Sun F, Knebelmann B, Pueyo M E, Zouali H, Lesage S, Vaxillaire M, Passa P, Cohen D, Velho G, Antignac C
Centre d'Etude du Polymorphisme Humain and Genethon, Paris, France.
J Clin Invest. 1993 Sep;92(3):1174-80. doi: 10.1172/JCI116687.
Missense and nonsense mutations in the glucokinase gene have recently been shown to result in maturity-onset diabetes of the young (MODY), a subtype of non-insulin-dependent diabetes mellitus with early age of onset. Glucokinase catalyzes the formation of glucose-6-phosphate and is involved in the regulation of insulin secretion and integration of hepatic intermediary metabolism. Nucleotide sequence analysis of exon 4 and its flanking intronic regions of the glucokinase gene, in four hyperglycemic individuals of a MODY family, revealed a deletion of 15 base pairs, which removed the t of the gt in the donor splice site of intron 4, and the following 14 base pairs. This deletion resulted in two aberrant transcripts, which were analyzed by reverse transcription of RNA from lymphoblastoid cells obtained from a diabetic patient. In one of the abnormal transcripts, exon 5 is missing, while in the other, the activation of a cryptic splice site leads to the removal of the last eight codons of exon 4. This intronic deletion in a donor splice site seems to cause a more severe form of glucose intolerance, compared with point mutations described in glucokinase. This might be due to a more pronounced effect on insulin secretion.
最近研究表明,葡萄糖激酶基因中的错义突变和无义突变会导致青年发病的成年型糖尿病(MODY),这是一种发病年龄较早的非胰岛素依赖型糖尿病亚型。葡萄糖激酶催化葡萄糖-6-磷酸的形成,并参与胰岛素分泌的调节以及肝脏中间代谢的整合。对一个MODY家族的四名高血糖个体的葡萄糖激酶基因第4外显子及其侧翼内含子区域进行核苷酸序列分析,发现有15个碱基对缺失,这导致内含子4供体剪接位点处的gt中的t以及随后的14个碱基对缺失。这种缺失产生了两种异常转录本,通过对一名糖尿病患者的淋巴母细胞RNA进行逆转录来分析这些转录本。在其中一种异常转录本中,外显子5缺失,而在另一种中,一个隐蔽剪接位点的激活导致外显子4的最后八个密码子被去除。与葡萄糖激酶中描述的点突变相比,这种供体剪接位点的内含子缺失似乎会导致更严重的葡萄糖不耐受形式。这可能是由于对胰岛素分泌的影响更为显著。