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X染色体连锁严重联合免疫缺陷携带者B细胞中的非随机X染色体失活

Nonrandom X chromosome inactivation in B cells from carriers of X chromosome-linked severe combined immunodeficiency.

作者信息

Conley M E, Lavoie A, Briggs C, Brown P, Guerra C, Puck J M

机构信息

Department of Pediatrics, Children's Hospital of Philadelphia, PA.

出版信息

Proc Natl Acad Sci U S A. 1988 May;85(9):3090-4. doi: 10.1073/pnas.85.9.3090.

Abstract

X chromosome-linked severe combined immunodeficiency (XSCID) is characterized by markedly reduced numbers of T cells, the absence of proliferative responses to mitogens, and hypogammaglobulinemia but normal or elevated numbers of B cells. To determine if the failure of the B cells to produce immunoglobulin might be due to expression of the XSCID gene defect in B-lineage cells as well as T cells, we analyzed patterns of X chromosome inactivation in B cells from nine obligate carriers of this disorder. A series of somatic cell hybrids that selectively retained the active X chromosome was produced from Epstein-Barr virus-stimulated B cells from each woman. To distinguish between the two X chromosomes, the hybrids from each woman were analyzed using an X-linked restriction fragment length polymorphism for which the woman in question was heterozygous. In all obligate carriers of XSCID, the B-cell hybrids demonstrated preferential use of a single X chromosome, the nonmutant X, as the active X. To determine if the small number of B-cell hybrids that contained the mutant X were derived from an immature subset of B cells, lymphocytes from three carriers were separated into surface IgM positive and surface IgM negative B cells prior to exposure to Epstein-Barr virus and production of B-cell hybrids. The results demonstrated normal random X chromosome inactivation in B-cell hybrids derived from the less mature surface IgM positive B cells. In contrast, the pattern of X chromosome inactivation in the surface IgM negative B cells, which had undergone further replication and differentiation, was significantly nonrandom in all three experiments [logarithm of odds (lod) score greater than 3.0]. These results suggest that the XSCID gene product has a direct effect on B cells as well as T cells and is required during B-cell maturation.

摘要

X染色体连锁的重症联合免疫缺陷(XSCID)的特征是T细胞数量显著减少、对有丝分裂原的增殖反应缺失以及低丙种球蛋白血症,但B细胞数量正常或升高。为了确定B细胞无法产生免疫球蛋白是否可能是由于XSCID基因缺陷在B系细胞以及T细胞中的表达所致,我们分析了9名该疾病的 obligate携带者B细胞中的X染色体失活模式。从每位女性经爱泼斯坦 - 巴尔病毒刺激的B细胞中产生了一系列选择性保留活性X染色体的体细胞杂种。为了区分两条X染色体,使用该女性为杂合子的X连锁限制性片段长度多态性对每位女性的杂种进行分析。在所有XSCID的 obligate携带者中,B细胞杂种显示优先使用单一的X染色体,即非突变的X染色体作为活性X染色体。为了确定少数含有突变X染色体的B细胞杂种是否源自B细胞的未成熟亚群,在暴露于爱泼斯坦 - 巴尔病毒和产生B细胞杂种之前,将三名携带者的淋巴细胞分离为表面IgM阳性和表面IgM阴性B细胞。结果表明,源自较不成熟的表面IgM阳性B细胞的B细胞杂种中X染色体随机失活正常。相比之下,在所有三个实验中,经历了进一步复制和分化的表面IgM阴性B细胞中的X染色体失活模式明显非随机[优势对数(lod)得分大于3.0]。这些结果表明,XSCID基因产物对B细胞和T细胞都有直接影响,并且在B细胞成熟过程中是必需的。

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