Search PubMed⌕ Search

Biomedical subjects

L K Anderson

Publications and source records attributed to L K Anderson.

At least 37 records · Page 2Linked to original sources

Structure and light-regulated expression of phycoerythrin genes in wild-type and phycobilisome assembly mutants of Synechocystis sp. strain PCC 6701.

Phycoerythrin is a major pigmented component of the phycobilisome, a cyanobacterial light-harvesting complex. It contains bilin-type chromophores that absorb and transfer light energy to chlorophyll protein complexes of the photosynthetic membranes. In many cyanobacteria, phycoerythrin expression is regulated by light wavelength in a response known as chromatic adaptation. Green light-grown cells contain higher levels of this biliprotein than do cells grown in red light. The phycoerythrin gene set from the unicellular cyanobacterium Synechocystis sp. strain PCC 6701 was cloned and sequenced, and the 5' end of the phycoerythrin mRNA was localized. The amino acid sequences of the phycoerythrin subunits from Synechocystis strain 6701 and Fremyella diplosiphon were 90% identical. As observed in F. diplosiphon, the Synechocystis strain 6701 phycoerythrin transcript accumulated to high levels in green light-grown cells and low levels in red light-grown cells. Similar nucleotide sequences, which might control gene expression, occurred upstream of the transcription initiation sites of the phycoerythrin genes in both organisms. While the phycoerythrin structure and light-regulated transcript accumulation were similar in Synechocystis strain 6701 and F. diplosiphon, the steady-state levels of phycoerythrin subunits during growth in red light were quite different for the two organisms. This observation suggests that control of phycoerythrin levels in Synechocystis strain 6701 is complex and may involve posttranscriptional processes. We also characterized the phycoerythrin genes and mRNA levels in two phycobilisome assembly mutants, UV16-40 and UV16.

Amino Acid Sequence↗

Spreading synaptonemal complexes from Zea mays. I. No synaptic adjustment of inversion loops during pachytene.

Four different inversion heterozygotes of maize were examined for the occurrence of synaptic adjustment. Three substages of pachytene were identified in synaptonemal complex (SC) spreads using side-by-side comparisons of chromosome squashes with two-dimensional spreads of SCs. In SC spreads, inversion loop frequency did not change substantially from early through late pachytene for any of the four inversion heterozygotes examined. In addition, the position and size of the inversion loops remained essentially constant throughout pachytene. These results indicate that synaptic adjustment of inversion loops does not occur during pachytene in Zea mays.

Heterozygote↗

Identification of a membrane skeleton in platelets.

Platelets have previously been shown to contain actin filaments that are linked, through actin-binding protein, to the glycoprotein (GP) Ib-IX complex, GP Ia, GP IIa, and an unidentified GP of Mr 250,000 on the plasma membrane. The objective of the present study was to use a morphological approach to examine the distribution of these membrane-bound filaments within platelets. Preliminary experiments showed that the Triton X-100 lysis buffers used previously to solubilize platelets completely disrupt the three-dimensional organization of the cytoskeletons. Conditions were established that minimized these postlysis changes. The cytoskeletons remained as platelet-shaped structures. These structures consisted of a network of long actin filaments and a more amorphous layer that outlined the periphery. When Ca2+ was present, the long actin filaments were lost but the amorphous layer at the periphery remained; conditions were established in which this amorphous layer retained the outline of the platelet from which it originated. Immunocytochemical experiments showed that the GP Ib-IX complex and actin-binding protein were associated with the amorphous layer. Analysis of the amorphous material on SDS-polyacrylamide gels showed that it contained actin, actin-binding protein, and all actin-bound GP Ib-IX. Although actin filaments could not be visualized in thin section, the actin presumably was in a filamentous form because it was solubilized by DNase I and bound phalloidin. These studies show that platelets contain a membrane skeleton and suggest that it is distinct from the network of cytoplasmic actin filaments. This membrane skeleton exists as a submembranous lining that, by analogy to the erythrocyte membrane skeleton, may stabilize the plasma membrane and contribute to determining its shape.

Actins↗

Mutations that affect structure and assembly of light-harvesting proteins in the cyanobacterium Synechocystis sp. strain 6701.

The unicellular cyanobacterium Synechocystis sp. strain 6701 was mutagenized with UV irradiation and screened for pigment changes that indicated genetic lesions involving the light-harvesting proteins of the phycobilisome. A previous examination of the pigment mutant UV16 showed an assembly defect in the phycocyanin component of the phycobilisome. Mutagenesis of UV16 produced an additional double mutant, UV16-40, with decreased phycoerythrin content. Phycocyanin and phycoerythrin were isolated from UV16-40 and compared with normal biliproteins. The results suggested that the UV16 mutation affected the alpha subunit of phycocyanin, while the phycoerythrin beta subunit from UV16-40 had lost one of its three chromophores. Characterization of the unassembled phycobilisome components in these mutants suggests that these strains will be useful for probing in vivo the regulated expression and assembly of phycobilisomes.

Amino Acids↗

Asymmetrical core structure in phycobilisomes of the cyanobacterium Synechocystis 6701.

The light-harvesting complex of cyanobacteria and red algae, the phycobilisome, has two structural domains, the core and the rods. Both contain biliproteins and linker peptides. The core contains the site of attachment to the thylakoid membrane and the energy transfer link between the phycobilisome and chlorophyll. There are also six rod-binding sites in the membrane-distal periphery of the core. The structure of phycobilisomes in the cyanobacterium Synechococcus 6301 was studied by Glazer, who proposed a model for the internal organization of the bicylindrical core. In the construction of that model, it was necessary to make arbitrary decisions between two possible locations for one of the trimeric protein complexes within a core cylinder and between two possible orientations of the basal core cylinders relative to one another. We isolated the tricylindrical cores from an ultraviolet-light-induced mutant of the cyanobacterium Synechocystis 6701 and obtained, by partial dissociation, a unique core substructure that maintained some contacts between the two basal cylinders. From its structure and spectral properties, we conclude that this particle is a central core substructure that resulted from dissociation of the two layers of peripheral trimers in the intact core. The compositions of this particle and the dissociated trimers were inconsistent with the proposed location of one of the trimers in the 6301 core model, but supported the placement of that trimer in the alternative position within the basal core cylinder. Rod-binding sites within the central core substructure were studied by partial dissociation of the short-rod phycobilisomes from another mutant of 6701. This dissociation generated particles that were interpreted as being central core substructures with the two basal rods attached. The appearance of these particles in the electron microscope suggested that both basal rods would be localized towards the same side of the intact core. Such an asymmetrical arrangement of basal rods is supported by previously published edge-views of intact cores with basal rods from strain 6701. These observations suggest a parallel arrangement of the basal cylinders with respect to each other, creating an asymmetrical core. A phycobilisome model was constructed that incorporated core asymmetry. This model predicts the energy transfer pathways from the basal and upper rods to specific trimers in the core.

Cyanobacteria↗

Anaphylactic reaction during anaesthesia associated with positive intradermal skin test to fentanyl.

A 29 year-old female patient suffered vascular collapse which became apparent immediately after general anaesthesia. Resuscitation was prolonged and difficult, and complicated by the need for reoperation. Based on the time history, fentanyl was suspected as the causative agent. Fentanyl allergy was confirmed by skin testing one month later. The case is discussed, and the possible reasons for the delay in appearance of symptoms and signs are considered.

Adult↗

The influence of nitrous oxide on oxyhaemoglobin dissociation and measurement of oxygen tension.

There are conflicting reports of the effect of nitrous oxide on the oxyhaemoglobin dissociation curve. We have therefore determined P50 of haemoglobin in the presence of either nitrous oxide or nitrogen and studied the upper portion of the curve in greater detail. No significant differences in the oxyhaemoglobin dissociation curve were observed when nitrous oxide was substituted for nitrogen. The oxygen tensions measured in gas mixtures were not significantly different when determined simultaneously with a polarographic oxygen electrode and the mass spectrometer when nitrous oxide was used instead of nitrogen.

Humans↗

Efficacy of digoxin administration in dogs with idiopathic congestive cardiomyopathy.

Digoxin administration (0.22 mg/m2 of body surface BID) to 10 large-breed dogs with congestive cardiomyopathy increased shortening fraction more than 5.5% in 4 of the dogs. This group of dogs lived longer than the group that did not have a positive inotropic response to digoxin. Heart rate decreased in both groups of dogs. Base-line jugular PVO2 were low in all dogs. Jugular PVO2 decreased significantly in the group that did not respond to digoxin, presumably because of decreased cardiac output. Jugular PVO2 consistently increased in dogs that had a positive inotropic response to digoxin. Base-line shortening fraction, heart rate, and PVO2 did not predict which dogs would respond to digoxin. Serum digoxin concentrations were consistently between 1.5 and 2.5 ng/ml. It was concluded that digoxin administration is not efficacious in all dogs with congestive cardiomyopathy and that the positive inotropic response is not predicted by base-line shortening fraction, heart rate, or jugular PVO2. Dogs that do respond to digoxin usually live longer than those that do not. Jugular PVO2 can be used to separate dogs that do respond from dogs that do not respond to digoxin as long as the base-line PVO2 is low. The negative chronotropic effects of digoxin may be detrimental to dogs that do not have a positive inotropic effect from digoxin.

Animals↗

The relationship between genome size and synaptonemal complex length in higher plants.

There appears to be only a weak correlation between genome size and the corresponding total length of a complete set of synaptonemal complexes (SCs) based on published evidence for several fungal, plant, and animal species. This result is unexpected, considering the strong positive correlations between genome size (DNA amount) and total chromosome length and volume and between relative lengths of chromosomes and SCs. Because the observed weak correlation was based on limited data, we systematically investigated the relationship between genome size and SC length, using ten higher plant species. Two-dimensional spreads of SCs from primary microsporocytes at pachytene were prepared using a hypotonic bursting technique. The SC spreads were examined either by light or electron microscopy, and the lengths of at least ten complete sets of SCs were measured for each of the ten species. Additionally, the genome size of each species was determined from pollen tetrad protoplasts using flow cytometry. A strong correlation (r = 0.97) between total SC length and genome size was observed for higher plants, indicating a constant amount of DNA is associated with a given length of SC, at least when averaged over the whole genome.

Chromosomes↗

Myocardial function in small dogs with chronic mitral regurgitation and severe congestive heart failure.

Systolic myocardial function was assessed in 16 dogs with severe congestive heart failure due to chronic mitral valve fibrosis. End-systolic diameters were measured on echocardiograms and end-systolic volume indices were calculated. Thirteen of the 16 dogs (81%) had normal or only mildly abnormal myocardial function. These data suggested that myocardial failure is not a prominent factor contributing to signs of heart failure in dogs with mitral regurgitation. Because of these data, the routine use of digitalis glycosides to increase cardiac contractility is seriously questioned in dogs with heart failure secondary to chronic mitral regurgitation.

Acute Disease↗

Regulation of Nostoc sp. phycobilisome structure by light and temperature.

Nostoc sp. strain MAC cyanobacteria were green in color when grown in white light at 30 degrees C and contained phycobilisomes that had phycoerythrin and phycocyanin in a molar ratio of 1:1. Cells grown for 4 to 5 days in green light at 30 degrees C or white light at 39 degrees C turned brown and contained phycoerythrin and phycocyanin in a molar ratio of greater than 2:1. In addition to the change in pigment composition, phycobilisomes from brown cells were missing a 34.5-kilodalton, rod-associated peptide that was present in green cells. The green light-induced changes were typical of the chromatic adaptation response in cyanobacteria, but the induction of a similar response by growth at 39 degrees C was a new observation. Phycobilisomes isolated in 0.65 M phosphate buffer (pH 7) dissociate when the ionic strength or pH is decreased. Analysis of the dissociation products from Nostoc sp. phycobilisomes suggested that the cells contained two types of rod structures: a phycocyanin-rich structure that contained the 34.5-kilodalton peptide and a larger phycoerythrin-rich complex. Brown Nostoc sp. cells that lacked the 34.5-kilodalton peptide also lacked the phycocyanin-rich rod structures in their phycobilisomes. These changes in phycobilisome structure were indistinguishable between cells cultured at 39 degrees C in white light and those cultured at 30 degrees C in green light. A potential role is discussed for rod heterogeneity in the chromatic adaptation response.

Adaptation, Physiological↗

Pulmonary artery banding for ventricular septal defect in dogs and cats.

Five dogs and 1 cat had pulmonary artery banding for ventricular septal defect and congestive heart failure. An umbilical tape band constricted the pulmonary artery to one-third its original diameter, increased the right ventricular pressure, and decreased the left ot right shunt. Five animals had remission of clinical signs; 1 dog died of right ventricular failure due to a band that had been applied too tightly. The results indicated pulmonary artery banding is helpful in reduction of clinical signs, due to increased flow to the lungs from ventricular septal defect.

Animals↗

Cardiovascular effects of gallamine triethiodide and succinylcholine chloride during halothane anesthesia in the dog.

The cardiovascular effects of gallamine triethiodide and succinylcholine chloride were studied in Beagle dogs during controlled halothane anesthesia. Small but significant increases in heart rate and mean arterial presssure were observed 1 minute after intravenous injection of succinylcholine chloride. Intravenous injection of gallamine triethiodide did not produce significant cardiovascular changes.

Anesthesia, Inhalation↗

Surgical repair of atrial septal defect in a dog.

Atrial septal defect, a relatively rare canine congenital cardiovascular defect, caused syncope during excitement in a 5-year-old male Boxer dog. The defect was successfully repaired by open heart surgery.

Animals↗