van de Pol T J, Cremers F P, Brohet R M, Wieringa B, Ropers H H
Department of Human Genetics, Radboud Hospital, University of Nijmegen, The Netherlands.
Nucleic Acids Res. 1990 Feb 25;18(4):725-31. doi: 10.1093/nar/18.4.725.
By making use of preparative field inversion gel electrophoresis, we have constructed a lambda ZAP library that is highly enriched for sequences from the choroideremia locus. In vivo excision of pBluescript SK(-) constructs from lambda ZAP obviates the subcloning of DNA inserts and allows for rapid processing of several hundred recombinants. From a 625 kb Sfil fragment we isolated 7 clones that were physically mapped using microdeletions associated with the disease. One of these clones is located within, or just telomeric to, the choroideremia gene and detects two restriction fragment length polymorphisms (RFLPs). Another clone detects a RFLP which maps centromeric to the disease locus. Together these probes should improve the reliability of linkage analysis in choroideremia families and should pave the way for the isolation of the choroideremia gene.
通过利用制备型场反转凝胶电泳,我们构建了一个λZAP文库,该文库高度富集了脉络膜营养不良基因座的序列。从λZAP中体内切除pBluescript SK(-)构建体避免了DNA插入片段的亚克隆,并允许对数百个重组体进行快速处理。从一个625 kb的Sfil片段中,我们分离出7个克隆,使用与该疾病相关的微缺失对其进行了物理定位。其中一个克隆位于脉络膜营养不良基因内或其端粒附近,并检测到两个限制性片段长度多态性(RFLP)。另一个克隆检测到一个RFLP,其定位于疾病基因座的着丝粒。这些探针一起应能提高脉络膜营养不良家族连锁分析的可靠性,并应为脉络膜营养不良基因的分离铺平道路。