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大疱性表皮松解症和表皮松解性角化过度症中表皮角蛋白基因的突变。

Mutations in the genes for epidermal keratins in epidermolysis bullosa and epidermolytic hyperkeratosis.

作者信息

Leigh I M, Lane E B

机构信息

Imperial Cancer Research Fund, Skin Tumour Laboratory, London, England.

出版信息

Arch Dermatol. 1993 Dec;129(12):1571-7.

PMID:7504434
Abstract

BACKGROUND

Clues from clinicopathologic studies of epidermolysis bullosa simplex (EBS) and epidermolytic hyperkeratosis (EH) have implicated abnormalities in keratin filaments as possibly underlying the pathogenesis of these diseases. Multiple avenues of study have now converged, which confirm this hypothesis.

OBSERVATIONS

The clinical spectrum of EBS and EH is reviewed together with classic histologic, electron microscopic, and immuno-electron microscopic studies. Linkage analyses have shown in EBS and EH that the disease traits are linked to the keratin gene clusters on chromosomes 12 and 17. Transgenic mice bearing mutations or deletions in genes coding for basal cell keratin K14 express the phenotype of EBS, and transgenic mice bearing abnormal K1/K10 genes resemble EH. Increasing numbers of point mutations in the human keratin genes have been found in both sporadic and familial cases of EBS in keratins 5/14 and EH in keratins K1/K10 genes, respectively, particularly in highly conserved subdomains of the keratin proteins.

CONCLUSIONS

The recent and rapid progress in understanding the molecular biology of EBS and EH will also enhance knowledge about intermediate filament structure and function. Further studies of the effects of these mutations on the control of keratinocyte growth and differentiation are required. They will lead the way to rational pharmacologic or gene therapy.

摘要

背景

单纯性大疱性表皮松解症(EBS)和表皮松解性角化过度症(EH)的临床病理研究线索表明,角蛋白丝异常可能是这些疾病发病机制的基础。目前,多条研究途径已汇聚在一起,证实了这一假说。

观察结果

对EBS和EH的临床谱进行了综述,并结合了经典的组织学、电子显微镜和免疫电子显微镜研究。连锁分析表明,在EBS和EH中,疾病特征与12号和17号染色体上的角蛋白基因簇相关。携带编码基底细胞角蛋白K14的基因突变或缺失的转基因小鼠表现出EBS的表型,而携带异常K1/K10基因的转基因小鼠则类似于EH。在散发性和家族性EBS病例中,分别在角蛋白5/14中以及在EH病例中,在角蛋白K1/K10基因中发现了越来越多的点突变,尤其是在角蛋白蛋白高度保守的亚结构域中。

结论

在理解EBS和EH分子生物学方面最近取得的快速进展也将增进对角蛋白丝结构和功能的认识。需要进一步研究这些突变对角质形成细胞生长和分化控制的影响。它们将为合理的药物治疗或基因治疗指明方向。

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