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Mitochondrial oxygen consumption in early postmortem permeabilized skeletal muscle fibers is influenced by cattle breed

机译:早期后期渗透性骨骼肌纤维的线粒体氧消耗受到牛种类的影响

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摘要

Functional properties and integrity of skeletal muscle mitochondria (mt) during the early postmortem period may influence energy metabolism and pH decline, thereby impacting meat quality development. Angus typically produce more tender beef than Brahman, a Bos indicus breed known for heat tolerance. Thus, our objectives were to compare mt respiratory function in muscle collected early postmortem (1 h) from Angus and Brahman steers (n = 26); and to evaluate the effect of normal and elevated temperature on mt function ex vivo. We measured mt oxygen consumption rate (OCR) in fresh-permeabilized muscle fibers from Longissimus lumborum (LL) at 2 temperatures (38.5 and 40.0 °C) and determined citrate synthase (CS) activity and expression of several mt proteins. The main effects of breed, temperature, and their interaction were tested for mt respiration, and breed effect was tested for CS activity and protein expression. Breed, but not temperature (P > 0.40), influenced mt OCR (per tissue weight), with Brahman exhibiting greater complex I+II-mediated oxidative phosphorylation capacity (P = 0.05). Complex I- and complex II-mediated OCR also tended to be greater in Brahman (P = 0.07 and P = 0.09, respectively). Activity of CS was higher in LL from Brahman compared to Angus (P = 0.05). Expression of specific mt proteins did not differ between breeds, except for higher expression of adenosine triphosphate (ATP) synthase subunit 5 alpha in Brahman muscle (P = 0.04). Coupling control ratio differed between breeds (P = 0.05), revealing greater coupling between oxygen consumption and phosphorylation in Brahman. Our data demonstrate that both Angus and Brahman mt retained functional capacity and integrity 1-h postmortem; greater oxidative phosphorylation capacity and coupling in Brahman mt could be related to heat tolerance and impact early postmortem metabolism.
机译:骨骼肌线粒体(MT)的功能性质和完整性在后期后期期间可能影响能量代谢和pH下降,从而影响肉质发展。 Angus通常生产比Brahman更温柔的牛肉,一种已知用于耐热性的BOS奖项。因此,我们的目标是将MT呼吸功能与Angus和Brahman Steers(n = 26)的肌肉早期收集的肌肉(1小时)进行比较;并评估正常和升高温度对MT函数的影响。我们在2温度(38.5和40.0°C)中,测量了从Longissimus Lumborum(LL)的新鲜渗透肌纤维中的MT氧消耗率(OCR),并确定了柠檬酸合酶(CS)活性和几MT蛋白的表达。对Mt呼吸测试品种,温度和它们相互作用的主要影响,并对CS活性和蛋白质表达进行了品种效果。品种但不是温度(p> 0.40),影响MT OCR(每个组织重量),具有较大的复合物I + II介导的氧化磷酸化能力(P = 0.05)。复杂的I-和复杂的II介导的OCR也倾向于婆罗门(P = 0.07和P = 0.09)更大。与Angus相比,BRAHMAN的CS活性较高(P = 0.05)。特异性Mt蛋白的表达在品种之间没有差异,除了在Brahman肌肉中的腺苷三磷酸(ATP)合成酶亚基5α的更高表达(P = 0.04)。耦合控制比不同的品种(P = 0.05)不同,施加氧气消耗与Brahman的磷酸化之间的更大偶联。我们的数据表明,Angus和Brahman MT保留了功能能力和完整性1-H后期; Brahman MT中氧化磷酸化能力和偶联可能与耐热性有关,并影响早期的后期代谢。

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