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Multiphasic triacylglycerol dynamics in the intact heart during acute in vivo overexpression of CD36

机译:急性体内CD36过度表达期间完整心脏中的多相三酰基甘油动力学

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摘要

Cardiac triacylglycerol (TAG) stores buffer the intracellular availability of long chain fatty acid (LCFA) that act as nuclear receptor ligands, substrate for lipotoxic derivatives, and high energy-yield fuel. The kinetic characteristics of TAG turnover and homeostatic mechanisms linking uptake and storage dynamics in hearts have until now remained elusive. This work examines TAG pool dynamics in the intact beating heart, under normal conditions and in response to acute gene expression-induced changes in CD36. Dynamic mode 13C NMR elucidated multiple kinetic processes in 13C-palmitate incorporation into TAG: an initial, saturable exponential component and a slower linear rate. Although previous work indicates the linear component to reflect TAG turnover, we hypothesized the saturable exponential to reflect transport of LCFA across the sarcolemma. Thus, we overexpressed the LCFA transporter CD36 through cardiac-specific adenoviral infection in vivo. Within 72 h, CD36 expression was increased 40% in intact hearts, accelerating the exponential phase relative to PBS-infused hearts. TAG turnover also increased with elevations in adipose triglyceride lipase (ATGL) and a modest increase in diacylglycerol acyltransferase 1 (DGAT1), without a significant expansion of the intracellular lipid pools. The results demonstrate a dynamic system of reciprocal gene regulation that couples saturable LCFA uptake across the sarcolemma to TAG synthesis/lipolysis rates.
机译:心脏三酰甘油(TAG)可以缓冲长链脂肪酸(LCFA)的细胞内可用性,长链脂肪酸可作为核受体配体,脂毒性衍生物的底物和高能产率的燃料。迄今为止,TAG转换的动力学特性和将摄取和储存动力学联系起来的体内平衡机制一直不清楚。这项工作在正常情况下并响应于急性基因表达诱导的CD36改变,检查了完整跳动的心脏中的TAG库动态。动态模式 13 C NMR阐明了 13 C-棕榈酸酯掺入TAG中的多个动力学过程:初始的,饱和的指数成分和较慢的线性速率。尽管先前的工作表明线性成分反映了TAG转换,但我们假设可饱和指数反映了LCFA在肌膜间的转运。因此,我们在体内通过心脏特异性腺病毒感染过表达了LCFA转运蛋白CD36。在72小时内,完整心脏中CD36的表达增加了40%,相对于注入PBS的心脏,其指数期加速了。 TAG转换也随脂肪甘油三酯脂肪酶(ATGL)的升高和二酰基甘油酰基转移酶1(DGAT1)的适度增加而增加,而细胞内脂质池没有显着扩展。结果证明了相互调控基因的动态系统,该系统将整个跨膜膜的饱和LCFA摄取与TAG合成/脂解速率耦合。

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