Martin Alberto, Salvador Fernando, Moreno-Bueno Gema, Floristán Alfredo, Ruiz-Herguido Cristina, Cuevas Eva P, Morales Saleta, Santos Vanesa, Csiszar Katalin, Dubus Pierre, Haigh Jody J, Bigas Anna, Portillo Francisco, Cano Amparo
Departamento de Bioquímica, UAM, Instituto de Investigaciones Biomédicas "Alberto Sols" CSIC-UAM, IdiPAZ, Madrid, Spain.
Departamento de Bioquímica, UAM, Instituto de Investigaciones Biomédicas "Alberto Sols" CSIC-UAM, IdiPAZ, Madrid, Spain Fundación MD Anderson International Madrid, Madrid, Spain.
EMBO J. 2015 Apr 15;34(8):1090-109. doi: 10.15252/embj.201489975. Epub 2015 Mar 10.
Lysyl oxidase-like 2 (LOXL2) is involved in a wide range of physiological and pathological processes, including fibrosis and tumor progression, implicating intracellular and extracellular functions. To explore the specific in vivo role of LOXL2 in physiological and tumor contexts, we generated conditional gain- and loss-of-function mouse models. Germ-line deletion of Loxl2 promotes lethality in half of newborn mice mainly associated to congenital heart defects, while Loxl2 overexpression triggers male sterility due to epididymal dysfunction caused by epithelial disorganization, fibrosis and acute inflammation. Remarkably, when challenged to chemical skin carcinogenesis, Loxl2-overexpressing mice increased tumor burden and malignant progression, while Loxl2-deficient mice exhibit the opposite phenotypes. Loxl2 levels in premalignant tumors negatively correlate with expression of epidermal differentiation markers and components of the Notch1 pathway. We show that LOXL2 is a direct repressor of NOTCH1. Additionally, we identify an exclusive expression pattern between LOXL2 and members of the canonical NOTCH1 pathway in human HNSCC. Our data identify for the first time novel LOXL2 roles in tissue homeostasis and support it as a target for SCC therapy.
赖氨酰氧化酶样2(LOXL2)参与多种生理和病理过程,包括纤维化和肿瘤进展,涉及细胞内和细胞外功能。为了探究LOXL2在生理和肿瘤环境中的体内特定作用,我们构建了条件性功能获得和功能缺失小鼠模型。Loxl2的种系缺失导致一半新生小鼠死亡,主要与先天性心脏缺陷有关,而Loxl2过表达由于上皮组织紊乱、纤维化和急性炎症引起的附睾功能障碍导致雄性不育。值得注意的是,在化学诱导的皮肤癌发生过程中,Loxl2过表达的小鼠肿瘤负担增加且恶性进展,而Loxl2缺陷小鼠表现出相反的表型。癌前肿瘤中的Loxl2水平与表皮分化标志物和Notch1途径成分的表达呈负相关。我们发现LOXL2是NOTCH1的直接抑制因子。此外,我们在人类头颈部鳞状细胞癌(HNSCC)中确定了LOXL2与经典NOTCH1途径成员之间的独特表达模式。我们的数据首次确定了LOXL2在组织稳态中的新作用,并支持将其作为鳞状细胞癌治疗的靶点。