Hewitt Jeff, Ballard Jennifer N M, Nelson Tanya N, Smith Valerie C, Griffiths Tanya A M, Pritchard Sheila, Wu John K, Wadsworth Louis D, Casey Brett, MacGillivray Ross T A
Department of Biochemistry and Molecular Biology, University of Bristish Columbia, Vancouver, Canada.
Br J Haematol. 2005 Feb;128(3):380-5. doi: 10.1111/j.1365-2141.2004.05296.x.
A 3-week-old Caucasian female presented with severe unprovoked parenchymal cerebral haemorrhage. Her plasma factor VII (FVII) activity was <0.01 units/ml. FVII activities for her mother and sister were 0.65 units/ml and 0.51 units/ml, respectively, while her father's level was normal. These results indicated that the mother was heterozygous for a non-functional F7 gene that had also been inherited by the proband's sister. The proband's severe FVII deficiency was caused by a new mutation in her paternal F7 gene coupled with the inheritance of the non-functional maternal F7 gene. DNA sequence analysis revealed that the proband had apparent homozygosity for a novel single point mutation (g.3907G >A) changing the codon for Glu29 to Lys (E29K); neither parent had the E29K mutation. Because of the unlikelihood that the proband was homozygous for two identical new point mutations, the DNA sequence abnormality was more likely to have arisen from a single mutated gene on one allele and a F7 gene deletion on the other allele. Real time polymerase chain reaction (PCR) analysis confirmed that the proband had inherited a gene deletion that was present in the maternal side of the family. Subsequent clotting assays and real time PCR revealed that the maternal deletion also included the closely linked F10 gene.
一名3周大的白种女性出现严重的自发性脑实质出血。她的血浆凝血因子VII(FVII)活性<0.01单位/毫升。她母亲和姐姐的FVII活性分别为0.65单位/毫升和0.51单位/毫升,而她父亲的水平正常。这些结果表明,母亲是无功能F7基因的杂合子,该基因也被先证者的姐姐遗传。先证者严重的FVII缺乏是由其父亲F7基因的新突变以及无功能的母亲F7基因的遗传所致。DNA序列分析显示,先证者对于一个新的单点突变(g.3907G>A)表现出明显的纯合性,该突变将Glu29的密码子改变为Lys(E29K);父母双方均无E29K突变。由于先证者不太可能是两个相同新点突变的纯合子,DNA序列异常更可能是由一个等位基因上的单个突变基因和另一个等位基因上的F7基因缺失引起的。实时聚合酶链反应(PCR)分析证实,先证者遗传了家族母系中存在的基因缺失。随后的凝血试验和实时PCR显示,母亲的缺失还包括紧密连锁的F10基因。