Analyze Diet

Topic:Enzymes

Enzymes are biological catalysts that facilitate biochemical reactions in horses by lowering the activation energy required for these processes. They are involved in various physiological functions, including digestion, metabolism, and cellular repair. Common enzymes in equine biology include amylase, lipase, and lactate dehydrogenase, each playing a specific role in the breakdown of nutrients and energy production. The activity and concentration of these enzymes can vary in response to different physiological and pathological conditions, serving as potential indicators in veterinary diagnostics. This page compiles peer-reviewed research studies and scholarly articles that explore the function, regulation, and clinical implications of enzymes in equine health.
The mechanism of the inhibitory influence of phosphorolysis on hydrolysis of glycogen in the muscles of domestic animals.
Archivum immunologiae et therapiae experimentalis    January 1, 1968   Volume 16, Issue 1 116-136 
Iwanowski H.No abstract available
[Heterogeneity and organ distribution of alcohol dehydrogenase in various species].
Enzymologia biologica et clinica    January 1, 1968   Volume 9, Issue 6 447-458 
Moser K, Papenberg J, von Wartburg JP.No abstract available
Comparative histochemical distribution of acid phosphatase, non-specific esterase and beta-glucuronidase in the placenta and foetal membranes.
Histochemie. Histochemistry. Histochimie    January 1, 1968   Volume 12, Issue 3 189-207 doi: 10.1007/BF00305996
Christie GA.No abstract available
Estimation of the stability of dry horse serum cholinesterase by means of an accelerated storage test.
The Journal of pharmacy and pharmacology    January 1, 1968   Volume 20, Issue 1 48-53 doi: 10.1111/j.2042-7158.1968.tb09617.x
Cole BR, Leadbeater L.No abstract available
Purification and properties of horse pancreatic ribonucleases.
Journal of biochemistry    October 1, 1967   Volume 62, Issue 4 430-438 doi: 10.1093/oxfordjournals.jbchem.a128686
Ishihara T, Irie M, Ukita T.No abstract available
Histochemical study of the distribution of alkaline phosphatase in leukocytes of the horse, cow, sheep, dog, and cat.
American journal of veterinary research    July 1, 1967   Volume 28, Issue 125 971-974 
Atwal OS, McFarland LZ.No abstract available
[Kinetic study of the inhibition of horse serum cholinesterase by certain steroid alkaloids of Solanum]. Faucher A, Monnet R.No abstract available
Activity of carbonic anhydrase in mammalian blood in relation to body size.
Comparative biochemistry and physiology    May 1, 1967   Volume 21, Issue 2 357-360 doi: 10.1016/0010-406x(67)90797-9
Magid E.No abstract available
Comparative investigations of serum creatine phosphokinase and glutamic-oxaloacetic transaminase activities in equine paralytic myoglobinuria.
Research in veterinary science    April 1, 1967   Volume 8, Issue 2 219-226 
Cardinet GH, Littrell JF, Freedland RA.No abstract available
Partial purification & properties of L-alanine 2-oxoglutarate aminotransferase of equine red blood cells.
Indian journal of biochemistry    March 1, 1967   Volume 4, Issue 1 22-26 
Balasaraswati K, Murti K.No abstract available
Function of zinc in horse liver alcohol dehydrogenase.
Archives of biochemistry and biophysics    March 1, 1967   Volume 119, Issue 1 552-559 doi: 10.1016/0003-9861(67)90490-0
Oppenheimer HL, Green RW, McKay RH.No abstract available
[Comparative study of two fumarases of mammals].
Archives internationales de physiologie et de biochimie    February 1, 1967   Volume 75, Issue 1 181-182 
Schlusselberg J, Dupont R, Kanarek L.No abstract available
Equine antihapten antibody. The subunits and fragments of anti-beta-lactoside antibody.
The Journal of experimental medicine    February 1, 1967   Volume 125, Issue 2 249-275 doi: 10.1084/jem.125.2.249
Rockey JH.Eight antigenically unique immunoglobulins have been identified in purified equine anti-p-azophenyl-beta-lactoside (Lac) antibody isolated from a single horse. The Fc fragments of the gammaGa-, gammaGb-, gammaGc-, and -gammaA-globulins have been shown to possess unique antigenic determinants. Common gammaG- and gammaA-Fc fragment antigenic determinants, which were absent from the 10Sgamma(1)- and gammaM-globulins, have also been observed. All antibody populations share two antigenically distinct light (B, L) chain variants. The association of anti-Lac antibody with the hapten p-(p-dimethylamin...
[The activating effect of tetramethylammonium ions and acetylcholine on horse serum choline esterase].
Biokhimiia (Moscow, Russia)    January 1, 1967   Volume 32, Issue 1 3-12 
Brestkin AP, Brik IL.No abstract available
[Different forms of cholinesterase in horse plasma]. Bajgar J.No abstract available
Comparative histochemical distribution of “leucine amino-peptidase” in the placenta and foetal membranes.
Histochemie. Histochemistry. Histochimie    January 1, 1967   Volume 10, Issue 3 272-277 doi: 10.1007/BF00304875
Christie GA.No abstract available
Attempts to demonstrate 3-beta- and 17-beta-hydroxy-steroid dehydrogenases histochemically in the testes of the stallion, boar, ram and bull.
Journal of reproduction and fertility    December 1, 1966   Volume 12, Issue 3 551-560 doi: 10.1530/jrf.0.0120551
Hay MF, Deane HW.No abstract available
Changes in the activity of proteolytic enzymes and transaminases (G.O.T., G.P.T.) in horse leucocytes during hyperimmunization.
Archives roumaines de pathologie experimentales et de microbiologie    December 1, 1966   Volume 25, Issue 4 971-978 
Ségli G, Toma E, Oprişan R.No abstract available
[On the behavior of serum transaminases in the trotting race horse after training].
Wiener tierarztliche Monatsschrift    February 1, 1966   Volume 53, Issue 2 95-107 
Ullrich W.No abstract available
[Activity determinations of serum enzymes in veterinary medicine. 3. F. LDH isoenzymes in various organs and the serum of diseases and healthy horses].
Schweizer Archiv fur Tierheilkunde    January 1, 1966   Volume 108, Issue 1 33-46 
Gerber H.No abstract available
[Serum enzyme activity determination in veterinary medicine. 3. Serum enzyme model in paralytic myoglobinemia of the horse].
Schweizer Archiv fur Tierheilkunde    December 1, 1965   Volume 107, Issue 12 685-697 
Gerber H.No abstract available
The reaction of organophosphorus compounds with hydrolytic enzymes. The inhibition of horse liver aliesterase.
Biochemical pharmacology    December 1, 1965   Volume 14, Issue 12 1727-1738 doi: 10.1016/0006-2952(65)90262-5
Ooms AJ, Breebaart-Hansen JC.No abstract available
[Determination of serum enzyme activities in veterinary medicine. 3. D. Determination of LDH, MDH, SHD, GLDH, ALD and alpha-amylase activity in some horse organs as a basis for the clinical interpretation of serum enzyme activity determinations].
Schweizer Archiv fur Tierheilkunde    November 1, 1965   Volume 107, Issue 11 626-631 
Gerber H.No abstract available
Proteolysis of salmine by horse urinary kallikrein.
Biochemical pharmacology    November 1, 1965   Volume 14, Issue 11 1665-1671 doi: 10.1016/0006-2952(65)90021-3
Brandi CM, Mendes J, Paiva AC, Prado ES.No abstract available
Cell and Solution Velocity Constants for the Reaction CO + Hb –> COHb at Different Temperatures in Mammals with Different Red Cell Sizes.
The Journal of general physiology    November 1, 1965   Volume 49, Issue 2 199-220 doi: 10.1085/jgp.49.2.199
Holland RA.Using a double beam stopped-flow apparatus, measurements were made of the velocity constant of the reaction CO + Hb --> COHb in solution and in the red cells of human beings, rabbits, horses, and goats. The solution constant (l') at 37 degrees C for human beings was 362 mM(-1) sec.(-1); in other species l' was somewhat lower. Two rabbits, despite having apparently identical hemoglobins had significantly different values for l'. The energy of activation (E) of l' was between 8 and 11 kcal/mole in all cases. The cell reaction constant (l'(c)) at 37 degrees was between 61 and 73 mM(-1) sec.(-1...
The action of cyanogen bromide on horse-heart cytochrome c and horse-heart myoglobin.
The Biochemical journal    September 1, 1965   Volume 96, Issue 3 693-699 doi: 10.1042/bj0960693
Black JA, Leaf G.1. The effects of cyanogen bromide on horse-heart cytochrome c and horse-heart myoglobin have been investigated. Cytochrome c yielded four fragments, of which two were haemopeptides. The two colourless peptides had amino acid compositions corresponding to those that are expected, on the basis of the sequence proposed for horse-heart cytochrome c by Margoliash, Smith, Kreil & Tuppy (1961), from cleavage at both methionine residues. Of the two haemopeptides, one was isolated and shown to be that derived from cleavage at only one methionine residue, that nearer to the C-terminus of the peptid...
Histochemistry of the equine lung: oxidative enzymes of the interalveolar septum.
American journal of veterinary research    July 1, 1965   Volume 26, Issue 113 960-964 
Tyler WS, Pearse AG, Rhatigan P.No abstract available
Sex-Linkage of Glucose-6-Phosphate Dehydrogenase in the Horse and Donkey.
Science (New York, N.Y.)    June 18, 1965   Volume 148, Issue 3677 1603-1604 doi: 10.1126/science.148.3677.1603
TRUJILLO JM, WALDEN B, O'NEIL P, ANSTALL HB.Distinctly different electrophoretic patterns of red cell glucose-6-phosphate dehydrogenase were resolved from the hemolyzates of horse and donkey erythrocytes. Examination of their reciprocal hybrids, mules and hinnies, showed that the red cells of female mules and female hinnies contain both horse and donkey G-6-PD; the male mule with an X chromosome from its horse mother contained pure horse G-6-PD, whereas the male hinny with the donkey X chromosome contained pure donkey G-6-PD. These findings on the male reciprocal hybrids suggest X-linkage.
Occurrence of cholinesterase isoenzymes in horse serum.
Nature    March 13, 1965   Volume 205, Issue 976 1110-1111 doi: 10.1038/2051110a0
Reiner E, Seuferth W, Hardegg W.No abstract available
[Alkylation of histidine radicals in the active center of horse myoglobin].
Bulletin de la Societe de chimie biologique    January 1, 1965   Volume 47, Issue 11 2178-2182 
Dautrevaux M, Han K, Boulanger Y, Biserte G.No abstract available