Warrington J A, Hall L V, Hinton L M, Miller J N, Wasmuth J J, Lovett M
Department of Biological Chemistry, College of Medicine, University of California, Irvine 92717.
Genomics. 1991 Nov;11(3):701-8. doi: 10.1016/0888-7543(91)90078-s.
Radiation hybrid mapping was used in conjunction with a natural deletion mapping panel to predict the order of and distance between 13 loci in the distal portion of the long arm of human chromosome 5. A panel of irradiation hybrids containing fragments of 5q was generated from an HPRT+ Chinese hamster-human cell hybrid containing a derivative chromosome 5 [der(5)t(4;5)(5qter----5p15.1::4p15.1----4pter)] as its only human DNA. One hundred nine radiation hybrids containing human DNA were screened with polymerase chain reaction primer sets representing nine genes encoding growth factors, growth factor receptors, or hormone receptors (IL3, IL4, IL5, CSF1R, FGFA, ADRB2, GRL, GABRA1, and DRD1) as well as four other loci (FER, SPARC, RPS14, and CD14) to generate a radiation hybrid map of the area 5q21-q35. A physical map predicting the order of and distance between the 13 loci was constructed based on segregation of the 13 loci in hybrid clones. The radiation hybrid panel will be useful as a mapping tool for determining the location and order of other genes and polymorphic loci in this region as well as for generating new DNA probes from specific regions.
辐射杂种图谱分析与自然缺失图谱分析相结合,用于预测人类5号染色体长臂远端13个基因座的顺序和间距。从一个含有衍生染色体5 [der(5)t(4;5)(5qter----5p15.1::4p15.1----4pter)]作为其唯一人类DNA的HPRT+中国仓鼠-人类细胞杂种中,构建了一个包含5q片段的辐射杂种细胞系。用代表9个编码生长因子、生长因子受体或激素受体的基因(IL3、IL4、IL5、CSF1R、FGFA、ADRB2、GRL、GABRA1和DRD1)以及其他4个基因座(FER、SPARC、RPS14和CD14)的聚合酶链反应引物组,对109个含有人类DNA的辐射杂种细胞进行筛选,以构建5q21-q35区域的辐射杂种图谱。基于杂种克隆中13个基因座的分离情况,构建了预测这13个基因座顺序和间距的物理图谱。该辐射杂种细胞系将作为一种图谱分析工具,用于确定该区域其他基因和多态性基因座的位置和顺序,以及从特定区域生成新的DNA探针。