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Dietary free fatty acids form alkaline phosphatase-enriched microdomains in the intestinal brush border membrane

机译:膳食游离脂肪酸在肠刷缘膜上形成富含碱性磷酸酶的微区

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Free fatty acids released during intralumenal digestion of dietary fat must pass through the enterocyte brush border membrane before triacylglycerol reassembly and subsequent chylomicron delivery to the lymph system. In the present work fluorescent BODIPY fatty acid analogs were used to study this membrane passage in organ cultured intestinal mucosal explants. We found that in addition to a rapid uptake into the cytoplasm, a fraction of the fatty acid analogs were inserted directly into the brush border membrane. Furthermore, a brief exposure of microvillar membrane vesicles to a fat mixture mimicking a physiological solution of dietary mixed micelles, rearranged the lipid raft microdomain organization of the membranes. Thus, the fat mixture generated a low-density subpopulation of microvillar detergent resistant membranes (DRMs) highly enriched in alkaline phosphatase (AP). Since this GPI-linked enzyme is the membrane protein in the brush border with the highest affinity for lipid rafts, this implies that free fatty acids selectively insert stably into these membrane microdomains. We have previously shown that absorption of dietary lipids transiently induce a selective endocytosis of AP from the brush border, and from work by others it is known that fat absorption is accompanied by a rise in serum AP and secretion of surfactant-like particles from enterocytes. We propose that these physiological processes may be triggered by the sequestering of dietary free fatty acids in lipid raft microdomains of the brush border.
机译:在三酰基甘油重新组装和随后的乳糜微粒递送至淋巴系统之前,必须通过肠内脂肪细胞内消化的膳食脂肪释放的游离脂肪酸才能通过肠上皮刷缘膜。在本工作中,使用荧光BODIPY脂肪酸类似物研究器官培养的肠粘膜外植体中的这种膜通道。我们发现,除了快速摄取到细胞质外,一部分脂肪酸类似物直接插入到刷状缘膜中。此外,微绒毛膜囊泡短暂暴露于模拟膳食混合胶束生理溶液的脂肪混合物中,重新排列了膜的脂筏微区组织。因此,该脂肪混合物产生了高度富含碱性磷酸酶(AP)的低密度抗微绒毛去污剂膜(DRM)。由于这种与GPI连接的酶是刷状边界中对脂筏具有最高亲和力的膜蛋白,因此这意味着游离脂肪酸选择性地稳定地插入这些膜微区。以前我们已经表明,饮食脂质的吸收会瞬时引起刷状缘对AP的选择性内吞作用,从其他人的工作中得知,脂肪吸收会伴随血清AP的升高和肠上皮细胞分泌表面活性剂样颗粒。我们提出这些生理过程可能是由隔离在刷缘的脂质筏微区中的饮食游离脂肪酸触发的。

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