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血红蛋白怀尔德和血红蛋白巴塔哥尼亚:两种导致显性β地中海贫血的新型延长型β珠蛋白变体。

Hb Wilde and Hb Patagonia: two novel elongated beta-globin variants causing dominant beta-thalassemia.

作者信息

Scheps Karen G, Hasenahuer Marcia A, Parisi Gustavo, Fornasari María S, Pennesi Sandra P, Erramouspe Beatriz, Basack Felisa N, Veber Ernesto S, Aversa Luis, Elena Graciela, Varela Viviana

机构信息

Cátedra de Genética y Biología Molecular, Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Ciudad Autónoma de Buenos Aires, Argentina.

Structural Bioinformatics Group, Unidad de Físico Química, Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, Buenos Aires, Argentina.

出版信息

Eur J Haematol. 2015 Jun;94(6):498-503. doi: 10.1111/ejh.12456. Epub 2014 Nov 27.

Abstract

We describe here the molecular and hematological characteristics of novel frameshift mutations in exon 2 of the HBB gene (in heterozygous state) found in two Argentinean pediatric patients with dominant β-thalassemia-like features. In Hb Wilde, HBB:c.270_273delTGAG(p.Glu90Cysfs67), we detected the deletion of the third base of the codon 89 (T) and the codon 90 (GAG), whereas in Hb Patagonia, HBB:c.296_297dupGT(p.Asp99Trpfs59), the frameshift mutation was due to a duplication of a 'GT' dinucleotide after the second base of codon 98 (GTG). The Hb Patagonia and Hb Wilde mutations would result in elongated β-globin chains with modified C-terminal sequences and a total of 155 and 157 amino acids residues, respectively. Based on bioinformatics and structural analysis, as well as protein modeling, we predict that the elongated β-globins would affect the formation of the αβ dimers and their stability, which would further support the mechanism for the observed clinical features in both patients.

摘要

我们在此描述了在两名具有显性β地中海贫血样特征的阿根廷儿科患者中发现的HBB基因外显子2中的新型移码突变(杂合状态)的分子和血液学特征。在Hb Wilde中,HBB:c.270_273delTGAG(p.Glu90Cysfs67),我们检测到密码子89的第三个碱基(T)和密码子90(GAG)缺失,而在Hb Patagonia中,HBB:c.296_297dupGT(p.Asp99Trpfs59),移码突变是由于密码子98(GTG)的第二个碱基后出现了一个“GT”二核苷酸的重复。Hb Patagonia和Hb Wilde突变将分别导致具有修饰C末端序列的延长β珠蛋白链,分别包含155和157个氨基酸残基。基于生物信息学和结构分析以及蛋白质建模,我们预测延长的β珠蛋白会影响αβ二聚体的形成及其稳定性,这将进一步支持观察到的两名患者临床特征的机制。

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