首页> 美国卫生研究院文献>Journal of Lipid Research >Analysis of lipid transfer activity between model nascent HDL particles and plasma lipoproteins: implications for current concepts of nascent HDL maturation and genesis
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Analysis of lipid transfer activity between model nascent HDL particles and plasma lipoproteins: implications for current concepts of nascent HDL maturation and genesis

机译:模型新生HDL颗粒与血浆脂蛋白之间的脂质转移活性分析:对新生HDL成熟和起源的当前概念的启示

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摘要

The specifics of nascent HDL remodeling within the plasma compartment remain poorly understood. We developed an in vitro assay to monitor the lipid transfer between model nascent HDL (LpA-I) and plasma lipoproteins. Incubation of α-125I-LpA-I with plasma resulted in association of LpA-I with existing plasma HDL, whereas incubation with TD plasma or LDL resulted in conversion of α-125I-LpA-I to preβ-HDL. To further investigate the dynamics of lipid transfer, nascent LpA-I were labeled with cell-derived [3 H]cholesterol (UC) or [3H]phosphatidylcholine (PC) and incubated with plasma at 37°C. The majority of UC and PC were rapidly transferred to apolipoprotein B (apoB). Subsequently, UC was redistributed to HDL for esterification before being returned to apoB. The presence of a phospholipid transfer protein (PLTP) stimulator or purified PLTP promoted PC transfer to apoB. Conversely, PC transfer was abolished in plasma from PLTP−/− mice. Injection of 125I-LpA-I into rabbits resulted in a rapid size redistribution of 125I-LpA-I. The majority of [3H]UC from labeled r(HDL) was esterified in vivo within HDL, whereas a minority was found in LDL. These data suggest that apoB plays a major role in nascent HDL remodeling by accepting their lipids and donating UC to the LCAT reaction. The finding that nascent particles were depleted of their lipids and remodeled in the presence of plasma lipoproteins raises questions about their stability and subsequent interaction with LCAT.
机译:血浆隔室内新生HDL重塑的细节仍知之甚少。我们开发了一种体外测定法,以监测初生模型HDL(LpA-I)与血浆脂蛋白之间的脂质转移。将α- 125 I-LpA-I与血浆一起孵育会导致LpA-I与现有血浆HDL缔合,而与TD血浆或LDL一起孵育则会导致α- 125 转化 I-LpA-I转化为pre-HDL。为了进一步研究脂质转移的动力学,新生LpA-I用细胞衍生的[ 3 H]胆固醇(UC)或[ 3 H]磷脂酰胆碱(PC)标记并在37°C与血浆孵育。大部分UC和PC迅速转移至载脂蛋白B(apoB)。随后,UC被重新分配给HDL进行酯化,然后再返回apoB。磷脂转移蛋白(PLTP)刺激剂或纯化的PLTP的存在促进了PC向apoB的转移。相反,从PLTP -/-小鼠的血浆中PC转移被取消。向兔子注射 125 I-LpA-I导致 125 I-LpA-I大小快速重新分布。来自标记的r(HDL)的大部分[ 3 H] UC在HDL体内被酯化,而在LDL中发现了少数。这些数据表明,载脂蛋白B通过接受其脂质并将UC捐赠给LCAT反应,在新生HDL重塑中起主要作用。在血浆脂蛋白存在的情况下,新生颗粒的脂质被耗尽并被重塑的发现提出了关于其稳定性以及随后与LCAT相互作用的疑问。

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