Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, University of Utrecht, 3584 CH Utrecht, The Netherlands.
Netherlands Proteomics Center, 3584 CH Utrecht, The Netherlands.
Proc Natl Acad Sci U S A. 2020 Jul 7;117(27):15554-15564. doi: 10.1073/pnas.2002483117. Epub 2020 Jun 19.
The serum haptoglobin protein (Hp) scavenges toxic hemoglobin (Hb) leaked into the bloodstream from erythrocytes. In humans, there are two frequently occurring allelic forms of Hp, resulting in three genotypes: Homozygous Hp 1-1 and Hp 2-2, and heterozygous Hp 2-1. The Hp genetic polymorphism has an intriguing effect on the quaternary structure of Hp. The simplest form, Hp 1-1, forms dimers consisting of two α1β units, connected by disulfide bridges. Hp 2-1 forms mixtures of linear (α1)(α2)(β) oligomers ( > 1) while Hp 2-2 occurs in cyclic (α2)(β) oligomers ( > 2). Different Hp genotypes bind Hb with different affinities, with Hp 2-2 being the weakest binder. This behavior has a significant influence on Hp's antioxidant capacity, with potentially distinctive personalized clinical consequences. Although Hp has been studied extensively in the past, the finest molecular details of the observed differences in interactions between Hp and Hb are not yet fully understood. Here, we determined the full proteoform profiles and proteoform assemblies of all three most common genetic Hp variants. We combined several state-of-the-art analytical methods, including various forms of chromatography, mass photometry, and different tiers of mass spectrometry, to reveal how the tens to hundreds distinct proteoforms and their assemblies influence Hp's capacity for Hb binding. We extend the current knowledge by showing that Hb binding does not just depend on the donor's genotype, but is also affected by variations in Hp oligomerization, glycosylation, and proteolytic processing of the Hp α-chain.
血清触珠蛋白 (Hp) 可清除从红细胞中漏入血液的有毒血红蛋白 (Hb)。在人类中,Hp 有两种常见的等位基因形式,导致三种基因型:纯合子 Hp 1-1 和 Hp 2-2,以及杂合子 Hp 2-1。Hp 遗传多态性对 Hp 的四级结构具有有趣的影响。最简单的形式 Hp 1-1 形成由两个α1β单元组成的二聚体,通过二硫键连接。Hp 2-1 形成线性 (α1)(α2)(β) 寡聚物(>1)的混合物,而 Hp 2-2 以环状 (α2)(β) 寡聚物(>2)的形式出现。不同的 Hp 基因型与 Hb 的结合亲和力不同,其中 Hp 2-2 的结合力最弱。这种行为对 Hp 的抗氧化能力有显著影响,可能具有独特的个性化临床后果。尽管 Hp 在过去已经得到了广泛的研究,但观察到的 Hp 与 Hb 之间相互作用的差异的最细微分子细节尚未完全了解。在这里,我们确定了所有三种最常见遗传 Hp 变体的完整蛋白形式谱和蛋白形式组装。我们结合了几种最先进的分析方法,包括各种形式的色谱、质光测定和不同层次的质谱,以揭示数十到数百种不同的蛋白形式及其组装如何影响 Hp 与 Hb 的结合能力。我们通过显示 Hb 结合不仅取决于供体的基因型,还受 Hp 寡聚化、糖基化和 Hp α 链的蛋白水解加工的变异影响,扩展了当前的知识。