Center for Interdisciplinary Cardiovascular Sciences, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts, USA.
Department of Nutrition and Department of Molecular Metabolism, Harvard T.H. Chan School of Public Health, Boston, Massachusetts, USA.
JCI Insight. 2021 Feb 8;6(3):143526. doi: 10.1172/jci.insight.143526.
Recent in vivo tracer studies demonstrated that targeted mass spectrometry (MS) on the Q Exactive Orbitrap could determine the metabolism of HDL proteins 100s-fold less abundant than apolipoprotein A1 (APOA1). In this study, we demonstrate that the Orbitrap Lumos can measure tracer in proteins whose abundances are 1000s-fold less than APOA1, specifically the lipid transfer proteins phospholipid transfer protein (PLTP), cholesterol ester transfer protein (CETP), and lecithin-cholesterol acyl transferase (LCAT). Relative to the Q Exactive, the Lumos improved tracer detection by reducing tracer enrichment compression, thereby providing consistent enrichment data across multiple HDL sizes from 6 participants. We determined by compartmental modeling that PLTP is secreted in medium and large HDL (alpha2, alpha1, and alpha0) and is transferred from medium to larger sizes during circulation from where it is catabolized. CETP is secreted mainly in alpha1 and alpha2 and remains in these sizes during circulation. LCAT is secreted mainly in medium and small HDL (alpha2, alpha3, prebeta). Unlike PLTP and CETP, LCAT's appearance on HDL is markedly delayed, indicating that LCAT may reside for a time outside of systemic circulation before attaching to HDL in plasma. The determination of these lipid transfer proteins' unique metabolic structures was possible due to advances in MS technologies.
最近的体内示踪剂研究表明,靶向质谱(MS)在 Q Exactive Orbitrap 上可以确定比载脂蛋白 A1(APOA1)丰度低 100 倍的 HDL 蛋白的代谢。在这项研究中,我们证明 Orbitrap Lumos 可以测量丰度比 APOA1 低 1000 倍的蛋白质中的示踪剂,特别是脂质转运蛋白磷脂转运蛋白(PLTP)、胆固醇酯转移蛋白(CETP)和卵磷脂-胆固醇酰基转移酶(LCAT)。与 Q Exactive 相比,Lumos 通过减少示踪剂富集压缩来提高示踪剂检测能力,从而在来自 6 名参与者的多个 HDL 大小范围内提供一致的富集数据。我们通过房室模型确定 PLTP 主要在中到大 HDL(alpha2、alpha1 和 alpha0)中分泌,并在循环中从中等大小转移到更大的大小,然后从那里被代谢。CETP 主要在 alpha1 和 alpha2 中分泌,并在循环中保持这些大小。LCAT 主要在中到小 HDL(alpha2、alpha3、prebeta)中分泌。与 PLTP 和 CETP 不同,LCAT 出现在 HDL 上的时间明显延迟,这表明 LCAT 可能在附着到血浆中的 HDL 之前在系统循环外停留一段时间。由于 MS 技术的进步,这些脂质转运蛋白独特代谢结构的确定成为可能。