血清淀粉样蛋白A家族。氧化脂质对小鼠品系的差异诱导。

F Liao, A J Lusis, J A Berliner, A M Fogelman, M Kindy, M C de Beer, F C de Beer
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引用次数: 32

摘要

在炎症期间,血清淀粉样蛋白A (SAA)增加高达1000倍,并可成为高密度脂蛋白(HDL)的主要成分。我们已经确定了一个新的载脂蛋白分子(SAA5)作为SAA家族的独特成员。它与炎性同型(SAA1, SAA2和SAA3)的不同不仅在于结构上,而且在于它是正常HDL的组成部分,它占SAA总量的90%以上。尽管SAA家族的所有成员,包括SAA5,都对内毒素治疗有反应,但SAA5与其他SAA相比,对高脂肪、高胆固醇致动脉粥样硬化饮食或注射轻度氧化LDL (MM-LDL)的诱导均有抵抗。这些数据进一步证明,氧化脂质诱导炎症分子是选择性的。在动脉粥样硬化易感的C57BL/6小鼠和动脉粥样硬化抵抗的C3H/HeJ小鼠中,炎性SAA同型(SAA1, SAA2和SAA3)以菌株特异性的方式对氧化脂质产生反应,无论是通过喂养动脉粥样硬化饮食产生的还是通过MM-LDL注射引入的。我们假设正常HDL上的SAA5分子可能有助于其正常的生理作用,并且炎症性SAA亚家族的显著诱导使颗粒具有适合炎症状态的改变但相关的功能作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Serum amyloid A protein family. Differential induction by oxidized lipids in mouse strains.

During inflammation, serum amyloid A (SAA) protein increases up to 1000-fold and can become a major component of high-density lipoprotein (HDL). We have identified a new apolipoprotein molecule (SAA5) as a distinct member of the SAA family. It differs from the inflammatory isotypes (SAA1, SAA2, and SAA3) not only in structure but in the fact that it is constitutive on normal HDL where it accounts for more than 90% of total SAA. Whereas all members of the SAA family, including SAA5, responded to endotoxin administration, SAA5 contrasted with other SAAs in its resistance to induction either by a high-fat, high-cholesterol atherogenic diet or the injection of mildly oxidized LDL (MM-LDL). These data provide further evidence that the induction of inflammatory molecules by oxidized lipids is selective. In atherosclerosis-susceptible C57BL/6 mice and atherosclerosis-resistant C3H/HeJ mice, the inflammatory SAA isotypes (SAA1, SAA2, and SAA3) responded in a strain-specific manner to oxidized lipids either generated with feeding of the atherogenic diet or introduced by MM-LDL injection. We hypothesize that the constitutive SAA5 molecules on normal HDL may contribute to its normal physiological role and that the dramatic induction of the inflammatory SAA subfamily equips the particle for an altered yet related functional role appropriate to the inflammatory state.

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