Schaap F G, Binas B, Danneberg H, van der Vusse G J, Glatz J F
Department of Physiology, Cardiovascular Research Institute Maastricht, Maastricht University, the Netherlands. Germany.
Circ Res. 1999 Aug 20;85(4):329-37. doi: 10.1161/01.res.85.4.329.
Heart-type fatty acid binding protein (H-FABP), abundantly expressed in cardiac myocytes, has been postulated to facilitate the cardiac uptake of long-chain fatty acids (LCFAs) and to promote their intracellular trafficking to sites of metabolic conversion. Mice with a disrupted H-FABP gene were recently shown to have elevated plasma LCFA levels, decreased cardiac deposition of a LCFA analogue, and increased cardiac deoxyglucose uptake, which qualitatively establishes a requirement for H-FABP in cardiac LCFA utilization. To study the underlying defect, we developed a method to isolate intact, electrically stimulatable cardiac myocytes from adult mice and then studied substrate utilization under defined conditions in quiescent and in contracting cells from wild-type and H-FABP(-/-) mice. Our results demonstrate that in resting and in contracting myocytes from H-FABP(-/-) mice, both uptake and oxidation of palmitate are markedly reduced (between -45% and -65%), whereas cellular octanoate uptake, and the capacities of heart homogenates for palmitate oxidation and for octanoate oxidation, and the cardiac levels of mRNAs encoding sarcolemmal FA transporters remain unaltered. In contrast, in resting H-FABP(-/-) cardiac myocytes, glucose oxidation is increased (+80%) to a level that would require electrical stimulation in wild-type cells. These findings provide a physiological demonstration of a crucial role of H-FABP in uptake and oxidation of LCFAs in cardiac muscle cells and indicate that in H-FABP(-/-) mice the diminished contribution of LCFAs to cardiac energy production is, at least in part, compensated for by an increase in glucose oxidation.
心脏型脂肪酸结合蛋白(H-FABP)在心肌细胞中大量表达,据推测它有助于心脏摄取长链脂肪酸(LCFAs),并促进其在细胞内转运至代谢转化位点。最近有研究表明,H-FABP基因敲除的小鼠血浆LCFA水平升高,LCFA类似物的心脏沉积减少,心脏脱氧葡萄糖摄取增加,这从定性上确定了H-FABP在心脏LCFA利用中的必要性。为了研究潜在缺陷,我们开发了一种从成年小鼠中分离完整、可电刺激的心肌细胞的方法,然后在特定条件下研究野生型和H-FABP(-/-)小鼠静止和收缩细胞中的底物利用情况。我们的结果表明,在H-FABP(-/-)小鼠的静止和收缩心肌细胞中,棕榈酸的摄取和氧化均显著降低(-45%至-65%),而细胞辛酸摄取、心脏匀浆中棕榈酸氧化和辛酸氧化的能力以及编码肌膜脂肪酸转运蛋白的mRNA的心脏水平均未改变。相比之下,在静止的H-FABP(-/-)心肌细胞中,葡萄糖氧化增加(+80%),达到野生型细胞需要电刺激才能达到的水平。这些发现从生理学角度证明了H-FABP在心肌细胞中LCFAs摄取和氧化中的关键作用,并表明在H-FABP(-/-)小鼠中,LCFAs对心脏能量产生的贡献减少至少部分被葡萄糖氧化增加所补偿。