首页> 外文期刊>Acta physiologica Scandinavica >Cytoplasmic fatty acid-binding protein facilitates fatty acid utilization by skeletal muscle.
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Cytoplasmic fatty acid-binding protein facilitates fatty acid utilization by skeletal muscle.

机译:细胞质脂肪酸结合蛋白促进骨骼肌利用脂肪酸。

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摘要

The intracellular transport of long-chain fatty acids in muscle cells is facilitated to a great extent by heart-type cytoplasmic fatty acid-binding protein (H-FABP). By virtue of the marked affinity of this 14.5-kDa protein for fatty acids, H-FABP dramatically increases their concentration in the aqueous cytoplasm by non-covalent binding, thereby facilitating both the transition of fatty acids from membranes to the aqueous space and their diffusional transport from membranes (e.g. sarcolemma) to other cellular compartments (e.g. mitochondria). Striking features are the relative abundance of H-FABP in muscle, especially in oxidative muscle fibres, and the modulation of the muscular H-FABP content in concert with the modulation of other proteins and enzymes involved in fatty acid handling and utilization. Newer studies with mice carrying a homozygous or heterozygous deletion of the H-FABP gene show that, in comparison with wild-type mice, hindlimb muscles from heterozygous animals have a markedly lowered(-66%) H-FABP content but unaltered palmitate uptake rate, while in hindlimb muscles from homozygous animals (no H-FABP present) palmitate uptake was reduced by 45%. These findings indicate that H-FABP is present in relative excess and plays a substantial, but merely permissive role in fatty acid uptake by skeletal muscles.
机译:心脏型细胞质脂肪酸结合蛋白(H-FABP)在很大程度上促进了肌肉细胞中长链脂肪酸的细胞内运输。通过这种14.5kDa蛋白与脂肪酸的显着亲和力,H-FABP通过非共价结合显着增加了其在水性细胞质中的浓度,从而促进了脂肪酸从膜到水性空间的过渡以及它们的扩散从膜(例如肌膜)运输到其他细胞区室(例如线粒体)。引人注目的特征是H-FABP在肌肉中的相对丰度,尤其是在氧化性肌纤维中,以及肌肉H-FABP含量的调节与脂肪酸处理和利用中涉及的其他蛋白质和酶的调节一致。对携带H-FABP基因纯合或杂合缺失的小鼠的最新研究表明,与野生型小鼠相比,来自杂合动物的后肢肌肉的H-FABP含量显着降低(-66%),但棕榈酸酯摄取率未改变,而在纯合动物(不存在H-FABP)的后肢肌肉中,棕榈酸酯的摄取减少了45%。这些发现表明,H-FABP以相对过量的形式存在,并且在骨骼肌摄取脂肪酸中起实质性的但仅是宽松的作用。

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