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Deficiency of lrp4 in zebrafish and human LRP4 mutation induce aberrant activation of Jagged-Notch signaling in fin and limb development.
Tian, Jing; Shao, Jinhui; Liu, Cong; Hou, Hsin-Yu; Chou, Chih-Wei; Shboul, Mohammad; Li, Guo-Qing; El-Khateeb, Mohammad; Samarah, Omar Q; Kou, Yao; Chen, Yu-Hsuan; Chen, Mei-Jen; Lyu, Zhaojie; Chen, Wei-Leng; Chen, Yu-Fu; Sun, Yong-Hua; Liu, Yi-Wen.
Afiliación
  • Tian J; The College of Life Sciences, Northwest University, #229 Taibai North Road, Xi'an, 710069, China. tianjing@nwu.edu.cn.
  • Shao J; State Key Laboratory of Freshwater Ecology and Biotechnology, Wuhan, China. tianjing@nwu.edu.cn.
  • Liu C; The College of Life Sciences, Northwest University, #229 Taibai North Road, Xi'an, 710069, China.
  • Hou HY; The College of Life Sciences, Northwest University, #229 Taibai North Road, Xi'an, 710069, China.
  • Chou CW; Department of Life Science, Tunghai University, No. 1727, Sec. 4, Taiwan Boulevard, Xitun District, Taichung, 40704, Taiwan.
  • Shboul M; Department of Life Science, Tunghai University, No. 1727, Sec. 4, Taiwan Boulevard, Xitun District, Taichung, 40704, Taiwan.
  • Li GQ; Department of Medical Laboratory Sciences, Jordan University of Science and Technology, Irbid, Jordan.
  • El-Khateeb M; The College of Life Sciences, Northwest University, #229 Taibai North Road, Xi'an, 710069, China.
  • Samarah OQ; National Center for Diabetes, Endocrinology and Genetics, Amman, Jordan.
  • Kou Y; Orthopedic Division, Special Surgery Department, School of Medicine, The University of Jordan, Amman, Jordan.
  • Chen YH; The College of Life Sciences, Northwest University, #229 Taibai North Road, Xi'an, 710069, China.
  • Chen MJ; Department of Life Science, Tunghai University, No. 1727, Sec. 4, Taiwan Boulevard, Xitun District, Taichung, 40704, Taiwan.
  • Lyu Z; Department of Life Science, Tunghai University, No. 1727, Sec. 4, Taiwan Boulevard, Xitun District, Taichung, 40704, Taiwan.
  • Chen WL; The College of Life Sciences, Northwest University, #229 Taibai North Road, Xi'an, 710069, China.
  • Chen YF; Department of Life Science, Tunghai University, No. 1727, Sec. 4, Taiwan Boulevard, Xitun District, Taichung, 40704, Taiwan.
  • Sun YH; Department of Life Science, Tunghai University, No. 1727, Sec. 4, Taiwan Boulevard, Xitun District, Taichung, 40704, Taiwan.
  • Liu YW; State Key Laboratory of Freshwater Ecology and Biotechnology, Wuhan, China.
Cell Mol Life Sci ; 76(1): 163-178, 2019 Jan.
Article en En | MEDLINE | ID: mdl-30327840
ABSTRACT
Low-density lipoprotein receptor-related protein 4 (LRP4) is a multi-functional protein implicated in bone, kidney and neurological diseases including Cenani-Lenz syndactyly (CLS), sclerosteosis, osteoporosis, congenital myasthenic syndrome and myasthenia gravis. Why different LRP4 mutation alleles cause distinct and even contrasting disease phenotypes remain unclear. Herein, we utilized the zebrafish model to search for pathways affected by a deficiency of LRP4. The lrp4 knockdown in zebrafish embryos exhibits cyst formations at fin structures and the caudal vein plexus, malformed pectoral fins, defective bone formation and compromised kidney morphogenesis; which partially phenocopied the human LRP4 mutations and were reminiscent of phenotypes resulting form a perturbed Notch signaling pathway. We discovered that the Lrp4-deficient zebrafish manifested increased Notch outputs in addition to enhanced Wnt signaling, with the expression of Notch ligand jagged1b being significantly elevated at the fin structures. To examine conservatism of signaling mechanisms, the effect of LRP4 missense mutations and siRNA knockdowns, including a novel missense mutation c.1117C > T (p.R373W) of LRP4, were tested in mammalian kidney and osteoblast cells. The results showed that LRP4 suppressed both Wnt/ß-Catenin and Notch signaling pathways, and these activities were perturbed either by LRP4 missense mutations or by a knockdown of LRP4. Our finding underscore that LRP4 is required for limiting Jagged-Notch signaling throughout the fin/limb and kidney development, whose perturbation representing a novel mechanism for LRP4-related diseases. Moreover, our study reveals an evolutionarily conserved relationship between LRP4 and Jagged-Notch signaling, which may shed light on how the Notch signaling is fine-tuned during fin/limb development.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Pez Cebra / Transducción de Señal / Regulación del Desarrollo de la Expresión Génica / Proteínas de Pez Cebra / Proteínas Relacionadas con Receptor de LDL / Receptores Notch / Proteínas Serrate-Jagged Tipo de estudio: Prognostic_studies Límite: Animals / Humans Idioma: En Revista: Cell Mol Life Sci Asunto de la revista: BIOLOGIA MOLECULAR Año: 2019 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Pez Cebra / Transducción de Señal / Regulación del Desarrollo de la Expresión Génica / Proteínas de Pez Cebra / Proteínas Relacionadas con Receptor de LDL / Receptores Notch / Proteínas Serrate-Jagged Tipo de estudio: Prognostic_studies Límite: Animals / Humans Idioma: En Revista: Cell Mol Life Sci Asunto de la revista: BIOLOGIA MOLECULAR Año: 2019 Tipo del documento: Article País de afiliación: China