administered to the perivascular aspect of injured rat carotid arteries via polymer-based delivery systems. The acute release of antisense oligonucleotides from the Pluronic gels reduced in vitro cell growth 54.8% with c-myc and 56.9% with c-myb. The more sustained release from ethylene vinyl acetate copolymer (EVAc) matrices was slightly less efficient, inhibiting proliferation 47.3% and 43.3%, respectively. However, although both EVAc and Pluronic release of c-myb antisense oligonucleotide sequences inhibited intimal hyperplasia 2 weeks after injury, only the more prolonged EVAc matrix release of antisense oligonucleotide to c-myc was effective. The failure of the short course of c-myc oligomer release from Pluronic gels stemmed from early successful suppression with late loss of regulation and not from inactivation of the antisense oligonucleotide within the polymeric gel. Within 24 hours of injury, Pluronic-based release of c-myc antisense oligomers reduced mRNA levels in the tunica media 2.5-fold and immunocytochemical identification of c-myc expression by 98.8%. As a result, the number of proliferating cells was decreased 6.5-fold 3 days after injury.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Correlation approach to identify coding regions in DNA sequences.

Recently, it was observed that noncoding regions of DNA sequences possess long-range power-law correlations, whereas coding regions typically display only short-range correlations. We develop an algorithm based on this finding that enables investigators to perform a statistical analysis on long DNA sequences to locate possible coding regions. The algorithm is particularly successful in predicting the location of lengthy coding regions. For example, for the complete genome of yeast chromosome III (315,344 nucleotides), at least 82% of the predictions correspond to putative coding regions; the algorithm correctly identified all coding regions larger than 3000 nucleotides, 92% of coding regions between 2000 and 3000 nucleotides long, and 79% of coding regions between 1000 and 2000 nucleotides. The predictive ability of this new algorithm supports the claim that there is a fundamental difference in the correlation property between coding and noncoding sequences. This algorithm, which is not species-dependent, can be implemented with other techniques for rapidly and accurately locating relatively long coding regions in genomic sequences.

Algorithms

Basic FGF enhances endothelium-dependent relaxation of the collateral-perfused coronary microcirculation.

The effect of chronic, periadventitial administration of basic (b) fibroblast growth factor (FGF) on endothelial dysfunction in the collateral-dependent and normally perfused coronary microcirculation was examined. Ameroid constrictors were placed on the proximal left circumflex coronary artery (LCX) in 23 pigs. In 11 pigs, bFGF was released from calcium alginate microcapsules into the perivascular space of the proximal left anterior descending coronary artery (LAD) and LCX. After 5-8 wk, coronary arterial microvessels (80-170 microns) were studied in a pressurized (40 mmHg) no-flow state with video microscopy. Receptor-mediated endothelium-dependent relaxations to ADP and serotonin were reduced while contraction to acetylcholine was enhanced in the collateral-dependent LCX microvessels of non-bFGF-treated control hearts. Relaxation of vessels to the non-receptor-mediated, endothelium-dependent agent A-23187; endothelium-independent relaxation to nitroprusside; and contraction to KCl were similar in all groups. Chronic treatment with bFGF normalized responses to ADP, serotonin, and acetylcholine in the collateral-dependent LCX region but had no effect on the responses of vessels in the normally perfused LAD region. Arteriolar density in the collateral-perfused LCX region of bFGF-treated hearts was markedly increased (4-fold compared with that in untreated hearts, suggesting a link between the angiogenic effect of bFGF and its action on endothelial preservation. Thus the periadventitial, sustained delivery of bFGF preserves receptor-mediated, endothelium-dependent responses in the collateral-dependent LCX region but has no effect on responses of microvessels in the normally perfused LAD region or on non-receptor-mediated endothelium-dependent relaxation.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5

Antisense proliferating cell nuclear antigen oligonucleotides inhibit intimal hyperplasia in a rat carotid artery injury model.

We have used antisense phosphorothioate oligonucleotides to define the role played by proliferating cell nuclear antigen (PCNA) in neointimal accumulation of smooth muscle cells in a rat carotid artery injury model. The short-term extraluminal delivery of 250 nmol of antisense oligonucleotides, but not control oligonucleotides, immediately after arterial injury produces a 77% suppression of PCNA mRNA after 24 h and a 52% decrease in the frequency of medial smooth muscle cells expressing PCNA after 72 h. This reduction in PCNA expression is accompanied by a 59% decrease in the frequency of proliferating medial smooth muscle cells at 3 d as measured by BudR staining and an 80% decrease in neointimal accumulation assessed morphometrically at 2 wk. Thus, the expression of PCNA is required for medial smooth muscle cell growth in vivo and for neointimal formation after arterial injury.

Animals

Basic fibroblast growth factor improves myocardial function in chronically ischemic porcine hearts.

The effect of basic fibroblast growth factor (bFGF) administration on regional myocardial function and blood flow in chronically ischemic hearts was studied in 26 pigs instrumented with proximal circumflex coronary artery (LCX) ameroid constrictors. In 13 animals bFGF was administered extraluminally to the proximal left anterior descending (LAD) and LCX arteries with heparin-alginate beads and 13 other animal served as controls. bFGF-treated pigs showed a fourfold reduction in left ventricular infarct size compared to untreated controls (infarct size: 1.2 +/- 0.4% vs. 5.1 +/- 1.3% of LV mass, mean +/- SEM, P < 0.05). Percent fractional shortening (% FS) in the LCX area at rest was reduced compared with the LAD region in both bFGF and control pigs. However, there was better recovery in the LCX area after rapid pacing in bFGF-treated pigs (% FSLCX/% FSLAD, 22.9 +/- 7.3%-->30.5 +/- 8.5%, P < 0.05 vs. prepacing) than in controls (16.0 +/- 7.8%-->14.3 +/- 7.0%, P = NS). Furthermore, LV end-diastolic pressure rise with rapid pacing was less in bFGF-treated than control pigs (pre-pacing; pacing; post-pacing, 10 +/- 1; 17 +/- 3; 11 +/- 1* mmHg vs 10 +/- 1; 24 +/- 4; 15 +/- 1 mmHg, *P < 0.05 vs. control). Coronary blood flow in the LCX territory (normalized for LAD flow) was also better during pacing in bFGF-treated pigs than in controls. Thus, periadventitial administration of bFGF in a gradual coronary occlusion model in pigs results in improvement of coronary flow and reduction in infarct size in the compromised territory as well as in prevention of pacing-induced hemodynamic deterioration.

Animals

Relation between activated smooth-muscle cells in coronary-artery lesions and restenosis after atherectomy.

BACKGROUND: Neointimal proliferation leading to restenosis frequently develops after coronary angioplasty. This process is associated with a change in vascular smooth-muscle cells from a contractile (quiescent) phenotype to a synthetic or proliferating (activated) one. We investigated whether the presence of activated smooth-muscle cells in coronary lesions at the time of coronary atherectomy predisposes patients to subsequent restenosis. METHODS: We used in situ hybridization to study the expression of messenger RNA in coronary-atherectomy specimens from 20 patients. Plaque material was hybridized with a probe for the B isoform of human nonmuscle myosin heavy chain, a major nonmuscle myosin isoform in activated, but not quiescent, smooth-muscle cells. Angiographic follow-up data were obtained a mean (+/- SD) of 174 +/- 54 days after atherectomy in 16 of the 20 patients, and the extent of recurrent luminal narrowing was analyzed quantitatively. The presence of restenosis was assessed by exercise thallium scintigraphy in the other four patients. RESULTS: Atherectomy specimens from 10 of the 20 patients showed hybridization with the probe, defined as the clustering of more than 20 silver grains per cell nucleus in more than 10 nuclei in five high-power fields (x250); specimens from the other 10 patients showed no such hybridization. At follow-up, restenosis had developed in 8 of the 10 patients with positive hybridization results, but was absent in 9 of the 10 patients with negative results (P = 0.007). The degree of late loss in luminal diameter was significantly higher in patients with positive hybridization results than in those with negative results (ratio of late loss to immediate gain after atherectomy, 0.76 +/- 0.3 vs. 0.36 +/- 0.3; P < 0.001). CONCLUSIONS: We conclude that the expression of the B isoform of nonmuscle myosin heavy chain is increased in some coronary atherosclerotic plaques and that this increase in expression identifies a group of lesions at high risk for restenosis after atherectomy.

Adult

The proto-oncogene c-myb mediates an intracellular calcium rise during the late G1 phase of the cell cycle.

The intracellular concentration of ionized calcium is involved in regulating mitosis. However, little is known about intracellular levels of calcium during G1. We have demonstrated in vascular smooth muscle cells a mid-G1 decrease in ionized calcium concentration followed by a 2-fold rise at the G1/S interface (44 nM +/- 0.6 nM versus 98 nM +/- 1.1 nM, p < 0.01). The elevation of intracellular calcium is preceded by an increase in c-myb mRNA levels and is abolished with antisense but not missense c-myb oligonucleotides. Furthermore, cells stably transfected with c-myb show a similar 2-fold augmentation in intracellular calcium concentrations, as compared with untransfected cells, which is also abolished by antisense c-myb oligonucleotides. The c-myb-induced rise in intracellular calcium is dependent upon the presence of extracellular calcium and is not suppressed by L type calcium channel blockers. We conclude that c-myb induces an elevation in intracellular calcium levels of vascular smooth muscle cells at the G1/S interface which provides a novel role for this proto-oncogene as well as a potentially important control point for cell cycle regulation.

Animals

A comparison of iodine-123 meta-iodobenzylguanidine scintigraphy and single bone marrow aspiration biopsy in the diagnosis and follow-up of 26 children with neuroblastoma.

In staging neuroblastomas, the demonstration of tumoural invasion of the bone marrow is an important criterion with regard to the therapeutic prospects and the prognosis. Iliac crest aspiration sampling has been used routinely for the detection of bone marrow metastases in neuroblastoma. However, due to the limited character of the sampling, it sometimes leads to false-negative results. Another procedure which is used to determine the extent of neuroblastoma is metaiodobenzylguanidine (mIBG) scintigraphy. In order to establish the respective merits of both diagnostic techniques retrospectively, 148 iodine-123 mIBG scans of 26 children with neuroblastoma have been re-evaluated and compared with the results of routine bone marrow samples obtained within a 4-week period before or after scanning. Three types of mIBG uptake in the bone/bone marrow could be differentiated: (1) no visualization of the skeleton; (2) diffuse uptake in the skeleton with or without focally increased uptake, which indicates massive, diffuse bone marrow invasion by the tumour; and (3) focal tracer accumulation in one or several bones. No tracer uptake was observed in the skeleton in 91 scans. In 89 of the 91 the bone marrow biopsy was negative. Twenty-four scans showed diffuse skeletal uptake with or without foci. The bone marrow biopsies were negative for eight of those 24 scans. Hyperactive foci in one or more bones without diffuse tracer accumulation in the skeleton were detected in 33 scans. In only 7 of these 33 scans did bone marrow biopsy specimens from the iliac MDP crest contain neuroblastoma cells.(ABSTRACT TRUNCATED AT 250 WORDS)

3-Iodobenzylguanidine

Characterization of 4AOHW cell line panel including new data for the 10IHW panel.

There will be a continuing need for well characterized panels of EBV-transformed lymphoblastoid cell lines. Selection of the 4AOH panel was based on prior MHC typing and was intended to ensure representation of ancestral haplotypes from various racial groups. Cells from nonhuman primates, bone marrow donor-recipient pairs, and patients with IDDM were included. Selected cells from the 10IHW were included to enable further characterization. Cells were distributed to participants in the 4AOHW and were typed at multiple loci by a variety of procedures. Non-HLA genes such as TNF were included. Since the cells were distributed "blind" with hidden replicates, it was possible to evaluate the quality of the typing data. An approach to data management is described. The best current estimates of the typing of these cells are presented. The panel will be useful since it provides standards for most alleles at most loci. Since the cells are so well characterized, they represent a useful resource for MHC sequencing and for the evaluation of new typing procedures.

Alleles