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Gc、PGM1、Tf和Pi亚型的等电聚焦综述:人群分布

Review of isoelectric focusing for Gc, PGM1, Tf, and Pi subtypes: population distributions.

作者信息

Dykes D D, Polesky H F

出版信息

Crit Rev Clin Lab Sci. 1984;20(2):115-51. doi: 10.3109/10408368409165772.

Abstract

Isoelectric focusing (IEF) as a method for differentiating macromolecules with minor differences in isoelectric points has demonstrated an increase in the degree of genetic polymorphisms of the blood. Studies over the last 5 to 6 years have shown that genetic marker systems such as transferrin (TF), phosphoglucomutase (PGM1), the vitamin D-binding globulin (GC), and A1 antitrypsin (PI) are a great deal more polymorphic than observed using conventional electrophoresis. Additional genetic variants have been detected or further defined in such systems as esterase D (ESD) and hemoglobin (HB) to name a few. The increased heterozygosity levels of these genetic marker systems identified by IEF have added to their value in forensic medicine and resulted in further resolution of racial and population affinities. IEF should prove to be a valuable anthropological tool for measuring population structure and genetic distances.

摘要

等电聚焦(IEF)作为一种区分等电点存在微小差异的大分子的方法,已证明血液中遗传多态性程度有所增加。过去5到6年的研究表明,诸如转铁蛋白(TF)、磷酸葡萄糖变位酶(PGM1)、维生素D结合球蛋白(GC)和α1抗胰蛋白酶(PI)等遗传标记系统的多态性比使用传统电泳观察到的要高得多。在诸如酯酶D(ESD)和血红蛋白(HB)等系统中还检测到了其他遗传变异或对其进行了进一步定义。通过IEF鉴定的这些遗传标记系统杂合性水平的提高,增加了它们在法医学中的价值,并进一步明确了种族和人群的亲缘关系。IEF应被证明是一种用于测量群体结构和遗传距离的有价值的人类学工具。

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