Rivolta Carina M, Targovnik Héctor M
Laboratorio de Biología Molecular, Cátedra de Genética y Biología Molecular, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Junín 956, 1113 - Buenos Aires, Argentina.
Clin Chim Acta. 2006 Dec;374(1-2):8-24. doi: 10.1016/j.cca.2006.05.043. Epub 2006 Jun 7.
Synthesis of tri-iodothyronine (T(3)) and thyroxine (T(4)) follows a metabolic pathway that depends on the integrity of the thyroglobulin structure. This large glycoprotein is a homodimer of 660 kDa synthesized and secreted by the thyroid cells into the lumen of thyroid follicle. In humans it is coded by a single copy gene, 270 kb long, that maps on chromosome 8q24 and contains an 8.5 kb coding sequence divided into 48 exons. The preprotein monomer is composed of a 19-amino acid signal peptide followed by a 2749-amino acid polypeptide. In the last decade, several mutations in the thyroglobulin gene were reported. In animals, four of them have been observed in Afrikander cattle (p.R697X), Dutch goats (p.Y296X), cog/cog mouse (p.L2263P) and rdw rats (p.G2300R). Mutations in the human thyroglobulin gene are associated with congenital goiter or endemic and nonendemic simple goiter. Thirty-five inactivating mutations have been identified and characterized in the human thyroglobulin gene: 20 missense mutations (p.C175G, p.Q310P, p.Q851H, p.S971I, p.R989C, p.P993L, p.C1058R, p.C1245R, p.S1447N, p.C1588F, p.C1878Y, p.I1912V, p.C1977S, p.C1987Y, p.C2135Y, p.R2223H, p.G2300D, p.R2317Q, p.G2355V, p.G2356R), 8 splice site mutations (g.IVS3-3C>G, g.IVS5+1G>A, g.IVS10-1G>A, g.IVS24+1G>C, g.IVS30+1G>T, g.IVS30+1G>A, g.IVS34-1G>C, g.IVS45+2T>A) 5 nonsense mutations (p.R277X, p.Q692X, p.W1418X, p.R1511X, p.Q2638X) and 2 single nucleotide deletions (p.G362fsX382, p.D1494fsX1547). The thyroglobulin gene has been also identified as the major susceptibility gene for familial autoimmune thyroid diseases (AITD) by linkage analysis using highly informative polymorphic markers. In conclusion the identification of mutations in the thyrogobulin gene has provided important insights into structure-function relationships.
三碘甲状腺原氨酸(T3)和甲状腺素(T4)的合成遵循一条依赖于甲状腺球蛋白结构完整性的代谢途径。这种大型糖蛋白是由甲状腺细胞合成并分泌到甲状腺滤泡腔内的660 kDa同型二聚体。在人类中,它由一个单拷贝基因编码,该基因长270 kb,定位于8号染色体q24,包含一个8.5 kb的编码序列,分为48个外显子。前蛋白单体由一个19个氨基酸的信号肽和一个2749个氨基酸的多肽组成。在过去十年中,有几例甲状腺球蛋白基因突变的报道。在动物中,在非洲瘤牛(p.R697X)、荷兰山羊(p.Y296X)、cog/cog小鼠(p.L2263P)和rdw大鼠(p.G2300R)中观察到了其中4种突变。人类甲状腺球蛋白基因突变与先天性甲状腺肿或地方性和非地方性单纯性甲状腺肿有关。已在人类甲状腺球蛋白基因中鉴定并表征了35种失活突变:20种错义突变(p.C175G、p.Q310P、p.Q851H、p.S971I、p.R989C、p.P993L、p.C1058R、p.C1245R、p.S1447N、p.C1588F、p.C1878Y、p.I1912V、p.C1977S、p.C1987Y、p.C2135Y、p.R2223H、p.G2300D p.R2317Q、p.G2355V、p.G2356R)、8种剪接位点突变(g.IVS3 - 3C>G、g.IVS5 + 1G>A、g.IVS10 - 1G>A、g.IVS24 + 1G>C、g.IVS30 + 1G>T、g.IVS30 + 1G>A、g.IVS34 - 1G>C、g.IVS45 + 2T>A)、5种无义突变(p.R277X、p.Q692X、p.W1418X、p.R1511X、p.Q2638X)和2种单核苷酸缺失(p.G362fsX382、p.D1494fsX1;547)。通过使用高信息多态性标记的连锁分析,甲状腺球蛋白基因也被确定为家族性自身免疫性甲状腺疾病(AITD)的主要易感基因。总之,甲状腺球蛋白基因突变的鉴定为结构 - 功能关系提供了重要见解。