Jansen Marnix, Ten Klooster Jean Paul, Offerhaus G Johan, Clevers Hans
Hubrecht Institute, Developmental Biology and Stem Cell Research, 3584 CT Utrecht, The Netherlands.
Physiol Rev. 2009 Jul;89(3):777-98. doi: 10.1152/physrev.00026.2008.
Research on the LKB1 tumor suppressor protein mutated in cancer-prone Peutz-Jeghers patients has continued at a feverish pace following exciting developments linking energy metabolism and cancer development. This review summarizes the current state of research on the LKB1 tumor suppressor. The weight of the evidence currently indicates an evolutionary conserved role for the protein in the regulation of various aspects of cellular polarity and energy metabolism. We focus on studies examining the concept that both cellular polarity and energy metabolism are regulated through the conserved LKB1-AMPK signal transduction pathway. Recent studies from a variety of model organisms have given new insight into the mechanism of polyp development and cancer formation in Peutz-Jeghers patients and the role of LKB1 mutation in sporadic tumorigenesis. Conditional LKB1 mouse models have outlined a tissue-dependent context for pathway activation and suggest that LKB1 may affect different AMPK isoforms independently. Elucidation of the molecular mechanism responsible for Peutz-Jeghers syndrome will undoubtedly reveal important insight into cancer development in the larger population.
在将能量代谢与癌症发展联系起来的激动人心的进展之后,对易患癌症的佩-吉二氏综合征(Peutz-Jeghers)患者中发生突变的LKB1肿瘤抑制蛋白的研究一直在热火朝天地进行。这篇综述总结了LKB1肿瘤抑制蛋白的当前研究状况。目前的证据表明,该蛋白在调节细胞极性和能量代谢的各个方面具有进化保守作用。我们重点关注那些研究细胞极性和能量代谢均通过保守的LKB1-AMPK信号转导途径进行调节这一概念的研究。来自多种模式生物的最新研究为佩-吉二氏综合征患者的息肉发展和癌症形成机制以及LKB1突变在散发性肿瘤发生中的作用提供了新的见解。条件性LKB1小鼠模型勾勒出了途径激活的组织依赖性背景,并表明LKB1可能独立影响不同的AMPK亚型。阐明导致佩-吉二氏综合征的分子机制无疑将为更广泛人群的癌症发展揭示重要的见解。