中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
LMO4 Functions As a Negative Regulator of Sensory Organ Formation in the Mammalian Cochlea

文献类型:期刊论文

作者Deng M1; Luo XJ2; Liang GQ3; Huang L1,4; Hu F1,4; Kiernan AE1; Gan L[*]1,3; Pan L1; Yang H1; Xie XL1
刊名JOURNAL OF NEUROSCIENCE
出版日期2014
卷号34期号:30页码:10072-10077
关键词inner ear development LIM-domain LMO4 organ of Corti cochlea transcriptional regulator
通讯作者lin_gan@urmc.rochester.edu
合作状况其它
英文摘要

In mammals, formation of the auditory sensory organ (the organ of Corti) is restricted to a specialized area of the cochlea. However, the molecular mechanisms limiting sensory formation to this discrete region in the ventral cochlear duct are not well understood, nor is it known whether other regions of the cochlea have the competence to form the organ of Corti. Here we identify LMO4, a LIM-domain-only nuclear protein, as a negative regulator of sensory organ formation in the cochlea. Inactivation of Lmo4 in mice leads to an ectopic organ of Corti (eOC) located in the lateral cochlea. The eOC retains the features of the native organ, including inner and outer hair cells, supporting cells, and other nonsensory specialized cell types. However, the eOC shows an orientation opposite to the native organ, such that the eOC appears as a mirror-image duplication to the native organ of Corti. These data demonstrate a novel sensory competent region in the lateral cochlear duct that is regulated by LMO4 and may be amenable to therapeutic manipulation.

收录类别SCI
资助信息ThisworkwassupportedbytheNationalInstituteofHealthGrantstoL.G.(DC008856)andA.E.K.(DC009250), andtoL.G.fromtheNationalNaturalScienceFoundationofChinaGrant81271006,andtheResearchtoPrevent BlindnesschallengegranttotheDepartmentofOphthalmologyattheUniversityofRochester.
语种英语
源URL[http://159.226.149.26:8080/handle/152453/9309]  
专题昆明动物研究所_神经系统疾病
昆明动物研究所_动物模型与人类重大疾病机理重点实验室
作者单位1.FlaumEyeInstituteandDepartmentofOphthalmology,UniversityofRochester,Rochester,NewYork14642
2.KeyLaboratoryofAnimalModelsand HumanDiseaseMechanismsoftheChineseAcademyofSciencesandYunnanProvince,KunmingInstituteofZoology,Kunming,Yunnan650223,China
3.CollegeofLifeandEnvironmentalSciences,HangzhouNormalUniversity,Hangzhou,Zhejiang310036,China
4.GannanMedicalUniversity,Ganzhou, Jiangxi341000,China
推荐引用方式
GB/T 7714
Deng M,Luo XJ,Liang GQ,et al. LMO4 Functions As a Negative Regulator of Sensory Organ Formation in the Mammalian Cochlea[J]. JOURNAL OF NEUROSCIENCE,2014,34(30):10072-10077.
APA Deng M.,Luo XJ.,Liang GQ.,Huang L.,Hu F.,...&Xie XL.(2014).LMO4 Functions As a Negative Regulator of Sensory Organ Formation in the Mammalian Cochlea.JOURNAL OF NEUROSCIENCE,34(30),10072-10077.
MLA Deng M,et al."LMO4 Functions As a Negative Regulator of Sensory Organ Formation in the Mammalian Cochlea".JOURNAL OF NEUROSCIENCE 34.30(2014):10072-10077.

入库方式: OAI收割

来源:昆明动物研究所

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