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首页> 外文期刊>The biochemical journal >Effects of preincubation of primary monolayer cultures of rat hepatocytes with low- and high-density lipoproteins on the subsequent binding and metabolism of human low-density lipoprotein
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Effects of preincubation of primary monolayer cultures of rat hepatocytes with low- and high-density lipoproteins on the subsequent binding and metabolism of human low-density lipoprotein

机译:低密度脂蛋白和高密度脂蛋白对大鼠肝细胞原代单层培养物的预孵育对人低密度脂蛋白随后结合和代谢的影响

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摘要

p1. There are two distinct binding sites (Site 1 and Site 2) for human low-density lipoprotein (LDL) on rat hepatocytes in monolayer culture [Salter, Saxton & Brindley (1986) Biochem. J. 240, 549-557]. 2. Binding of 125I-LDL to Site 1, but not to Site 2, is up-regulated between 20 and 44 h in culture by preincubation of the cells with human high-density lipoprotein 3 (HDL3). 3. A similar preincubation with HDL2 had no significant effect on binding to either site. 4. Preincubation with human LDL led to a partial down-regulation of subsequent binding of 125I-LDL to Site 1. Since binding after incubation with LDL was measured at 37 degrees C, binding to Site 2 could not be distinguished from LDL that had been internalized by the cells. 5. Hepatocytes were shown to degrade 125I-LDL, resulting in the accumulation of [125I]iodotyrosine in the medium. Evidence was found that iodotyrosine may be further degraded by deiodinase produced by the cells. 6. Regulation of binding to Site 1 by preincubation with LDL or HDL3 was found to lead to a parallel regulation of LDL degradation. 7. It is concluded that rat hepatocytes not only bind but also metabolize human LDL and that these processes are under metabolic regulation./p
机译:> 1。在单层培养中,大鼠肝细胞上的人低密度脂蛋白(LDL)有两个不同的结合位点(位点1和位点2)[Salter,Saxton& A. Brindley(1986)生物化学。 J. 240,549-557]。 2.通过将细胞与人高密度脂蛋白3(HDL3)预孵育,可在培养20到44 h之间将125I-LDL与位点1的结合而不是位点2的结合上调。 3.用HDL2进行类似的预温育对结合至任一位点均无明显影响。 4.与人LDL的预孵育导致125I-LDL与位点1的后续结合的部分下调。由于在37°C下测量了与LDL孵育后的结合,因此无法区分与位点2的结合。被细胞内在化。 5.显示肝细胞降解125I-LDL,导致[125I]碘酪氨酸在培养基中积累。有证据表明,碘酪氨酸可能会被细胞产生的脱碘酶进一步降解。 6.发现通过与LDL或HDL3预温育来调节与位点1的结合导致平行调节LDL降解。 7.结论是大鼠肝细胞不仅能结合人低密度脂蛋白,而且还能代谢人低密度脂蛋白,这些过程受代谢调节。

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