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L Collins

Publications and source records attributed to L Collins.

At least 55 records · Page 3Linked to original sources

Dissection of the pH dependence of inhibitor binding energetics for an aspartic protease: direct measurement of the protonation states of the catalytic aspartic acid residues.

The catalytic activity and inhibitor binding energetics of enzymes are often pH-dependent properties. Aspartic proteases comprise an important class of enzyme targets for structure-based drug design. We have performed a complete thermodynamic study of pepstatin binding to plasmepsin II, an aspartic proteinase found in Plasmodium falciparum, using isothermal titration calorimetry and circular dichroism. Thermodynamic parameters (DeltaG, DeltaH, DeltaCp, and DeltaS) were measured as functions of both pH and temperature. In the pH range from 4.5 to 7.0, pepstatin binding is accompanied by proton transfer between the solvent and the complex. We used thermodynamic proton linkage theory to derive both the pH-independent binding energetics for pepstatin and the number and pKa values of ionizable residues whose pKa values change during ligand binding. These residues were identified as the two catalytic aspartates, with pKas of 6.5 and 3.0, and His 164, with a pKa of 7.5, based on the three-dimensional structure of the pepstatin-plasmepsin II complex. At pH 5.0, where the protease has optimum activity, the proton transfer process contributes almost 40% of the total binding free energy change and the total charge of the active-site aspartic acid residues is -1. These experimental results provide direct measurement for the protonation states of the catalytic aspartates in the presence of bound ligands. Comparison of the thermodynamic and structural data for pepstatin binding with human cathepsin D, a lysosomal aspartic protease that shares 35% sequence identity with plasmepsin II, suggests that the energetic differences between these two proteins are due to a higher interdomain flexibility in plasmepsin II.

Animals↗

A nonviral vector system for efficient gene transfer to corneal endothelial cells via membrane integrins.

BACKGROUND: Genetic manipulation of allografts to suppress their ability to induce rejection is a promising approach for controlling rejection responses. A key to this approach is the development of appropriate DNA vectors. We are developing nonviral DNA vector systems based on synthetic peptides containing an integrin-binding segment for cellular targeting and a polylysine segment for DNA binding. METHODS: Two such peptides have been tested for their ability to deliver the beta-galactosidase reporter gene to the corneal endothelial cells of the rabbit, pig, and man. One peptide was derived from a phage display library, the other from the integrin-binding moiety of the toxin from the American pit viper, Crotalus molossus molossus. Corneas were cultured overnight and then exposed to the DNA/peptide vector under a variety of conditions involving different DNA concentrations, chloroquine concentrations, times of exposure, presence of serum, and presence of polyanion buffers. Expression of the beta-galactosidase gene was determined after 3 additional days in culture. Effects of the treatment on the viability of the endothelium were examined by confocal microscopy. RESULTS: We report that approximately 30% of corneal endothelial cells can be transfected with our optimal protocol using the molossin-based vector. Transfection is dependent on the presence of chloroquine and is inhibited by polyanion buffers such as HEPES. Viability of the corneal endothelium was excellent, except if corneas were incubated at high concentrations of chloroquine (0.5 mM) for prolonged periods (24 hr). CONCLUSIONS: Synthetic peptides containing both an integrin targeting and a DNA-binding moiety are promising as simple and highly versatile DNA vectors for use in corneal transplantation.

Animals↗

Co-ordinate regulation of the cytoskeleton in 3T3 cells overexpressing thymosin-beta4.

In several cell types, short-term increases in the concentration of the G-actin-sequestering peptide thymosin-beta4 (Tbeta4) cause the disassembly of F-actin bundles. To determine the extent of cell adaptability to these reductions in F-actin, we overexpressed Tbeta4 in NIH 3T3 cells. In cell lines with Tbeta4 levels twice those of vector controls, G-actin increased approximately twofold as expected. However, F-actin did not decrease as in short-term experiments but rather also increased approximately twofold so that the G-F ratio remained constant. Surprisingly, the cytoskeletal proteins myosin IIA, alpha-actinin, and tropomyosin also increased nearly twofold. These increases were specific; DNA, total protein, lactic dehydrogenase, profilin, and actin depolymerizing factor levels were unchanged in the overexpressing cells. The Tbeta4 lines spread more fully and adhered to the dish more strongly than vector controls; this altered phenotype correlated with a twofold increase in talin and alpha5-integrin and a nearly threefold increase in vinculin. Focal adhesions, detected by indirect immunofluorescence with antivinculin, were increased in size over the controls. Northern blotting showed that mRNAs for both beta-actin and vinculin were increased twofold in the overexpressing lines. We conclude that 1) NIH 3T3 cells adapt to increased levels of G-actin sequestered by increased Tbeta4 by increasing their total actin so that the F-actin/G-actin ratio remains constant; 2) these cells coordinately increase several cytoskeletal and adhesion plaque proteins; and 3) at least for actin and vinculin, this regulation is at the transcriptional level. We therefore propose that the proteins of this multimember interacting complex making up the actin-based cytoskeleton, are coordinately regulated by factors that control the expression of several proteins. The mechanism may bear similarities to the control of synthesis of another multimember interacting complex, the myofibril of developing muscle cells.

3T3 Cells↗

Integrin-mediated transfection with peptides containing arginine-glycine-aspartic acid domains.

Two synthetic peptides comprising an RGD moiety for integrin binding and a polylysine moiety for DNA binding were tested for transfection efficiency under a variety of different conditions. Binding of target cells to the peptide was shown to be strongly dependent on cyclisation of the peptides via cysteine residues. Low (10 microM) concentrations of chloroquine, added to assist endocytic exit, unexpectedly reduced transfection efficiency in two of the cell lines tested. COS-7 and ECV304. However, transfection efficiency increased at higher chloroquine concentrations and exceeded that in the absence of chloroquine in the case of the COS-7 and A375M cell lines. With the ECV304 cell line, optimum transfection occurred in the absence of chloroquine. Transfection efficiency of the peptides was greatest at peptide:DNA ratios of 4:1 (w/w), which were calculated to generate complexes containing approximately 5000 peptide molecules per plasmid. This represented approximately a 6:1 ratio of positive to negative charges. Peptide 5 was shown to have a higher transfection efficiency under most conditions, possibly because of more efficient stabilisation of cyclisation by two cysteine-cysteine bonds.

Animals↗

Microplate alamar blue assay versus BACTEC 460 system for high-throughput screening of compounds against Mycobacterium tuberculosis and Mycobacterium avium.

In response to the need for rapid, inexpensive, high-throughput assays for antimycobacterial drug screening, a microplate-based assay which uses Alamar blue reagent for determination of growth was evaluated. MICs of 30 antimicrobial agents against Mycobacterium tuberculosis H37Rv, M. tuberculosis H37Ra, and Mycobacterium avium were determined in the microplate Alamar blue assay (MABA) with both visual and fluorometric readings and compared to MICs determined in the BACTEC 460 system. For all three mycobacterial strains, there was < or = 1 dilution difference between MABA and BACTEC median MICs in four replicate experiments for 25 to 27 of the 30 antimicrobics. Significant differences between MABA and BACTEC MICs were observed with 0, 2, and 5 of 30 antimicrobial agents against H37Rv, H37Ra, and M. avium, respectively. Overall, MICs determined either visually or fluorometrically in MABA were highly correlated with those determined in the BACTEC 460 system, and visual MABA and fluorometric MABA MICs were highly correlated. MICs of rifampin, rifabutin, minocycline, and clarithromycin were consistently lower for H37Ra compared to H37Rv in all assays but were similar for most other drugs. M. tuberculosis H37Ra may be a suitable surrogate for the more virulent H37Rv strain in primary screening of compounds for antituberculosis activity. MABA is sensitive, rapid, inexpensive, and nonradiometric and offers the potential for screening, with or without analytical instrumentation, large numbers of antimicrobial compounds against slow-growing mycobacteria.

Anti-Bacterial Agents↗

Pathways and roadblocks in muscarinic receptor-mediated growth regulation.

In some cell systems muscarinic receptor stimulation can induce proliferation or transformation. This phenomenon is subtype-specific (only m1 and m3 receptors are effective) and cell type dependent. In 1321N1 astrocytoma cells activation of m3 receptors stimulates phospholipase C, but does not induce DNA synthesis. In contrast the thrombin receptor, which also couples to phospholipase C, is strongly mitogenic and induces AP-1-dependent gene expression. Various experimental findings indicate that this discrepancy is not due to muscarinic receptor desensitization or blockade of growth stimulatory pathways. Muscarinic receptor number may be limiting, in particular for receptor coupling to the pertussis toxin-insensitive G-protein G12. This G-protein is required for thrombin-induced mitogenesis in 1321N1 cells and may couple selectively to the thrombin versus muscarinic receptor. In cardiomyocytes hypertrophic cell growth is induced by heterologously expressed m1 or m3 receptors but not by the endogenous m2 receptors. Studies using chimeric receptors confirm that induction of hypertrophy requires signalling through phospholipase C, but indicate that additional signals are needed to induce the morphological features of this response. We suggest that small G-proteins of the Rho subfamily, in addition to G12, mediate growth responses to G-protein-coupled receptors.

Animals↗

Parallel hole collimator acceptance tests for SPECT and planar studies.

Several methods of determining gamma-camera collimators hole alignment and integrity were compared. Four collimators were tested: two new cast collimators and two used foil collimators, one with damage to the protective surface. The most sensitive tests for collimator damage were found to be the collimated x-ray source, COR offset test and collimator hole alignment test.

Biophysical Phenomena↗

Defective B cell development in Snell dwarf (dw/dw) mice can be corrected by thyroxine treatment.

Snell dwarf (dw/dw) mice are deficient in anterior pituitary hormones due to a mutation in the gene encoding the Pit-1 transcription factor. Bone marrow B cell development is also suppressed in the mice, providing circumstantial evidence that one or more anterior pituitary-derived products, or factors induced by them, are required for normal B lymphopoiesis. However, concluding that this is the case is dependent on showing that hormonal treatment of dwarf mice reverses their B cell defects. dw/dw mice were treated with growth hormone (GH), insulin-like growth factor-I (IGF-I), or thyroxine in an attempt to restore bone marrow B lymphopoiesis. GH and IGF-I increased the number of B lineage cells in the bone marrow and spleen but did not restore the frequency of bone marrow pre-B cells to normal. However, bone marrow cellularity in thyroxine-treated dw/dw mice was comparable to that in control animals, and both the frequency and absolute number of B lineage cells had increased to normal or even above normal. Taken together, these data indicate that endocrine factors, especially those regulated by the hypothalamic-pituitary-thyroid axis, are potent B lymphopoietic factors.

Animals↗

Natural versus chorionic gonadotropin-induced ovarian responses in the clouded leopard (Neofelis nebulosa) assessed by fecal steroid analysis.

The clouded leopard (Neofelis nebulosa) is an endangered species difficult to propagate in captivity because of sexual incompatibility between paired individuals. Fecal estradiol (E2) and progesterone (P4) metabolites were quantified in 14 females to noninvasively monitor seasonal reproductive patterns and compare ovarian responses to natural mating vs. exogenous gonadotropins. Increased E2 excretion was associated with behavioral estrus or eCG treatment, whereas elevated P4 metabolites were observed during natural and hCG-induced pregnant and nonpregnant luteal phases. On the basis of fecal E2 profiles, duration of the estrous cycle was 24 +/- 2 days, with estrus lasting 6 +/- 1 days. Mean gestation length was 89 +/- 2 days, whereas duration of the nonpregnant luteal phase was 47 +/- 2 days. Females experienced a seasonal anestrus during the late summer and early fall. One female demonstrated a lactational anestrus after the birth of three cubs. On nine occasions, clouded leopards ovulated spontaneously (based on elevated fecal P4 metabolite concentrations) in the absence of mating. Patterns of eCG-stimulated E2 excretion were similar to those associated with natural estrus and were unaffected by eCG dosage (25, 50, or 100 IU). In contrast, post-hCG P4 metabolite profiles varied considerably, with responses including anovulation, attenuated luteal P4 metabolite production, and hyperstimulated luteal function. In some females, compromised luteal function after ovulation induction appeared to be due to the presence of mature CL from previous spontaneous (without copulation) ovulations at the time of gonadotropin treatment. Duration of post-hCG P4 metabolite excretion was reduced approximately 40% in these individuals compared to females with no evidence of active luteal activity. In sum, these are the first data describing the ovarian cycle of this endangered species. The information is important because it is based on the longitudinal assessment of multiple females using a completely atraumatic approach, thereby eliminating the potential confounding impact of stress. Data indicate that spontaneous ovulations and the presence of active luteal tissue on the ovary can profoundly affect ovarian responses to exogenous gonadotropin therapy. Therefore, fecal steroid monitoring can serve as a useful adjunct to developing assisted reproduction techniques, especially the hormonal induction of ovulation for planned artificial insemination.

Animals↗

The incidence of venous emboli during extramedullary guided total knee arthroplasty.

During total knee arthroplasty (TKA), instrumentation of the marrow cavity with an intramedullary guide appears responsible for fatal intraoperative pulmonary embolism. Transesophageal echocardiography demonstrates venous emboli (VE) after tourniquet deflation during intramedullary guided TKA. Extramedullary guides avoid manipulating the marrow cavity. We determined the incidence of VE in 20 patients undergoing extramedullary guided TKA. Recordings of hemodynamic variables, mixed venous oximetry, end-tidal CO2 and N2 tensions, and echocardiograph images occurred after induction of anesthesia, after tourniquet inflation, during cementing, and for 15 min after tourniquet deflation. Large VE appeared in 14 patients and small VE in the other 6 patients. Large VE occurred only after deflation of the tourniquet. Beginning 3 min after tourniquet deflation, mean pulmonary arterial pressures increased from the baseline of 21 +/- 1.0 to 30 +/- 1.3 mm Hg and remained increased for the duration of the procedure. The incidence of large VE with extramedullary guided TKA did not differ compared to the previously reported incidence with intramedullary guided TKA. These data suggest that VE might arise from a thrombogenic effect of the tourniquet rather than from manipulation of the marrow cavity.

Aged↗

Radiation exposure to patient and operator during radiofrequency ablation for supraventricular tachycardia.

BACKGROUND: Radiofrequency (RF) ablation has become the primary method of treatment for supraventricular tachycardia and often requires prolonged fluoroscopy times. AIM: To quantitate radiation exposure to patient and operator during RF ablation for supraventricular tachycardia. METHODS: Thermoluminescent dosemeters were used to monitor radiation at seven sites. Positions were: patient's thyroid, left scapula, T9 vertebra, right scapula and L4-L5 vertebra and the operator's thyroid and left hand. Monitoring was performed during 22 procedures. Of the patients studied 10 (45%) had atrioventricular junctional re-entry tachycardia (AVJRT) and 12 (55%) had accessory pathway tachycardia. RESULTS: The median fluoroscopy times (minutes) and inter-quartile ranges were 46 (39-65) for AVJRT, 55 (52-60) for left free wall accessory pathway (LFW), 107 (89-140) for septal and 166 (128-176) for RFW pathways. The mean radiation doses (mGy) to the chest wall were 50 for AVJRT, 47 for LFW, 87 for septal and 151 for RFW pathways. The mean radiation to the chest wall of the patient per case was found to be 3.9 times that reported for diagnostic cardiac catheterisation and 1.5 times that reported for angioplasty. CONCLUSIONS: Radiofrequency ablation is associated with significant irradiation of the patient and operator. All precautions should be taken to decrease this exposure. If eye irradiation is assumed to be equal to that to the thyroid, more than 45 procedures per month by a single operator (using ceiling-suspended lead glass shielding) may result in exceeding the recommended dose limit to the eye.

Adult↗

Comparative in vitro activities of L-695,256, a novel carbapenem, against gram-positive bacteria.

The in vitro activity of a prototype 2-aryl carbapenem, L-695,256, against gram-positive bacteria was examined. All streptococci and oxacillin-susceptible and -resistant staphylococci were inhibited at concentrations of < or = 0.125, < or = 0.125, and 4 micrograms/ml, respectively. The activity of L-695,256 was superior to that of imipenem against other organisms intrinsically resistant to beta-lactams.

Anti-Bacterial Agents↗

Effects of physiological hyperinsulinemia on counterregulatory response to prolonged hypoglycemia in normal humans.

To test the hypothesis that differing physiological insulin levels can modify the counter-regulatory response to prolonged hypoglycemia, experiments were carried out in 10 healthy male subjects. Insulin was infused subcutaneously for 8 h in two separate randomized protocols, so that steady-state levels of 132 +/- 6 pM (low) and 402 +/- 18 pM (high) were obtained. The fall in plasma glucose was controlled by the glucose-clamp technique. Plasma glucose fell slowly and similarly in both groups, reaching an identical steady-state (final 120 min of each study) level of 3.4 +/- 0.1 mM. Steady-state plasma epinephrine (2.5 +/- 0.4 vs. 1.5 +/- 0.2 nM) and norepinephrine (1.5 +/- 0.2 vs. 1.1 +/- 0.1 nM) were significantly (P < 0.05) greater during high- compared with low-dose insulin infusions. Plasma glucagon was reduced during high compared with low infusions (104 +/- 9 vs. 150 +/- 19 ng/l, P < 0.05). Growth hormone, cortisol, and pancreatic polypeptide increased significantly but were not different during the two insulin infusions. Hepatic glucose production (HGP) was equal during the steady-state period (8.4 +/- 1.0 mumol.kg-1.min-1) of each infusion. Blood lactate levels (1,255 +/- 73 vs. 788 +/- 69 mumol/l, P < 0.02) were increased in high compared with low, but nonesterified fatty acid (205 +/- 43 vs. 579 +/- 65 mumol/l) and 3-hydroxybutyrate (40 +/- 36 vs. 159 +/- 51 mumol/l) were reduced (P < 0.002) during the high-compared with low-dose infusions.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Kinetics of E2A basic helix-loop-helix-protein expression during myelopoiesis and primary B cell differentiation.

The DNA-binding factors encoded by the E2A gene, which include the basic helix-loop-helix proteins E12 and E47, are thought to regulate Ig gene expression. In the rat these factors are products of the Pan locus and are referred to as Pan-2 and Pan-1, respectively. To determine when during B cell differentiation Pan (E2A) DNA-binding proteins are first expressed, cells from a newly developed rat long term lymphoid bone marrow culture system were analyzed molecularly and phenotypically using a newly defined anti-Pan mAb. The data indicate that Pan-expressing cells appear in B cell progenitors before the appearance of the CD45R B lineage-associated Ag or microH chain protein. The results also indicate that Pan proteins are present in cells that had undergone D-JH rearrangements. Finally, although Pan (E2A) proteins are present in myeloid precursors, expression is extinguished as differentiation into mature myeloid cells occurs.

Animals↗

In vitro activity of biapenem against clinical isolates of gram-positive and gram-negative bacteria.

The in vitro activity of biapenem, a new carbapenem previously designated L-627, was compared with those of imipenem and several other antimicrobial agents against 771 clinical bacterial isolates. Against gram-positive organisms, biapenem was found to be approximately as active as imipenem, inhibiting 90% of isolates of most species at concentrations within one dilution of the MIC of imipenem for 90% of the isolates. Against gram-negative organisms and Bacteroides fragilis, biapenem was at least as active as and often more active than imipenem, with MICs for 90% of the isolates two- to eightfold lower than those of imipenem.

Anti-Bacterial Agents↗