Lim Amareth, Prokaeva Tatiana, Connor Lawreen H, Falk Rodney H, Skinner Martha, Costello Catherine E
Amyloid. 2002 Jun;9(2):134-40.
Transthyretin (TTR) is a 127-amino acid residue protein synthesized mainly in the liver and in several minor sites, including the choroid plexus and the eye. In plasma, TTR circulates as a homotetramer and transports the hormone thyroxine and the retinol-binding protein-vitamin A complex. It is hypothesized that amino acid substitutions in TTR destabilize the tetramer by causing each subunit toform intermediates that may self-associate into amyloid fibrils. Deposition of wild type TTR, its variants and/or fragments as amyloid fibrils in tissues and organs is associated with familial transthyretin amyloidosis (ATTR). Reported herein is the characterization of a novel TTR Thr59Lys/Arg104His in a patient of Chinese ancestry, who was diagnosed with ATTR. The two variant proteins and the double gene mutations in this compound heterozygous case were detected and identified using a multifaceted approach consisting of isoelectric focusing, electrospray ionization mass spectrometry (MS), matrix-assisted laser desorption/ionization time-of-flight MS in combination with enzymatic digestion, and direct DNA sequence analysis. Previous studies have shown that the TTR Arg104His variant is non-pathologic. It appeared to provide a protective effect in another compound heterozygous case (TTR Val30Met/Arg104His). However, the TTR Arg104His variant when presented with the TTR Thr59Lys variant did not seem to have any protective role.
转甲状腺素蛋白(TTR)是一种由127个氨基酸残基组成的蛋白质,主要在肝脏以及包括脉络丛和眼睛在内的几个次要部位合成。在血浆中,TTR以同四聚体形式循环,并运输甲状腺激素甲状腺素和视黄醇结合蛋白 - 维生素A复合物。据推测,TTR中的氨基酸取代会使每个亚基形成可能自组装成淀粉样纤维的中间体,从而使四聚体不稳定。野生型TTR、其变体和/或片段在组织和器官中以淀粉样纤维形式沉积与家族性转甲状腺素蛋白淀粉样变性(ATTR)相关。本文报道了一名华裔患者中一种新型TTR Thr59Lys/Arg104His的特征,该患者被诊断为ATTR。使用包括等电聚焦、电喷雾电离质谱(MS)、基质辅助激光解吸/电离飞行时间质谱结合酶切以及直接DNA序列分析的多方面方法,检测并鉴定了该复合杂合病例中的两种变体蛋白和双基因突变。先前的研究表明,TTR Arg104His变体无病理学意义。在另一个复合杂合病例(TTR Val30Met/Arg104His)中,它似乎具有保护作用。然而,当TTR Arg104His变体与TTR Thr59Lys变体同时出现时,似乎没有任何保护作用。