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对黑斑息肉综合征患者中发现的LKB1/STK11突变体和两种异常异构体的功能分析。

Functional analysis of LKB1/STK11 mutants and two aberrant isoforms found in Peutz-Jeghers Syndrome patients.

作者信息

Boudeau J, Kieloch A, Alessi D R, Stella A, Guanti G, Resta N

机构信息

MRC Protein Phosphorylation Unit, MSI/WTB complex, University of Dundee, Dow Street, Dundee DD1 5EH, Scotland.

出版信息

Hum Mutat. 2003 Feb;21(2):172. doi: 10.1002/humu.9112.

Abstract

Peutz-Jeghers Syndrome (PJS) is thought to be caused by mutations occurring in the widely expressed serine/threonine protein kinase named LKB1/STK11. Recent work has led to the identification of four mutants (R304W, I177N, K175-D176del, L263fsX286) and two novel aberrant LKB1/STK11 cDNA isoforms (r291-464del, r485-1283del) in a group of PJS Italian patients. Three of the four mutations only change 1 or 2 amino acids in the LKB1/STK11 catalytic domain. Here we demonstrate that all six LKB1/STK11 variants analysed are completely inactive in vitro as they were unable to autophosphorylate at Thr336, the major LKB1/STK11 autophosphorylation site, and to phosphorylate the p53 tumour suppressor protein. We also show that 5 out of the 6 variants are entirely localised in the nucleus in contrast to the wild type LKB1/STK11, which is detected in both the nucleus and cytoplasm. Finally we demonstrate that all 6 LKB1/STK11 variants, in contrast to wild type LKB1/STK11, are unable to suppress the growth of melanoma G361 cells. Taken together, these results demonstrate that the LKB1 mutations investigated in this study lead to the loss of serine/threonine kinase activity and are therefore likely to be the primary cause of PJS development in the patients that they were isolated from.

摘要

黑斑息肉综合征(PJS)被认为是由广泛表达的丝氨酸/苏氨酸蛋白激酶LKB1/STK11发生突变引起的。最近的研究工作已在一组意大利PJS患者中鉴定出四个突变体(R304W、I177N、K175-D176del、L263fsX286)和两种新的异常LKB1/STK11 cDNA亚型(r291-464del、r485-1283del)。四个突变体中的三个仅在LKB1/STK11催化结构域中改变1个或2个氨基酸。在这里,我们证明所分析的所有六种LKB1/STK11变体在体外完全无活性,因为它们无法在主要的LKB1/STK11自磷酸化位点Thr336处进行自磷酸化,也无法磷酸化p53肿瘤抑制蛋白。我们还表明,与野生型LKB1/STK11(在细胞核和细胞质中均有检测到)相比,6种变体中的5种完全定位于细胞核中。最后,我们证明,与野生型LKB1/STK11相比,所有6种LKB1/STK11变体均无法抑制黑色素瘤G361细胞的生长。综上所述,这些结果表明,本研究中所研究的LKB1突变导致丝氨酸/苏氨酸激酶活性丧失,因此很可能是从其分离出这些突变的患者发生PJS的主要原因。

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