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β-葡萄糖醛酸酶单倍型在原型和同源近交系小鼠品系中的表达

Expression of beta-glucuronidase haplotypes in prototype and congenic mouse strains.

作者信息

Pfister K, Paigen K, Watson G, Chapman V

出版信息

Biochem Genet. 1982 Jun;20(5-6):519-36. doi: 10.1007/BF00484702.

Abstract

A gene complex consists of a structural gene with its associated regulatory information; together they behave as the functional and evolutionary unit of mammalian chromosomes. The use of congenic lines, in which alternate forms, or haplotypes, of a gene complex are transferred into a common genetic background by repeated backcrossing, provides a means of comparing the regulatory properties of different haplotypes of a gene complex without the complications introduced by extraneous genetic differences. We have now carried out such a study of the A, B, and H haplotypes of the beta-glucuronidase gene complex, [Gus], in mice. These haplotypes were derived from strains A/J, C57BL/6J, and C3H/HeJ and were compared against the C57BL/6J genetic background. Enzyme structure was compared in terms of charge (isoelectric point), stability (rate of thermal denaturation), substrate affinity (for 4 MU glucuronide), and antigenicity (reactivity with a standard antibody). Compared to the B form, the enzyme coded by the A haplotype has a lower isoelectric point, and that coded by the H haplotype is less stable. The decreased stability is the result of a lower activation energy for the thermal denaturation reaction. These differences were maintained in the congenic strains. All three enzyme forms showed identical substrate affinities. Antigenicity per enzyme unit was also identical for all three, indicating that none lacks an antigenic site possessed by the others and that they all possess the same catalytic activity per molecule. The expression of alleles of the Gus-t temporal locus within the gene complex was not affected by transfer into the C57BL/6 genetic background. The same developmental switches in enzyme activity were seen in each case. Transfer into the C57Bl/6 background also did not affect expression of the Gus-r regulator determining androgen inducibility of beta-glucuronidase synthesis in kidney epithelial cells. However, enzyme accumulation in induced cells was altered when the haplotypes were transferred into the C57BL/6 genetic background. Since the rate of synthesis was not affected, it suggests that the genetic differences between strains that are not linked to the [Gus] complex affect the rate of enzyme loss by degradation or secretion. Beta-Glucuronidase in liver is present in both lysosomes and endoplasmic reticulum (microsomes). The relative amount of enzyme at each site depended on both the indentity of the structural allele and the function of unlinked genetic modifiers. Within the C57BL/6 background the percentage of total enzyme present in the microsome fraction was the order A greater than B greater than H. For the H form of the enzyme the percentage was appreciably greater in the C3H genetic background compared to C57BL/6. As expected, then, the [Gus] complex contains all of the genetic determinants of enzyme structure detected by thermal stability and isoelectric point measurements...

摘要

基因复合体由一个结构基因及其相关的调控信息组成;它们共同作为哺乳动物染色体的功能和进化单位。通过反复回交将基因复合体的交替形式或单倍型转移到共同的遗传背景中构建的同类系,提供了一种比较基因复合体不同单倍型调控特性的方法,而不会受到无关遗传差异带来的复杂性影响。我们现在已经对小鼠β-葡萄糖醛酸酶基因复合体[Gus]的A、B和H单倍型进行了这样一项研究。这些单倍型分别来自A/J、C57BL/6J和C3H/HeJ品系,并与C57BL/6J遗传背景进行了比较。从电荷(等电点)、稳定性(热变性速率)、底物亲和力(对4-MU葡萄糖醛酸)和抗原性(与标准抗体的反应性)方面对酶结构进行了比较。与B型相比,由A单倍型编码的酶等电点较低,由H单倍型编码的酶稳定性较差。稳定性降低是热变性反应活化能较低的结果。这些差异在同类系中得以维持。所有三种酶形式都表现出相同的底物亲和力。每酶单位的抗原性对所有三种形式来说也相同,这表明它们都不缺少其他形式所具有的抗原位点,并且它们每分子都具有相同的催化活性。基因复合体内Gus-t时间位点等位基因的表达不受转移到C57BL/6遗传背景的影响。在每种情况下都观察到了相同的酶活性发育开关。转移到C57Bl/6背景中也不影响决定肾上皮细胞中β-葡萄糖醛酸酶合成雄激素诱导性的Gus-r调节因子的表达。然而,当单倍型转移到C57BL/6遗传背景中时,诱导细胞中的酶积累发生了改变。由于合成速率不受影响,这表明与[Gus]复合体不连锁的品系间遗传差异影响了酶通过降解或分泌而损失的速率。肝脏中的β-葡萄糖醛酸酶存在于溶酶体和内质网(微粒体)中。每个位点的酶相对量取决于结构等位基因的身份和不连锁遗传修饰因子的功能。在C57BL/6背景中,微粒体部分中总酶的百分比顺序为A大于B大于H。对于H型酶,与C57BL/6相比,在C3H遗传背景中该百分比明显更高。那么,正如预期的那样,[Gus]复合体包含了通过热稳定性和等电点测量检测到的酶结构的所有遗传决定因素……

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