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Comparative promoter analysis allows de novo identification of specialized cell junction-associated proteins

机译:比较启动子分析可以从头鉴定特化的细胞连接相关蛋白

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Shared transcription factor binding sites that are conserved in distance and orientation help control the expression of gene products that act together in the same biological context. New bioinformatics approaches allow the rapid characterization of shared promoter structures and can be used to find novel interacting molecules. Here, these principles are demonstrated by using molecules linked to the unique functional unit of the glomerular slit diaphragm. An evolutionarily conserved promoter model was generated by comparative genomics in the proximal promoter regions of the slit diaphragm-associated molecule nephrin. Phylogenetic promoter fingerprints of known elements of the slit diaphragm complex identified the nephrin model in the promoter region of zonula occludens-1 (ZO-1). Genome-wide scans using this promoter model effectively predicted a previously unrecognized slit diaphragm molecule, cadherin-5. Nephrin, ZO-1, and cadherin-5 mRNA showed stringent coexpression across a diverse set of human glomerular diseases. Comparative promoter analysis can identify regulatory pathways at work in tissue homeostasis and disease processes.
机译:在距离和方向上保守的共享转录因子结合位点有助于控制在相同生物学环境中共同起作用的基因产物的表达。新的生物信息学方法可快速表征共享的启动子结构,并可用于发现新的相互作用分子。在这里,这些原理是通过使用与肾小球狭缝隔膜独特功能单元相连的分子来证明的。通过比较基因组学在狭缝膜相关分子nephrin的近端启动子区域生成了进化保守的启动子模型。裂隙膜复合体的已知元素的系统发生启动子指纹识别了小带闭合(-1)(ZO-1)的启动子区域中的nephrin模型。使用该启动子模型的全基因组扫描有效地预测了先前无法识别的狭缝隔膜分子钙粘着蛋白5。 Nephrin,ZO-1和cadherin-5 mRNA在多种人类肾小球疾病中均表现出严格的共表达。比较启动子分析可以确定组织稳态和疾病过程中起作用的调节途径。

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