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The lumi-aggregometer: a new instrument for simultaneous measurement of secretion and aggregation by platelets.

We have developed a new instrument that simultaneously monitors aggregation and secretion of ATP from the same sample of platelets. Aggregation is determined by the usual turbidimetric method; secretion of ATP is followed by measuring luminescence from the firefly luciferase system at right angles to the aggregometer light path. Data are recorded on a two-pen strip chart recorder and reveal the temporal relations between the two platelet responses.

Adenosine Triphosphate

Plasma ADP levels: direct determination with luciferase luminescence using a biometer.

A method is described for the determination of low plasma levels of adenosine-5'-diphosphate (ADP) using a Dupont Biometer to measure luminescence produced by the luciferin-luciferase reaction. Endogenous ATP is removed by incubation with luciferase. The remaining ADP is then quantitated, following its conversion to ATP, after incubation with creatine phosphate and creatine kinase. The mean coefficient of variation for 0.02 and 2.2 micromol/liter ADP standards were 2.1 and 1.8% respectively. The method has been applied to human and rabbit plasma. Human plasma ADP concentrations were found to be 0.13 +/- 0.025 (10) micromol/liter and rabbit plasma concentration were 0.07 +/- 0.05 (5) micromol/liter. Several other possible applications of the method are discussed.

Adenosine Diphosphate

Effects of sodium azide on photosystem II of Chlorella pyrenoidosa.

The action of sodium azide on the electron transport chain was investigated by means of oxygen evolution, fluorescence and luminescence measurements. (1) The damping of the oxygen oscillations is progressively reduced with increasing azide concentration in the range of 10(-5) - 10(-1) M. (2) The rate of the dark decay of the S2 and S3 states is considerably slowed. The degree of slowing is dependent on concentration. (3) Luminescence is inhibited by azide both in the presence and absence of 3-(3,4-dichlorophenyl)-1,1-dimethylurea (DCMU). (4) The fluorescence induction curve in strong light is modified in the presence of azide and its shape depends on azide concentration and on incubation time. (5) At a given time after a saturating flash, the fluorescence yield in the presence of azide is much higher than that of the control. It seems to be due to a general fluorescence increase rather than to a slower Q- reduction. (6) We tentatively propose an accelerated reduction of the primary donor P+ in state S2 and S3, by the intermediate donor Z in the presence of azide. Additionally, we have to assume that in the S2 and S3 states, some centers are blocked in an inactive low fluorescent form and that azide decreases their concentration.

Azides

The properties of mnemiopsin, a bioluminescent and light sensitive protein purified by hollow fiber techniques.

A calcium activated photoprotein, termed mnemiopsin, which emits bioluminescence upon the addition of calcium ion, has been isolated from the Ctenophore, Memiopsis leidyi, and purified by hollow fiber techniques. The system is similar to aequorin, from the jellyfish Aequorea, except that mnemiopsin can be light-inactivated. Separation of mnemiopsin from the dilute and large volume animal homogenate proved difficult with conventional biochemical techniques. A continuous flow process utilizing large surface area hollow fibers for filtration, concentration, and dialysis was developed which may also be applicable to the purification of other proteins. The resulting mnemiopsin concentrate, after further purification, was judged to be about 90% pure by its gel electrophoretic profile. Estimates by molecular sieve chromatography and SDS gel electrophoresis gave a molecular weight of about 23,000 daltons. A calcium specificity for triggering light emission was studied by comparison of triggering with a variety of cations and anions and by investigating the effects of calcium ionophores and antagonists. The activity of mnemiospin was characterized with respect to pH, temperature and ionic strength. The stability of mnemiopsin activity after exposure to proteases, denaturants, protein group specific reagents, detergents, elevated temperatures and light was determined. Some years ago our laboratory reported that the bioluminescence reaction in the ctenophores which had long eluded definition involved a calcium activated photoprotein similar in many respects to that found in other coelenterates, notably Aequorea. We found, moreover, that the systems differed in that the bioluminescent activity of the isolated protein was lost following exposure to light. The purification and characterization of this biochemical system was undertaken both in our laboratory and by Ward and Seliger. These latter reports provide a detailed and firm foundation for the understanding of the components and mechanisms involved. While many of our results are in agreement with theirs, our approaches, inquiries, and results differed in several significant ways, the description of which forms the basis for this report. In particular, we took a different approach in the purification of the Mnemiopsis photoprotein which in itself is rather a formidable task. The technique was successful and may point the way to other applications where large volume dilute solutions prove cumbersome. Secondly, our study of the effects of salts, proteases, detergents, and other agents indicate that the protein, though sensitive to calcium and visible light inactivation, is relatively resistant to some agents which commonly inactivate proteins.

Calcium

Effect of TEA on light emission from aequorin-injected aplysia central neurons.

Aplysia central neurons were injected with the calcium-sensitive photoprotein aequorin and stimulated with trains of identical depolarizing voltage-clamp pulses. The light emissions grew and the outward currents declined in successive pulses. Tetraethylammonium (TEA) enhanced the light emissions to single depolarizing pulses and suppressed the outward current. The remaining net inward current is carried primarily by calcium ions and does not facilitate. The aequorin emissions were larger at all amplitudes of depolarizing pulses that elicited emissions, and the facilitation of emissions in a train of pulses was reduced. The effect of TEA on outward current was nearly maximal when sodium ions were partially replaced with 0.1 M TEA, while the aequorin emissions were further enhanced by increasing the TEA concentration to 0.459 M. TEA enhanced the aequorin emissions at all voltages. These observations suggest that the action of TEA on aequorin emissions is not strictly a consequence of its better known outward current blocking action. The effects of TEA could be partly due to the lowered sodium concentration of these solutions. Replacement of sodium by Tris, sucrose or mannose, however, all produced no enhancement of emissions. Tetramethylammonium (TMA) replacement of sodium had effects similar to those of TEA. Thus TEA and TMA appear to have a specific effect. Part of the enhancement of light emissions by TEA is due to the removal of a series resistance error in the voltage clamp, and this may also account partly for the reduced facilitation of aequorin emissions in TEA. The remainder of the action of TEA on aequorin emissions evidently reflects a specific but previously unrecognized action on the cellular metabolism of calcium ions or on the voltage-dependent calcium channels.

Aequorin

Bioluminescence detection system of mutagen using firefly luciferase genes introduced in Escherichia coli lysogenic strain.

A rapid and convenient microbial sensing system for mutagens was developed based upon the induction of prophage from Escherichia coli lysogenic strain and bioluminescence. The system consisted of lysogenic E. coli encoding firefly luciferase genes and a photodetection system. Measurement of mutagen mitomycin C was achieved by measuring the luminescence intensity emitted from E. coli lysogenic strain for the recombinant phage in the presence of luminescence substrates. Approximately 1 h after addition of mitomycin C, the luminescence began to be observed, and 3 h after, it attained a level of 2 times greater than that of 1 h. Irradiation with ultraviolet light also produced light based on induction of phage from the E. coli lysogenic strain for the recombinant phage. On the other hand, when nonmutagenic toxic compounds like sodium azide were added to the reaction medium, luminescence was not observed. Mitomycin C could be detected within 1 h with this sensing system, at concentrations down to 10(2) ng/assay.

Bacteriophage lambda

Renilla luciferin as the substrate for calcium induced photoprotein bioluminescence. Assignment of luciferin tautomers in aequorin and mnemiopsin.

A study was made of the effects of pH and protic and aprotic solvents on the spectral properties of Renilla (sea pansy) luciferin and a number of its analogs. The results have made possible the assignment of two tautomeric forms of Renilla luciferin, one which absorbs maximally at 435 nm and another which exhibits an absorption maximum at 454 nm. Furthermore the results provide an explanation for the visible absorption characteristics of the photoproteins aequorin (lambda-max 454 nm) and mnemiopsin (lambda-max 435 nm). In addition a Renilla-like luciferin can be extracted from both of these photoproteins. This luciferin produces light with Renilla luciferase, at a rate dependent upon the concentration of dissolved oxygen, and in other respects is indistinguishable from Renilla luciferin in this bioluminescent reaction. The results suggest that the native chromophore in both photoproteins is Renilla luciferin (or a nearly identical derivative). The results also suggest that a hydroperoxide intermediate probably exists in photoproteins, on energetic grounds, and to account for the oxygen concentration independency of the rate of photoprotein reactions. This hydroperoxide may be attached initially to an amino-acid side chain (possibly indolyl-OOH, imidazoyl-OOH, or -SOOH) rather than to the luciferin chromophore.

Aequorin

A sensitive model system for in vivo monitoring of baculovirus gene expression in single infected insect cells.

We have developed a fast and sensitive system for the in vivo analysis of gene expression in baculovirus infected lepidopteran insect cells. A recombinant baculovirus containing a luciferase gene from the click beetle, Pyrophorus plagiophthalamus, under transcriptional regulation of the polyhedrin gene promoter of Autographa californica nuclear polyhedrosis virus (AcNPV) was used to infect a Spodoptera frugiperda cell line. Recombinant luciferase could be monitored by luminometry in real-time without disruption of the infected cells, allowing detection of synthesis as early as one hour after infection. The range of luminescence measurements was normally over four orders of magnitude, and the kinetics of luciferase synthesis and the levels of light produced in vivo closely correlated with the expression of polyhedrin in AcNPV infected cells when analyzed by SDS-PAGE. Additionally, single infected cells could be identified by CCD image analysis and flow cytometry.

Animals

Permeability to calcium of pigeon erythrocyte 'ghosts' studied by using the calcium-activated luminescent protein, obelin.

1. Obelin, the Ca(2+)-activated luminescent protein from the hydroid Obelia geniculata, was sealed inside pigeon erythrocyte ;ghosts' in order to investigate effects on their permeability of different methods of preparation and of the bivalent cation ionophore A23187. 2. Changes in free Ca(2+) within the ;ghosts' were studied by following the rate of luminescence of obelin. The possibility that the obelin might have been released from the ;ghosts' during an experiment was investigated by studying the release of inulin and pyruvate kinase from the ;ghosts'. Less than 10% of the inulin or pyruvate kinase sealed within the ;ghosts' was released under any of the experimental conditions. 3. Triton X-100 (0.1-10%, v/v) made the ;ghosts' highly permeable to Ca(2+). In the presence of 1mm-Ca(2+) and Triton, 95-100% of the obelin was utilized within 10-20s. 4. A time-course of resealing ;ghosts' at 37 degrees C showed that over a period of 90min, the ;ghosts' became gradually less permeable to Ca(2+). ;Ghosts' which remained at 0 degrees C retained only a small concentration of obelin and ATP, and were highly permeable to Ca(2+). 5. Erythrocyte ;ghosts' resealed for 30min at 20 degrees C rather than 37 degrees C were more permeable to Ca(2+), as shown by the fact that 92% of the obelin in the ;ghosts' was utilized during the first 60s after the addition of 1mm-Ca(2+), as opposed to 44% for ;ghosts' resealed at 37 degrees C. 6. Haemolysis at pH6.0 rather than 7.0 resulted in ;ghosts' which were highly permeable to Ca(2+) after resealing for 60min at 37 degrees C. Of the obelin in the ;ghosts', produced by haemolysis at pH6.0, 90% was utilized in the first 60s after the addition of 1mm-Ca(2+) compared with 23% for ;ghosts' produced at pH7.0. 7. The bivalent cation ionophore A23187 increased the permeability of the ;ghosts' to Ca(2+). Maximum effects of the ionophore (16mug/ml) were obtained by preincubating the ;ghosts' with the ionophore A23187 (16mug/ml) in the presence of a low concentration of Mg(2+) and in the absence of Ca(2+).

Adenosine Triphosphate