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Runt and Lozenge function in Drosophila development   总被引:4,自引:0,他引:4  
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Structure and backbone dynamics of Apo-CBFbeta in solution   总被引:1,自引:0,他引:1  
Wolf-Watz M  Grundström T  Härd T 《Biochemistry》2001,40(38):11423-11432
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Core binding factors (CBFs) play key roles in several developmental pathways and in human disease. CBFs consist of a DNA binding CBFalpha subunit and a non-DNA binding CBFbeta subunit that increases the affinity of CBFalpha for DNA. We performed sedimentation equilibrium analyses to unequivocally establish the stoichiometry of the CBFalpha:beta:DNA complex. Dissociation constants for all four equilibria involving the CBFalpha Runt domain, CBFbeta, and DNA were defined. Conformational changes associated with interactions between CBFalpha, CBFbeta, and DNA were monitored by nuclear magnetic resonance and circular dichroism spectroscopy. The data suggest that CBFbeta 'locks in' a high affinity DNA binding conformation of the CBFalpha Runt domain.  相似文献   

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Monoallelic RUNX1 mutations cause familial platelet disorder with predisposition for acute myelogenous leukemia (FPD/AML). Sporadic mono- and biallelic mutations are found at high frequencies in AML M0, in radiation-associated and therapy-related myelodysplastic syndrome and AML, and in isolated cases of AML M2, M5a, M3 relapse, and chronic myelogenous leukemia in blast phase. Mutations in RUNX2 cause the inherited skeletal disorder cleidocranial dysplasia (CCD). Most hematopoietic missense mutations in Runx1 involve DNA-contacting residues in the Runt domain, whereas the majority of CCD mutations in Runx2 are predicted to impair CBFbeta binding or the Runt domain structure. We introduced different classes of missense mutations into Runx1 and characterized their effects on DNA and CBFbeta binding by the Runt domain, and on Runx1 function in vivo. Mutations involving DNA-contacting residues severely inactivate Runx1 function, whereas mutations that affect CBFbeta binding but not DNA binding result in hypomorphic alleles. We conclude that hypomorphic RUNX2 alleles can cause CCD, whereas hematopoietic disease requires more severely inactivating RUNX1 mutations.  相似文献   

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Lozenge蛋白(Lz蛋白)是昆虫的重要转录因子,在昆虫胚胎发育过程中发挥重要作用。为研究Lozenge在西方蜜蜂Apis mellifera中的作用,本研究克隆了Lozenge基因,并对其进行生物信息学分析,同时基于荧光定量PCR技术检测该基因在西方蜜蜂不同发育时期(卵期、幼虫期、蛹期和成年蜂)和10日龄哺育蜂各组织的表达谱。生物信息学分析结果显示,Lozenge基因的开放阅读框(ORF)为1 554 bp,共编码517个氨基酸,预测分子量为54.63918 kDa,等电点为6.08;结构域预测分析发现Lozenge蛋白含有一个Runt结构域,多物种蛋白序列对比发现该蛋白同源性高。时期表达谱表明,该基因在第1日卵和第2日卵的表达量远高于其他时期,在卵期表达量随时间依次递减,幼虫期表达量极低,蛹期表达量呈先增后减的趋势,而成年蜂中均有表达;组织表达谱显示,该基因在哺育蜂头部、上颚腺中的表达量较高,而在腹部的表达量低。这些结果表明,Lozenge基因可能在西方蜜蜂胚胎期细胞发育过程、哺育蜂蜂王浆合成和分泌过程中发挥重要作用,这些结果为该基因功能的深入研究提供了重要的理论参考。  相似文献   

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