Prapunpoj Porntip, Leelawatwatana Ladda, Schreiber Gerhard, Richardson Samantha J
Department of Biochemistry, Faculty of Science, Prince of Songkla University, Hat-Yai, Songkhla, Thailand.
FEBS J. 2006 Sep;273(17):4013-23. doi: 10.1111/j.1742-4658.2006.05404.x. Epub 2006 Jul 19.
The relationship between the structure of the N-terminal sequence of transthyretin (TTR) and the binding of thyroid hormone was studied. A recombinant human TTR and two derivatives of Crocodylus porosus TTRs, one with the N-terminal sequence replaced by that of human TTR (human/crocTTR), the other with the N-terminal segment removed (truncated crocTTR), were synthesized in Pichia pastoris. Subunit mass, native molecular weight, tetramer formation, cross-reactivity to TTR antibodies and binding to retinol-binding protein of these recombinant TTRs were similar to TTRs found in nature. Analysis of the binding affinity to thyroid hormones of recombinant human TTR showed a dissociation constant (Kd) for triiodothyronine (T3) of 53.26+/-3.97 nM and for thyroxine (T4) of 19.73+/-0.13 nM. These values are similar to those found for TTR purified from human serum, and gave a Kd T3/T4 ratio of 2.70. The affinity for T4 of human/crocTTR (Kd=22.75+/-1.89 nM) was higher than those of both human TTR and C. porosus TTR, but the affinity for T3 (Kd=5.40+/-0.25 nM) was similar to C. porosus TTR, giving a Kd T3/T4 ratio of 0.24. A similar affinity for both T3 (Kd=57.78+/-5.65 nM) and T4 (Kd=59.72+/-3.38 nM), with a Kd T3/T4 ratio of 0.97, was observed for truncated crocTTR. The obtained results strongly confirm the hypothesis that the unstructured N-terminal region of TTR critically influences the specificity and affinity of thyroid hormone binding to TTR.
研究了转甲状腺素蛋白(TTR)N端序列结构与甲状腺激素结合之间的关系。在毕赤酵母中合成了重组人TTR以及两种湾鳄TTR衍生物,一种其N端序列被人TTR的N端序列取代(人/湾鳄TTR),另一种去除了N端片段(截短的湾鳄TTR)。这些重组TTR的亚基质量、天然分子量、四聚体形成、对TTR抗体的交叉反应性以及与视黄醇结合蛋白的结合情况与天然存在的TTR相似。重组人TTR对甲状腺激素结合亲和力的分析显示,其三碘甲状腺原氨酸(T3)的解离常数(Kd)为53.26±3.97 nM,甲状腺素(T4)的解离常数为19.73±0.13 nM。这些值与从人血清中纯化得到的TTR的值相似,T3/T4的Kd比值为2.70。人/湾鳄TTR对T4的亲和力(Kd = 22.75±1.89 nM)高于人TTR和湾鳄TTR,但对T3的亲和力(Kd = 5.40±0.25 nM)与湾鳄TTR相似,T3/T4的Kd比值为0.24。截短的湾鳄TTR对T3(Kd = 57.78±5.65 nM)和T4(Kd = 59.72±3.38 nM)的亲和力相似,T3/T4的Kd比值为0.97。所得结果有力地证实了以下假设:TTR的无结构N端区域对甲状腺激素与TTR结合的特异性和亲和力有至关重要的影响。