AJP R-00516-2012 revision 2 Exhausting exercise and tissue-specific expression of monocarboxylate transporters in rainbow trout
نویسندگان
چکیده
Transmembrane lactate movements are mediated by monocarboxylate transporters (MCTs), but these proteins have never been characterized in rainbow trout. Our goals were to clone potential trout MCTs, determine tissue distribution, and quantify the effects of exhausting exercise on MCT expression. Such information could prove important to understand the mechanisms underlying the classic “lactate retention” seen in trout white muscle after intense exercise. Four isoforms were identified and partially characterized in rainbow trout: MCT1a, MCT1b, MCT2, and MCT4. MCT1b was the most abundant in heart, and red muscle, but poorly expressed in gill and brain where MCT1a and MCT2 were prevalent. MCT expression was strongly stimulated by exhausting exercise in brain (MCT2: +260%) and heart (MCT1a: +90% and MCT1b: +50%), possibly to increase capacity for lactate uptake in these highly oxidative tissues. By contrast, the MCTs of gill, liver and muscle remained unaffected by exercise. This study provides a possible functional explanation for post-exercise “lactate retention” in trout white muscle. Rainbow trout may be unable to release large lactate loads rapidly during recovery because: (i) they only poorly express MCT4, the main lactate exporter found in mammalian glycolytic muscles, (ii) the combined expression of all trout MCTs is much lower in white muscle than in any other tissue, and (iii) exhausting exercise fails to upregulate white muscle MCT expression. In this tissue, carbohydrates act as an “energy spring” that alternates between explosive power release during intense swimming (glycogen to lactate) and recoil during protracted recovery (slow glycogen resynthesis from local lactate).
منابع مشابه
Exhausting exercise and tissue-specific expression of monocarboxylate transporters in rainbow trout.
Transmembrane lactate movements are mediated by monocarboxylate transporters (MCTs), but these proteins have never been characterized in rainbow trout. Our goals were to clone potential trout MCTs, determine tissue distribution, and quantify the effects of exhausting exercise on MCT expression. Such information could prove important to understand the mechanisms underlying the classic "lactate r...
متن کاملExogenous lactate supply affects lactate kinetics of rainbow trout, not swimming performance.
Intense swimming causes circulatory lactate accumulation in rainbow trout because lactate disposal (Rd) is not stimulated as strongly as lactate appearance (Ra). This mismatch suggests that maximal Rd is limited by tissue capacity to metabolize lactate. This study uses exogenous lactate to investigate what constrains maximal Rd and minimal Ra. Our goals were to determine how exogenous lactate a...
متن کاملProteomic analysis of muscle tissue from rainbow trout (Oncorhynchus mykiss) fed dietary β-glucan
The aim of this study was to examine the changes in muscle proteome of the rainbow trout fed dietary β-glucan. The experimental diets contained 0 (control), 0.1% and 0.2% β-1,3/1,6 yeast glucan. First, feeding larvae were fed to apparent satiation nine times per day with their respective diets over two months. The percentage of body weight gain and feed efficiency of fish fed 0.2% diet was sign...
متن کاملCloning and expression of the constant region of rainbow trout (Onchorhynchus mykiss) µ immunoglobulin chain in Escherichia coli
The importance of rainbow trout (Onchorhynchus mykiss) in Iran aquaculture industry on one hand, and increasing the mortality of this fish due to outbreaks of infectious diseases, on the other hand, indicate the requirement for more profound understanding the rainbow trout immune system and access to laboratory tools for definitive diagnosis of its diseases. One of the most important defense me...
متن کاملLactate transport across sarcolemmal vesicles isolated from rainbow trout white muscle.
Rainbow trout (Oncorhynchus mykiss) retain the majority of lactate produced during exhaustive exercise within white muscle. Previous studies have suggested that this retention is partially via a re-uptake of released lactate. The purpose of this work was to study lactate uptake using trout white muscle sarcolemmal vesicles. Lactate uptake by trout white muscle is partially through a low-affinit...
متن کامل