Lambert M W, Tsongalis G J, Lambert W C, Parrish D D
Department of Pathology and Laboratory Medicine, UMDNJ-New Jersey Medical School, Newark 07103, USA.
Biochem Biophys Res Commun. 1997 Jan 23;230(3):587-91. doi: 10.1006/bbrc.1996.6008.
We have previously isolated from Fanconi anemia, complementation groups A (FA-A) and D (FA-D) cells, a DNA endonuclease complex which is defective in its ability to incise DNA containing interstrand cross-links produced by psoralen plus UVA light. The repair capabilities of the FA complexes, compared with those of the corresponding normal complex, have now been examined using two types of complementation analysis. First, introduction of the normal complex, by electroporation, into 8-methoxypsoralen (8-MOP) plus UVA treated FA-A and FA-D cells resulted in correction of their repair defect, determined by measuring repair-related unscheduled DNA synthesis (UDS). The FA-A and FA-D complexes could similarly complement the repair defect in each others' cells, but not in their own. Second, mixing the normal with the FA-A and FA-D complexes, or the FA-A with the FA-D complex, in a cell-free system resulted in correction of the defect in ability of these FA complexes to incise damaged DNA. These results indicate that the normal complex contains the proteins needed to correct the DNA repair defect in FA-A and FA-D cells and that the FA-A and FA-D complexes contain the protein needed to complement the repair defect in each other.
我们之前从范可尼贫血互补组A(FA-A)和D(FA-D)细胞中分离出一种DNA内切酶复合物,该复合物切割含有补骨脂素加紫外线A光产生的链间交联的DNA的能力存在缺陷。现在,使用两种互补分析方法,对FA复合物与相应正常复合物的修复能力进行了检测。首先,通过电穿孔将正常复合物导入经8-甲氧基补骨脂素(8-MOP)加紫外线A处理的FA-A和FA-D细胞中,通过测量与修复相关的非预定DNA合成(UDS)来确定其修复缺陷是否得到纠正。FA-A和FA-D复合物同样可以互补彼此细胞中的修复缺陷,但不能互补自身细胞中的修复缺陷。其次,在无细胞系统中将正常复合物与FA-A和FA-D复合物混合,或将FA-A与FA-D复合物混合,可纠正这些FA复合物切割受损DNA能力的缺陷。这些结果表明,正常复合物包含纠正FA-A和FA-D细胞中DNA修复缺陷所需的蛋白质,而FA-A和FA-D复合物包含互补彼此修复缺陷所需的蛋白质。