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家族性和非家族性黑斑息肉综合征及散发性睾丸癌中LKB1的突变与功能受损

Mutations and impaired function of LKB1 in familial and non-familial Peutz-Jeghers syndrome and a sporadic testicular cancer.

作者信息

Ylikorkala A, Avizienyte E, Tomlinson I P, Tiainen M, Roth S, Loukola A, Hemminki A, Johansson M, Sistonen P, Markie D, Neale K, Phillips R, Zauber P, Twama T, Sampson J, Järvinen H, Mäkelä T P, Aaltonen L A

机构信息

Hartman Institute and Biocentrum Helsinki and Department of Medical Genetics, Haartman Institute, PO Box 21, University of Helsinki, 00014 Helsinki, Finland.

出版信息

Hum Mol Genet. 1999 Jan;8(1):45-51. doi: 10.1093/hmg/8.1.45.

Abstract

Germline mutations in LKB1 have been reported to underlie familial Peutz-Jeghers syndrome (PJS) with intestinal hamartomatous polyps and an elevated risk of various neoplasms. To investigate the prevalence of LKB1 germline mutations in PJS more generally, we studied samples from 33 unrelated PJS patients including eight non-familial sporadic patients, 20 familial patients and five patients with unknown family history. Nineteen germline mutations were identified, 12 (60%) in familial and four (50%) in sporadic cases. LKB1 mutations were not detected in 14 (42%) patients, indicating that the existence of additional minor PJS loci cannot be excluded. LKB1 is predicted to encode a serine/threonine kinase. To demonstrate the putative Lkb1 kinase function and to study the consequences of LKB1 mutations in PJS and sporadic tumors, we have analyzed the kinase activity of wild-type and mutant Lkb1 proteins. Interestingly, while most of the small deletions or missense mutations resulted in loss-of-function alleles, one missense mutation (G163D) previously identified in a sporadic testicular tumor demonstrated severely impaired but detectable kinase activity.

摘要

据报道,LKB1的种系突变是家族性黑斑息肉综合征(PJS)的基础,该综合征伴有肠道错构瘤性息肉,且患各种肿瘤的风险增加。为了更全面地研究PJS中LKB1种系突变的发生率,我们研究了33例无亲缘关系的PJS患者的样本,其中包括8例非家族性散发性患者、20例家族性患者和5例家族史不明的患者。共鉴定出19种种系突变,家族性病例中有12种(60%),散发性病例中有4种(50%)。14例(42%)患者未检测到LKB1突变,这表明不能排除存在其他次要的PJS基因座。LKB1预计编码一种丝氨酸/苏氨酸激酶。为了证明假定的Lkb1激酶功能,并研究PJS和散发性肿瘤中LKB1突变的后果,我们分析了野生型和突变型Lkb1蛋白的激酶活性。有趣的是,虽然大多数小缺失或错义突变导致功能丧失等位基因,但先前在散发性睾丸肿瘤中鉴定出的一个错义突变(G163D)显示激酶活性严重受损但仍可检测到。

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