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应用RT-PCR方法,从新生大鼠脑组织总RNA扩增大鼠FMR1同源基因的cDNA片段,克降至pUC18质粒中进行序列分析.获得从终止密码子起共1681bp的编码序列,尚缺少约200bp的5′序列.所克隆的这部分大鼠FMR1cDNA,不含有对应于人FMR1基因的外显子12及外显子17第一和第三剪接受点之间的序列,提示大鼠FMR1基因也有选择剪接表达.同源性分析显示,大鼠FMR1与小鼠FMR1基因的同源性为97.7%,与人FMR1基因的同源性为94.9%;与小鼠FMRP(FMR1蛋白)的氨基酸序列同源性为98.4%,与人FMRP的氨基酸序列同源性为97.9%.以大鼠FMR1cDNA片段为探针检测到大鼠不同组织中FMR1基因的选择剪接表达.上述结果为以大鼠为动物模型深入研究FMR1基因功能奠定了基础.  相似文献   

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Meng X  Chen J  Yang Q  Wang S  Chao Y  Ying K  Xie Y  Mao Y 《Biochemical genetics》2002,40(9-10):303-310
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Localization of brain nitric oxide synthase (NOS) to human chromosome 12.   总被引:4,自引:0,他引:4  
J Kishimoto  N Spurr  M Liao  L Lizhi  P Emson  W Xu 《Genomics》1992,14(3):802-804
Recent research has shown that nitric oxide is a novel neuronal second messenger and transmitter that may be involved in neuronal cell death and damage in neurological illness. To map the chromosomal localization of this important brain enzyme, a rat cDNA probe was prepared by RNA PCR from rat cerebellum RNA. This rat cDNA was used to isolate a human nitric oxide synthase (NOS) cDNA from a human cerebellum cDNA library. The human cDNA clone containing 1.2 kb of brain NOS cDNA was hybridized to Southern blots containing DNAs obtained from human-rodent hybrid cell line panels using EcoRI and HindIII digestion to ascertain the location of the human NOS gene. These data showed that the human brain nitric oxide synthase mapped within 12q14-qter on human chromosome 12.  相似文献   

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Rat brain expresses two types of corticosteroid-binding proteins. The type I receptor binds corticosterone with high affinity and is structurally related to the kidney mineralocorticoid receptor (MR), while the type II or classical glucocorticoid receptor binds corticosterone with lower affinity and displays an in vivo preference for dexamethasone. Here we describe the isolation and characterization of a cDNA coding for the MR, from a rat hippocampus cDNA library, by low stringency hybridization to radiolabeled human glucocorticoid receptor cDNA. The nucleotide and deduced amino acid sequence for rat hippocampal MR displays extensive homology to a MR cDNA isolated from human kidney, suggesting that they are orthologous genes. Southern analysis suggests that there is only one gene for the MR, and in vitro expression of the receptor generates a high affinity corticosterone-binding protein. These data provide evidence to support the contention that a single gene gives rise to the MR in renal tissues and type I receptors in the brain.  相似文献   

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