Analyze Diet

Topic:Protein

Proteins are essential macromolecules that play diverse roles in the physiology and health of horses. They are composed of amino acids and are involved in various biological processes, including tissue growth, repair, and the synthesis of enzymes and hormones. Dietary proteins are a key component of equine nutrition, influencing muscle development, immune function, and overall performance. Horses require a balanced intake of essential amino acids, which must be obtained through their diet, as they cannot be synthesized endogenously. This page compiles peer-reviewed research studies and scholarly articles that explore the types, functions, and dietary requirements of proteins in horses, as well as their impact on equine health and performance.
Electronic, hydrophobic, and steric effects of binding of inhibitors to the horse liver alcohol dehydrogenase-reduced pyridine coenzyme binary complex.
Biochemistry    January 18, 1972   Volume 11, Issue 2 170-179 doi: 10.1021/bi00752a006
Sarma RH, Woronick CL.No abstract available
Hydrogen ion titration study of the histidine residues of horse myoglobin.
International journal of peptide and protein research    January 1, 1972   Volume 4, Issue 5 339-342 doi: 10.1111/j.1399-3011.1972.tb03438.x
Janssen LH, de Bruin SH, van Os GA.No abstract available
Mammalian acid glucoamylases. I. Purification of glucoamylase from skeletal muscle.
Archivum immunologiae et therapiae experimentalis    January 1, 1972   Volume 20, Issue 5 745-753 
Iwanowski H.No abstract available
A comparison of the carbohydrate composition of serumorosomucoid from man, cattle, horse, and sheep.
Acta chemica Scandinavica    January 1, 1972   Volume 26, Issue 4 1743-1744 doi: 10.3891/acta.chem.scand.26-1743
Endresen C, Christensen TB.No abstract available
35 C1 NMR studies of the active site zinc of horse liver alcohol dehydrogenase.
Biochemical and biophysical research communications    December 17, 1971   Volume 45, Issue 6 1444-1450 doi: 10.1016/0006-291x(71)90182-3
Ward RL, Happe JA.No abstract available
Comparison of a blend of milk products and linseed meal as protein supplements for young growing horses.
Journal of animal science    December 1, 1971   Volume 33, Issue 6 1274-1277 doi: 10.2527/jas1971.3361274x
Hintz HF, Schryver HF, Lowe JE.No abstract available
Characterization of an equine infectious anemia antigen extracted from infected horse spleen tissue.
Infection and immunity    November 1, 1971   Volume 4, Issue 5 528-531 doi: 10.1128/iai.4.5.528-531.1971
Norcross NL, Coggins L.The spleens of horses infected with equine infectious anemia contain an antigen that is useful for a diagnostic immunodiffusion test. This antigen was extracted from the spleen by homogenization of the tissue, centrifugation, and precipitation from the supernatant fluid at 50% saturation with (NH(4))(2)SO(4). The antigen was purified by subjecting it to two cycles of electrophoresis in a continuous free-flow electrophoresis cell and finally filtering through a column of Sephadex G-200 gel. The antigen was found to be a small protein with a molecular weight of 27,500 and sedimentation coefficie...
Relative dye-binding capacity of albumin from several species with HABA, bromocresol green and Spectru AB-2.
Analytical biochemistry    October 1, 1971   Volume 43, Issue 2 575-581 doi: 10.1016/0003-2697(71)90289-2
Pemberton JR, DeJong J.No abstract available
The complete enzymic hydrolysis of horse muscle acyl phosphatase.
Life sciences. Pt. 2: Biochemistry, general and molecular biology    September 8, 1971   Volume 10, Issue 17 983-988 doi: 10.1016/0024-3205(71)90101-9
Ramponi G, Cappugi G, Treves C, Nassi P.No abstract available
Studies on the IgA system of the horse.
Immunology    September 1, 1971   Volume 21, Issue 3 443-454 
Vaerman JP, Querinjean P, Heremans JF.Equine serum and secretions were found to contain a protein which cross-reacted with an antiserum against human IgA, but not with antisera against any other human immunoglobulin. The physicochemical properties of equine IgA resembled those of human IgA. IgA was found to be the immunoglobulin having the highest secretion serum concentration ratio in equine lacteal and salivary secretions, and to be the protein produced by the majority of immunoglobulin-containing cells in the of the equine intestine.
[Characterization of horse spleen apoferritin by electrofocuing column fractionation].
Igaku to seibutsugaku. Medicine and biology    August 8, 1971   Volume 83, Issue 2 57-60 
Nitsu Y, Ishitani K, Urushizaki K.No abstract available
The binding of carbon dioxide by horse haemoglobin.
The Biochemical journal    August 1, 1971   Volume 124, Issue 1 31-45 doi: 10.1042/bj1240031
Kilmartin JV, Rossi-Bernardi L.1. Three modified horse haemoglobins have been prepared: (i) alpha(c) (2)beta(c) (2), in which both the alpha-amino groups of the alpha- and beta-chains have reacted with cyanate, (ii) alpha(c) (2)beta(2), in which the alpha-amino groups of the alpha-chains have reacted with cyanate, and (iii) alpha(2)beta(c) (2), in which the two alpha-amino groups of the beta-chain have reacted with cyanate. 2. The values of n (the Hill constant) for alpha(c) (2)beta(c) (2), alpha(2)beta(c) (2) and alpha(c) (2)beta(2) were (respectively) 2.5, 2.0 and 2.6, indicating the presence of co-operative interactions ...
The subunit structure of horse spleen apoferritin. I. The molecular weight of the subunit.
The Journal of biological chemistry    July 10, 1971   Volume 246, Issue 13 4198-4205 
Bryce CF, Crichton RR.No abstract available
Purification and properties of butyrylcholinesterase from horse serum.
Archives of biochemistry and biophysics    July 1, 1971   Volume 145, Issue 1 55-63 doi: 10.1016/0003-9861(71)90009-9
Lee JC, Harpst JA.No abstract available
Influence of chemical modifications of the reactive SH groups on the proton binding behaviour of human and horse hemoglobin.
Biochimica et biophysica acta    June 29, 1971   Volume 236, Issue 3 777-779 doi: 10.1016/0005-2795(71)90262-5
Janssen LH, de Bruin SH, van OS GA.No abstract available
Limited proteolysis of horse heart cytochrome c.
European journal of biochemistry    June 11, 1971   Volume 20, Issue 3 414-419 doi: 10.1111/j.1432-1033.1971.tb01407.x
Schejter A, Goldkorn T, Sokolovsky M.No abstract available
Structure and functional properties of chemically modified horse hemoglobin. I. Determination of the functional properties.
Journal of molecular biology    May 28, 1971   Volume 58, Issue 1 69-77 doi: 10.1016/0022-2836(71)90232-4
Simon SR, Arndt DJ, Konigsberg WH.No abstract available
Lactoferrin in milk from different species.
Comparative biochemistry and physiology. B, Comparative biochemistry    May 15, 1971   Volume 39, Issue 1 119-129 doi: 10.1016/0305-0491(71)90258-6
Masson PL, Heremans JF.No abstract available
Digestion and absorption of 15N-labelled microbial protein in the large intestine of the horse.
The British veterinary journal    May 1, 1971   Volume 127, Issue 5 11-13 doi: 10.1016/s0007-1935(17)37583-8
Slade LM, Bishop R, Morris JG, Robinson DW.No abstract available
On the electron-transfer-coupled proton release of cytochrome c.
Biochimica et biophysica acta    April 6, 1971   Volume 234, Issue 1 57-61 doi: 10.1016/0005-2728(71)90129-0
Czerlinski GH, Dar K.No abstract available
Nitrogen conservation by ponies fed a low -protein ration.
American journal of veterinary research    April 1, 1971   Volume 32, Issue 4 579-588 
Houpt TR, Houpt KA.No abstract available
[Comparative studies on the biochemical nature of myosin–smooth and skele- tal muscle myosin].
Seikagaku. The Journal of Japanese Biochemical Society    April 1, 1971   Volume 43, Issue 4 185-196 
Yamaguchi M.No abstract available
Tobacco mosaic virus specific immunoglobulins from horse serum. II. Structural specificity and association constants.
European journal of immunology    April 1, 1971   Volume 1, Issue 2 81-86 doi: 10.1002/eji.1830010206
Anderer FA, Koch MA, Hirschle SD.No abstract available
Thermal stability of horse liver alcohol dehydrogenase and its complexes.
Archives of biochemistry and biophysics    April 1, 1971   Volume 143, Issue 2 354-358 doi: 10.1016/0003-9861(71)90221-9
Theorell H, Tatemoto K.No abstract available
Apparent digestion in various segments of the digestive tract of ponies fed diets with varying roughage-grain ratios.
Journal of animal science    February 1, 1971   Volume 32, Issue 2 245-248 doi: 10.2527/jas1971.322245x
Hintz HF, Hogue DE, Walker EF, Lowe JE, Schryver HF.Eleven ponies were fed diets containing 1:0, 3:2 or 1:4 forage-grain ratios for 30 days. Animals were killed 4 hr. after feeding and the entire digestive tracts were removed and segments isolated. Digestion coefficients were calculated for dry matter, protein, available carbohydrate (ACHO) and neutral detergent fiber (NDF) by Cr2O3-nutrient ratio for seven segments of the gut. The major site of ACHO and protein digestion was prececal; whereas, the major sites of NDF digestion were the colon and cecum regardless of the hay:grain ratio. Therefore the relative importance of digestion in the lo...
Chemical and immunochemical properties of two classes of globoside from equine organs.
The Japanese journal of experimental medicine    February 1, 1971   Volume 41, Issue 1 67-81 
Naiki M.No abstract available
Protein and nonprotein nitrogen utilization in the horse.
Journal of animal science    January 1, 1971   Volume 32, Issue 1 68-73 doi: 10.2527/jas1971.32168x
Nelson DD, Tyznik WJ.No abstract available
[Separation and some properties of 2 kininogens of horse serum].
Voprosy meditsinskoi khimii    January 1, 1971   Volume 17, Issue 1 6-12 
Kauricheva NI, Budnitskaia PZ, Bogomolets-Enrikes OM.No abstract available
[Purification, various properties and specificity of equine urinary kallikrein].
Anais da Academia Brasileira de Ciencias    December 31, 1970   Volume 42, Issue 4 773-781 
Prado JL, Prado ES, Stella RC, Webster ME.No abstract available
The total protein and immunoglobulin profile of equine colostrum and milk.
Immunology    December 1, 1970   Volume 19, Issue 6 901-907 
Rouse BT, Ingram DG.Thirty-six samples of colostrum and milk were collected from ponies at various intervals after parturition. Levels of total protein and immunoglobulins IgG and IgG(T) were determined. In samples collected in the first 3 hours , the total protein concentration was approximately twice that of serum protein and the immunoglobulins IgG and IgG(T) accounted for 30 per cent and 10 per cent respectively of this protein. The ratio of IgG to IgG(T) was similar to that in serum. After suckling, a marked decline in both total protein and immunoglobulin concentration occurred. In addition, the relative co...
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