Ikeda Yuichi, Hiroi Yukio, Hosoda Toru, Utsunomiya Toshinori, Matsuo Shuzo, Ito Tsuyoshi, Inoue Jun-ichi, Sumiyoshi Tetsuya, Takano Hiroyuki, Nagai Ryozo, Komuro Issei
Department of Cardiovascular Medicine, University of Tokyo Graduate School of Medicine, Japan.
Circ J. 2002 Jun;66(6):561-3. doi: 10.1253/circj.66.561.
The homeobox transcription factor CSX/NKX2.5, which is a vertebrate homologue of the Drosophila gene tinman, is essential for cardiac development. It is expressed in the early cardiac mesoderm and in heart muscle lineage throughout life. Homozygous deletion of CSX/NKX2.5 causes early embryonic lethality in mice because cardiac development is arrested at the linear heart tube stage. Heterozygous mutation of human CSX/NKX2.5 has been associated with various congenital heart diseases such as atrial septal defect (ASD), ventricular septal defect, tetralogy of Fallot, and tricuspid valve abnormalities, including Ebstein's anomaly. Additionally, CSX/NKX2.5 mutation causes atrioventricular (AV) conduction block with or without associated congenital heart diseases. Ten different heterozygous mutations have been already reported and a new point mutation, which is a C-to-A transition (Cys264ter) at nucleotide 901 of CSX/NKX2.5, results in the production of a truncated protein occurring COOH-terminal to the homeodomain of CSX/NKX2.5. The mutation was found in a patient with familial ASD and first-degree AV block; 4 members from 3 generations had secundum-type ASD and first-degree AV block.
同源框转录因子CSX/NKX2.5是果蝇基因tinman的脊椎动物同源物,对心脏发育至关重要。它在早期心脏中胚层以及终生的心肌谱系中表达。CSX/NKX2.5的纯合缺失会导致小鼠早期胚胎致死,因为心脏发育在心脏管阶段停滞。人类CSX/NKX2.5的杂合突变与多种先天性心脏病有关,如房间隔缺损(ASD)、室间隔缺损、法洛四联症和三尖瓣异常,包括埃布斯坦畸形。此外,CSX/NKX2.5突变会导致房室(AV)传导阻滞,伴或不伴有相关先天性心脏病。已经报道了十种不同的杂合突变,一种新的点突变,即CSX/NKX2.5第901位核苷酸处的C到A转换(Cys264ter),导致在CSX/NKX2.5同源结构域的COOH末端产生截短蛋白。该突变在一名患有家族性ASD和一度AV阻滞的患者中发现;来自3代的4名成员患有继发孔型ASD和一度AV阻滞。