Buchet-Poyau K, Mehenni H, Radhakrishna U, Antonarakis S E
Division of Medical Genetics, Geneva University Medical School, and University Hospitals, Geneva, Switzerland.
Cytogenet Genome Res. 2002;97(3-4):171-8. doi: 10.1159/000066620.
Pathogenic mutations in the serine/threonine kinase STK11 (alias LKB1) cause Peutz-Jeghers syndrome (PJS) in most affected individuals. However, in a considerable number of PJS-patients mutations cannot be detected in STK11 suggesting genetic heterogeneity. One PJS family without STK11 mutations (PJS07) has previously been described with significant evidence for linkage to a second potential PJS locus on 19q13.3-->q13.4. In this study we investigated candidate genes within markers D19S180 and D19S254, since multipoint linkage analysis yielded significant LOD scores for this region in this family. Four genes in the region (cytohesin 2: PSCD2, kallikrein 10: KLK10, protein kinase C gamma: PRKCG, and serine/threonine kinase 13: STK13) potentially involved in growth inhibitory pathways or in the pathophysiology of can- cer, were considered as candidates. We first determined the genomic structure of the PSCD2 and PRKCG genes, and performed mutation analysis of all exons and exon-intron junctions of the four genes, in the PJS07 family. No pathogenic mutation was identified in these four genes in affected individuals. A very rare polymorphism resulting in a conserved amino acid change Lys to Arg was found in PSCD2. These data provide considerable evidence for exclusion of these four genes as candidates for the second locus on 19q13.3-->q13.4 in PJS. Finally, we also excluded the recently identified STK11-interacting protein gene (STK11IP, alias LIP1) mapped in 2q36 as candidate for PJS in the PJS07 family, although this could be a good candidate in other non-STK11/LKB1 families.
丝氨酸/苏氨酸激酶STK11(别名LKB1)的致病性突变在大多数受影响个体中会导致黑斑息肉综合征(PJS)。然而,在相当数量的PJS患者中,未在STK11中检测到突变,这表明存在遗传异质性。先前已描述了一个无STK11突变的PJS家系(PJS07),有充分证据表明其与19q13.3→q13.4上的第二个潜在PJS位点连锁。在本研究中,我们调查了标记D19S180和D19S254内的候选基因,因为多点连锁分析在该家系的此区域产生了显著的LOD分数。该区域中可能参与生长抑制途径或癌症病理生理学的四个基因(细胞粘附素2:PSCD2、激肽释放酶10:KLK10、蛋白激酶Cγ:PRKCG和丝氨酸/苏氨酸激酶13:STK13)被视为候选基因。我们首先确定了PSCD2和PRKCG基因的基因组结构,并对PJS07家系中这四个基因的所有外显子和外显子-内含子连接处进行了突变分析。在受影响个体的这四个基因中未发现致病性突变。在PSCD2中发现了一个非常罕见的多态性,导致保守氨基酸从赖氨酸变为精氨酸。这些数据为排除这四个基因作为PJS中19q13.3→q13.4上第二个位点的候选基因提供了充分证据。最后,我们还排除了最近确定的位于2q36的STK11相互作用蛋白基因(STK11IP,别名LIP1)作为PJS07家系中PJS的候选基因,尽管它在其他非STK11/LKB1家系中可能是一个很好的候选基因。