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The human CDC42 gene: genomic organization, evidence for the existence of a putative pseudogene and exclusion as a SJS1 candidate gene.

机译:人类CDC42基因:基因组组织,存在假定的假基因和被排除为SJS1候选基因的证据。

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Schwartz-Jampel syndrome (SJS) is an autosomal recessive human disorder characterized by myotonia and osteoarticular deformities. Three types are distinguished based on age at onset: types 1A, 1B and 2. We have previously localized the SJS1 gene, responsible for types 1A and 1B, on human chromosome 1p35-p36.1 in a region frequently rearranged in human tumours. The CDC42 gene, for which divergent localizations have previously been described (chromosomes 4, 7 and 20), has been mapped within the SJS1 critical interval by radiation hybrid and yeast/P1 artificial-chromosome-based physical map analyses. The CDC42 gene product is a small GTPase protein of the Rho family mediating a variety of signaling pathways including cytoskeletal rearrangements, cell-cycle progression and transformation. To search for mutations in SJS1 patients, we have determined the organization of the human CDC42 gene on chromosome 1p and found that it encodes for the placental and brain isoforms generated by alternative splicing. No mutations have been found in SJS1 patients, excluding CDC42 as the SJS1 gene. Interestingly, we have demonstrated that a CDC42-like transcript gene located on chromosome 4 does not contain introns and is similar to the placental isoform, suggesting that it is a processed pseudogene. The determination of the CDC42 gene structure described in this report should facilitate future studies of the potential role of CDC42 in human disorders.
机译:Schwartz-Jampel综合征(SJS)是一种常染色体隐性遗传性人类疾病,特征是肌强直和骨关节畸形。根据发病年龄区分三种类型:1A,1B和2型。我们先前已将负责1A和1B型的SJS1基因定位在人类染色体1p35-p36.1上的一个经常在人类肿瘤中重排的区域中。通过辐射杂交和基于酵母/ P1人工染色体的物理图谱分析,先前已经描述了CDC42基因的发散定位(染色体4、7和20)在SJS1临界区间内。 CDC42基因产物是Rho家族的小GTPase蛋白,介导多种信号传导途径,包括细胞骨架重排,细胞周期进程和转化。为了寻找SJS1患者的突变,我们确定了人类CDC42基因在1p号染色体上的组织,并发现其编码通过选择性剪接产生的胎盘和脑同种型。除了CDC42作为SJS1基因外,在SJS1患者中未发现任何突变。有趣的是,我们证明了位于第4号染色体上的CDC42样转录基因不包含内含子,与胎盘同工型相似,表明它是一个经过加工的假基因。本报告中描述的CDC42基因结构的确定应有助于CDC42在人类疾病中的潜在作用的进一步研究。

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