Incorporating turnover in estimates of protein retention efficiency for different body tissues
- 1 February 2006
- journal article
- Published by Cambridge University Press (CUP) in British Journal of Nutrition
- Vol. 95 (2) , 246-254
- https://doi.org/10.1079/bjn20051604
Abstract
Formulated in terms of protein synthesis (PS) and protein retention (PR), a definition of turnover-related protein retention efficiency (kP) allows the expression kP=[1+(PS/PR)/6]−1, 6 representing the ratio of the energy equivalent of protein to the cost of synthesis. By combining plausible hormonal and cellular control mechanisms of protein (P) growth, it is possible to derive (PS/PR)=[Q{(P/α)−(4/9)Y−1}]−1+1, allowing the calculation of kPby substitution. The symbol α represents the limit value of protein growth, while the term 4/9 derives from the power in the relationship between the concentration of growth factor-related activator in the nucleus and cell volume (cv). Y is the power in the relationship between cv and total tissue protein, and Q represents the proportion of growth factor-activated nuclei in a tissue. The proportion Q can be estimated from simple functions of intake rates or blood growth factor concentrations. Estimates of Y are derived from histological considerations or calculated from experimental observations; Y=1 for multinucleated skeletal muscle fibres and Y=1/3, 1/2, 1/6 on average for mononucleated cell tissues, skin or bone and viscera, respectively. To apply kPto the whole body, an average value of Y=1/2 can be taken. Experimental observations on tissue protein synthesis and breakdown rates yield direct estimates of kPin satisfactory agreement with comparable theoretical predictions.Keywords
This publication has 21 references indexed in Scilit:
- Incorporating turn-over in whole body protein retention efficiency in cattle and sheepAnimal Science, 2005
- Incorporating turn-over in whole body protein retention ef.ciency in pigsAnimal Science, 2005
- Transcription regulation and animal diversityNature, 2003
- Signal transmission by the insulin-like growth factorsCell, 1989
- Differences in intestinal protein synthesis and cellular proliferation in well-nourished rats consuming conventional laboratory dietsBritish Journal of Nutrition, 1985
- Protein synthesis in skin and bone of the young ratBritish Journal of Nutrition, 1983
- Protein synthesis in tissues of growing lambsBritish Journal of Nutrition, 1981
- Whole body and tissue protein synthesis in cattleBritish Journal of Nutrition, 1980
- The relationship between the dimensions of the fibres and the number of nuclei during normal growth of skeletal muscle in the domestic fowlJournal of Anatomy, 1968
- Quantitative changes in DNA, RNA, and protein during prenatal and postnatal growth in the ratDevelopmental Biology, 1965