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人单核细胞-巨噬细胞对天然及丙二醛修饰的低密度脂蛋白的代谢

The metabolism of native and malondialdehyde-altered low density lipoproteins by human monocyte-macrophages.

作者信息

Shechter I, Fogelman A M, Haberland M E, Seager J, Hokom M, Edwards P A

出版信息

J Lipid Res. 1981 Jan;22(1):63-71.

PMID:6260883
Abstract

We have recently shown that cultured human monocyte-macrophages degraded 125I-labeled low density lipoprotein (125I-nativeee-LDL) by a saturable high-affinity process with maximal velocity at 25-30 microgram protein/ml (Fogelman et al., 1980, Proc. Nat. Acad. Sci. USA. 77:2214-2218). We now describe studies of the binding of 125I-native-LDL at 4 degrees C and the effects of chloroquine, Ca2+ concentration, and reductive methylation on high-affinity 125I-native-LDL degradation that indicate that native-LDL is processed by the monocyte-macrophages via the classic LDL receptor pathway. The high-affinity degradation of 125I-native-LDL increased substantially when monocyte-macrophages were exposed to the lipoprotein deficient-fraction of serum (LPDS) for periods as brief as 4 hours, and was 25-fold greater than that of lymphocytes. Freshly isolated monocytes that had never been exposed to LPDS also demonstrated high-affinity degradation of 125I-nativ-LDL. When these monocytes were cultured for 7 days in a medium containing native-LDL at a concentration (186 microgram protein/ml) greatly in excess of that apparently needed to saturate the high-affinity process, there was more than a 10-fold increase in 125I-native-LDL high-affinity degradation. LDL modified by treatment with malondialdehyde was processed by a second high-affinity cell surface receptor that appears identical to the "scavenger" receptor that processes acetylated LDL (Goldstein, et al., 1979, Proc. Nat. Acad. Sci. USA. 76: 333-337).

摘要

我们最近发现,培养的人单核细胞 - 巨噬细胞通过一种可饱和的高亲和力过程降解125I标记的低密度脂蛋白(125I - 天然LDL),在蛋白质浓度为25 - 30微克/毫升时达到最大速度(Fogelman等人,1980年,《美国国家科学院院刊》。77:2214 - 2218)。我们现在描述在4℃下125I - 天然LDL的结合研究,以及氯喹、Ca2 + 浓度和还原甲基化对高亲和力125I - 天然LDL降解的影响,这些研究表明天然LDL通过经典的LDL受体途径被单核细胞 - 巨噬细胞处理。当单核细胞 - 巨噬细胞暴露于血清脂蛋白缺陷组分(LPDS)仅4小时时,125I - 天然LDL的高亲和力降解显著增加,并且比淋巴细胞的降解高25倍。从未暴露于LPDS的新鲜分离的单核细胞也表现出对125I - 天然LDL的高亲和力降解。当这些单核细胞在含有浓度(186微克蛋白质/毫升)大大超过明显需要饱和高亲和力过程所需浓度的天然LDL的培养基中培养7天时,125I - 天然LDL的高亲和力降解增加了10倍以上。用丙二醛处理修饰的LDL通过第二种高亲和力细胞表面受体进行处理,该受体似乎与处理乙酰化LDL的“清道夫”受体相同(Goldstein等人,1979年,《美国国家科学院院刊》。76: 333 - 337)。

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