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Heavy meromyosin from skipjack tuna, Euthynus pelamis. Preparation and enzymic properties.

A method was developed to obtain heavy meromyosin (HMM) from the tryptic digest of skipjack tuna dorsal myosin. The tuna HMM thus obtained was shown to be homogeneous on gel filtration-gel electrophoresis, and on ultracentrifugation. The sedimentation constant (S20,w) was estimated to be 6.1S for tuna HMM. The ATPase activity of tuna dorsal HMM was found to be very similar to that of rabbit skeletal HMM in many respects: KCl concentration dependence, pH dependence, effect of pCMB, kinetic parameters (Vmax and Ka) in actin activation, and Arrhenius activation energy. The only difference found between tuna HMM and rabbit HMM was in heat denaturation behavior: the ATPase activities of tuna HMM were approximately four times as sensitive to heat inactivation as those of rabbit HMM. Thus, tuna HMM should represent a good experimental material for investigations of the molecular basis of susceptibility to denaturation, and of the characteristics of fish myosins in general. A new type of heat denaturation of myosin was observed. It occurred in a very early stage of heat treatment of either tuna dorsal myosin or rabbit skeletal myosin; however, it did not occur upon heat treatment of HMM of either tuna or rabbit, and it was detectable in terms of the Mg-ATPase activity only when the activity was measured in the presence of untreated actin.

Actins

Thin-layer chromatographic screening methods for histamine in tuna fish.

Twelve solvent systems were tested for their ability to separate histamine and histidine on a variety of thin-layer coatings. The best solvent-adsorbent systems were: chloroform-methanol-ammonia (2:2:1), methanol-ammonia (20:1), acetone-ammonia (95:5), and double development with (a) n-butanol-acetone-water (2:2:1) and (b) chloroform-methanol-ammonia (12:7:1), all on silica-gel layers. Ninhydrin was used as the visualization reagent. These four systems were then evaluated for their potential use as rapid screening procedures in the detection of possibly deleterious levels of histamine in tuna fish. Successful separation of histamine from the other ninhydrin-positive components of methanolic tuna fish extracts was achieved with all four systems. A sample from a lot of tuna implicated in human illness was found to have a histamine level considerably higher than tuna purchased from a local retail outlet or an extract spiked to a histamine level considered to be a threshold value for toxicity symptoms. The methanol-ammonia (20:1) and chloroform-methanol-ammonia (2:2:1) systems, used with silica-gel plates, are the most promising for rapid preliminary screening of tuna fish extracts for histamine.

Animals

Larval Genomics as a Viable, Fisheries-Independent Tool for Investigating Population Structure in Tropical Pacific Tunas.

Understanding how dispersal, life history, and environmental variability shape genetic connectivity in the open ocean remains a central challenge in evolutionary biology. Highly migratory marine predators like tunas have traditionally been considered genetically homogeneous across ocean basins, yet emerging genomic evidence suggests that cryptic population structure can persist even in species with high gene flow and large effective population sizes. We used 2bRAD sequencing of 348 larval and subadult skipjack (Katsuwonus pelamis), yellowfin (Thunnus albacares), and bigeye tuna (T. obesus) collected from the central Pacific across 7 years of sampling to examine species boundaries, population genetic information, genetic structure, and connectivity. Larval sampling revealed consistent spawning by all three species and enabled unbiased detection of genetic patterns prior to recruitment bottlenecks. We found strong divergence amongst species, no evidence of structuring within skipjack or bigeye, and a divergent yellowfin population detected in 2 consecutive sampling years north of American Samoa. Comparisons between larvae and subadults suggest that sampling early life history stages can be a valuable tool for assessing population genetic information before recruitment bottlenecks, selective harvest by fisheries, adult dispersal, and selective pressures acting on adult populations, thereby contributing novel insights to the research and effective management of these species. These results highlight how larval genomics can complement traditional population genomic studies of adult tunas and reveal fine-scale structure in highly vagile species, providing new perspectives on connectivity in the open ocean.

Animals

Amino acid composition and physico-chemical properties of bluefin tuna (Thunnus thynnus) myoglobin.

1. The heart ventricle myoglobin of Atlantic bluefin tuna has been purified and its amino acid composition has been determined. 2. The perturbing effect of guanidine hydrochloride on the molecular structure of tuna ferrimyoglobin and its corresponding apoprotein has been investigated by Soret absorbance and ultraviolet fluorescence. 3. The conformation-free energy of unfolding delta G0 has been calculated by thermodynamic treatments of the data concerning guanidine unfolding. 4. The results have been compared with other known myoglobins, particularly those of yellowfin tuna.

Amino Acids

Gas-liquid chromatographic determination of vitamin D in tuna liver and vitamin D resin oils.

Gas-liquid chromatographic (GLC) determination of vitamin D3 in tuna liver and vitamin D3 resin oils was investigated and a routine method slightly modified from the previously reported methods (1, 2) was established. Since both tuna liver and vitamin D3 resin oils contained large amounts of sterols, digitonin-Celite column chromatography according to SHEPPARD et al.(4) was used to remove the sterol influence from the unsaponifiable matters of the oils. After collecting the eluate and evaporating the solvent, the residue was subjected to thin-layer chromatography (TLC) using Kieselgel GF254 as an adsorbent and a mixture of n-hexane-ethyl acetate (4: 1) as a developing solvent. The scraped zones corresponding to vitamin D3 and pre-D3 were trimethylsilylated and then applied to the GLC using 1.5% OV-17 packed on Shimalite W (80-100 mesh) as a stationary phase. Trimethylsilylation of the gas chromatograms was an essential procedure, because the peaks of unknown substances in tuna liver oils and lumisterol in vitamin D3 resin oils could not be separated from the peak of pyro-D3 without trimethylsilylation. When the proposed method was applied to the samples, satisfactory results were obtained.

Animals

Fluorometric determination of histamine in tuna: collaborative study.

Six samples of canned tuna, albacore, yellowfin, and skipjack, in water or oil pack were analyzed in duplicate by a fluorometric method and the AOAC colorimetric method. For the fluorometric method, recoveries of histamine added to acceptable tuna averaged 99% with a range of 91 to 107%. Agreement between laboratories for the analyses of decomposed tuna containing 20-200 mg histamine/100 g sample was excellent. Results from the fluorometric method are comparable with those from the AOAC colorimetric method; the fluorometric method has been adopted as official first action.

Animals

Sequences of the soluble tryptic peptides from myoglobin of yellowfin tuna (Thunnus albacares).

1. Amino acid sequences of the soluble tryptic peptides of yellowfin tuna myoglobin, comprising 60% of the total residues, are presented. 2. The amino terminus is acetylated as shown by Fourier transform nuclear magnetic resonance spectroscopy of an N-terminal dipeptide. 3. Comparison of peptide sequences from yellowfin tuna myoglobin with corresponding regions of mammalian myoglobins shows obvious homology around the heme-attachment site and the carboxyl terminus, but marked dissimilarity is evident at other locations, such as the amino terminal region.

Acetylation

Tuna cytochrome c at 2.0 A resolution. I. Ferricytochrome structure analysis.

The crystal structure of oxidized cytochrome c from tuna hearts has been solved by x-ray diffraction to a resolution of 2.0 A, using four isomorphous heavy atom derivatives. The crystals, space group P43, have 2 independent cytochrome molecules in the asymmetric repeating unit. No significant difference is seen between these 2 molecules, aside from conformations of a few surface side chains. The molecular folding observed is essentially that reported for tuna ferrocytochrome c. In particular, the ring of phenylalanine 83 lies against the heme group and closes the heme crevice, and is not swung out into the surroundings as had been believed from the 2.8 A horse ferricytochrome c structure.

Animals

Tuna cytochrome c at 2.0 A resolution. II. Ferrocytochrome structure analysis.

The x-ray crystal structure analysis of tuna ferrocytochrome c has been extended from 2.45 to 2.0 A resolution. The overall folding is unchanged and is the same as has been reported for tuna ferricytochrome c (Swanson R., Trus, B.L., Mandel, N., Mandel, G., Kallai, O.B., and Dickerson, R.E. (1977) J. Biol. Chem. 252, 759-755). No significant structural differences are observed between oxidation states. Difference map studies using reoxidized crystals of ferrocytochrome c confirm the absence of a conformation change. A detailed analysis of hydrogen bonding shows the presence of six beta or 310 bends of type II with obligatory glycines in the 3rd residue position. This explains 6 of the 10 nearly invariant glycines in the molecule. Close packing contacts account for three more, and only the invariant glycine 1 remains a mystery.

Amino Acid Sequence

Fluorometric determination of histamine in tuna: development of method.

Tuna extracts are treated with an anion exchange resin to remove interfering materials, histamine is derivatized with o-phthaladehyde, and the fluorescence of the resulting compound is measured fluorometrically. Replicate analyses of acceptable and decomposed tuna packed in oil or water agreed within 1 mg at a level of 10 mg/100 g and within 12 mg at a level of 100 mg/100 g. Recoveries of histamine added to fish were greater than 90 and greater than 83% at levels of 10 and 100 mg/100 g, respectively. The new method is more rapid and specific and is simpler than previous methods because no liquid-liquid extractions or chromatographic separations of histamine are required. The sensitivity of the method allows quantitation of less than 10 mg histamine/100 g sample. The accuracy and precision of the fluorometric method are comparable to those of the official AOAC colorimetric method.

Animals

Similarity of tuna N-acetylhistidine deacetylase and cod fish anserinase.

1. The brain and ocular fluid of skipjack tuna (Katsuwonus pelamis) contained high levels of N-acetylhistidine deacetylase. 2. This enzyme had a molecular weight of about 120,000 and was activated by zinc or cobaltous ions. 3. Cod (Gadus callarias) brain, ocular fluid and muscle contained a similar metal-activated thiol hydrolase, the muscle enzyme being known as anserinase. 4. The purified enzymes hydrolyzed N-acetylhistidine, carnosine, homocarnosine, anserine and certain other dipeptides. 5. Their specificity resembled that of hog kidney homocarnosinase. 6. In both fish, brain and ocular fluid were rich sources of this hydrolase, whereas muscle contained only trace amounts.

Amidohydrolases

Mitochondrial respiration in the ventricular myocardium and in the white and deep red myotomal muscles of juvenile tuna fish (thunnus thynnus L.).

The respiratory activity of mitochondria isolated from the outer and inner layers of the ventricular myocardium and from the white and deep red myotomal muscles of juvenile Thunnus thynnus has been compared. The highest values for the succinate oxidase and succinate cytochrome c reductase activities have been found in the mitochondria of the outer myocardial layer, followed by mitochondria of the deep red muscle, the inner myocardial layer and the white muscle in that order. Differences in mitochondrial NADH-cytochrome c reductase activity run parallel, in a lower order of magnitude, to the differences in the oxidation of succinate. This finding is discussed in relation to the different metabolic attitudes of the muscle tissues towards anaerobic glycolysis. The outer myocardial layer of the juvenile tuna ventricle has been shown to have a higher metabolic activity than the inner layer, in contrast to the situation in adult ventricular myocardium.

Animals

Tuna cytochrome c at 2.0 A resolution. III. Coordinate optimization and comparison of structures.

Optimum coordinate sets have been obtained for ferrocytochrome c and the two symmetry-independent molecules of ferricytochrome c from tuna at 2.0 A resolution by making the best fit of models with standard bond lengths and angles to the experimental electron density maps (1977) J. Biol. Chem. 252, 759-785, as a preliminary to full refinement with 1.5 A data. Both the Diamond model-building programs and locally developed minicomputer routines were tried, with the latter preferred for economy and ease of operation, although both gave satisfactory results. Atomic coordinates are available on microfiche or from the Brookhaven Protein Data Bank. Using the two ferricytochrome molecules as a control, no differences between oxidized and reduced cytochrome molecules can be seen that are outside the probable limits of accuracy of the 2.0 A analysis. Rotation and subtractive difference map comparisons also show no conformation changes. If believable differences do appear in the course of the 1.5 A refinement now underway, these should be no more than minor breathing of main chain or adjustment of side chains.

Amino Acid Sequence