Flanagan Sarah E, Ellard Sian
Institute of Biomedical and Clinical Science, Peninsula Medical School, Exeter, UK.
Methods Mol Biol. 2008;491:235-45. doi: 10.1007/978-1-59745-526-8_18.
The beta-cell ATP-sensitive potassium channel is a key component of stimulus -secretion coupling in the pancreatic beta-cell. The channel consists of four subunits of the inwardly rectifying potassium channel Kir6.2 and four subunits of the sulfonylurea receptor 1. Loss of function mutations in the KCNJ11 and ABCC8 genes that encode for Kir6.2 and SUR1 can cause over-secretion of insulin and result in hyperinsulinism of infancy, while gain of function mutations in KCNJ11 and ABCC8 have recently been described that result in the opposite phenotype of diabetes.Genetic testing is important for patients with hyperinsulinism or neonatal diabetes, as identification of a K(ATP) channel mutation confirms a diagnosis of their disorder. This genetic information may direct the clinical management; for example, patients with neonatal diabetes may transfer from insulin to sulfonylu-reas with an improvement in glycaemic control. The genetic diagnosis can also help to predict the likely course of the disease and may allow accurate counselling in terms of recurrence risk for these families.This chapter focuses on the methodology used for the analysis of the KCNJ11 gene by direct sequencing. The same principles can be employed for ABCC8 analysis although the polymerase chain reaction (PCR) primers will differ. Details on DNA extraction from peripheral blood leukocytes, amplification of the KCNJ11 gene by the PCR, sequencing, and mutation detection are provided.
β细胞ATP敏感性钾通道是胰腺β细胞刺激-分泌偶联的关键组成部分。该通道由内向整流钾通道Kir6.2的四个亚基和磺脲类受体1的四个亚基组成。编码Kir6.2和SUR1的KCNJ11和ABCC8基因的功能丧失突变可导致胰岛素过度分泌,进而导致婴儿期高胰岛素血症,而最近发现KCNJ11和ABCC8的功能获得性突变会导致相反的糖尿病表型。基因检测对高胰岛素血症或新生儿糖尿病患者很重要,因为识别K(ATP)通道突变可确诊其疾病。这一基因信息可指导临床管理;例如,新生儿糖尿病患者可能从使用胰岛素转为使用磺脲类药物,血糖控制情况会有所改善。基因诊断还有助于预测疾病的可能病程,并可为这些家庭的复发风险提供准确的咨询。本章重点介绍通过直接测序分析KCNJ11基因的方法。虽然聚合酶链反应(PCR)引物会有所不同,但相同的原理可用于ABCC8分析。文中提供了从外周血白细胞中提取DNA、通过PCR扩增KCNJ11基因、测序以及突变检测的详细信息。