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九个Xq易位断点的物理图谱绘制及XPNPEP2作为卵巢早衰候选基因的鉴定。

Physical mapping of nine Xq translocation breakpoints and identification of XPNPEP2 as a premature ovarian failure candidate gene.

作者信息

Prueitt R L, Ross J L, Zinn A R

机构信息

Eugene McDermott Center for Human Growth and Development and Department of Internal Medicine, The University of Texas Southwestern Medical School, Dallas, TX, USA.

出版信息

Cytogenet Cell Genet. 2000;89(1-2):44-50. doi: 10.1159/000015560.

Abstract

Women with balanced translocations between the long arm of the X chromosome (Xq) and an autosome frequently suffer premature ovarian failure (POF). Two "critical regions" for POF which extend from Xq13-->q22 and from Xq22-->q26 have been identified using cytogenetics. To gain insight into the mechanism(s) responsible for ovarian failure in women with X;autosome translocations, we have molecularly characterized the translocation breakpoints of nine X chromosomes. We mapped the breakpoints using somatic cell hybrids retaining the derivative autosome and densely spaced markers from the X-chromosome physical map. One of the POF-associated breakpoints in a critical region (Xq25) mapped to a sequenced PAC clone. The translocation disrupts XPNPEP2, which encodes an Xaa-Pro aminopeptidase that hydrolyzes N-terminal Xaa-Pro bonds. XPNPEP2 mRNA was detected in fibroblasts that carry the translocation, suggesting that this gene at least partially escapes X inactivation. Although the physiologic substrates for the enzyme are not known, XPNPEP2 is a candidate gene for POF. Our breakpoint mapping data will help to identify additional candidate POF genes and to delineate the Xq POF critical region(s).

摘要

X染色体长臂(Xq)与常染色体之间存在平衡易位的女性经常会出现卵巢早衰(POF)。利用细胞遗传学已确定了两个与POF相关的“关键区域”,分别从Xq13延伸至q22以及从Xq22延伸至q26。为深入了解X;常染色体易位女性卵巢功能衰竭的机制,我们对9条X染色体的易位断点进行了分子特征分析。我们使用保留衍生常染色体的体细胞杂种以及X染色体物理图谱上密集分布的标记来定位断点。一个关键区域(Xq25)中与POF相关的断点之一定位到了一个已测序的PAC克隆。该易位破坏了XPNPEP2基因,该基因编码一种水解N端Xaa-Pro键的Xaa-Pro氨肽酶。在携带该易位的成纤维细胞中检测到了XPNPEP2 mRNA,这表明该基因至少部分逃避了X染色体失活。尽管该酶的生理底物尚不清楚,但XPNPEP2是POF的一个候选基因。我们的断点定位数据将有助于识别其他POF候选基因,并划定Xq POF关键区域。

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