Cooper Joanne C, Dealtry Gillian B, Ahmed Mohamed Abdelrahman, Arck Petra C, Klapp Burghard F, Blois Sandra M, Fernández Nelson
Department of Experimental Biology, Huntingdon Life Sciences Ltd., Alconbury, Huntingdon, Cambridgeshire PE28 4HS, England.
Biol Reprod. 2007 Aug;77(2):274-9. doi: 10.1095/biolreprod.106.057125. Epub 2007 Apr 18.
Beta-2 microglobulin (B2M) plays a pivotal role in the biology of mammals, including its association with major histocompatibility complex (MHC) Class I gene products. The latter molecules have been shown to affect reproduction in both mice and humans, although the exact mechanism is still unknown. Here we report the results of a longitudinal study of the reproductive performance of a genetically modified B2m deficient mouse strain with low MHC Class I expression. Our data show that this mouse strain has an impaired reproductive performance. However, the mice superovulate well and show a normal estrous cycle. Breeding studies from crosses between the transgenic mice and the wild-type parental strain show that B2m deficient mice have a significantly lower frequency of mating than the control B2m+/+ mice. In addition, the litter size and weaning success of B2m deficient mice were lower than the control. Perinatal lethality of the B2m deficient offspring was also inflicted by cannibalism of the young pups by the B2m deficient female. The impaired breeding phenotype (IBP) can be reversed by reintroducing the B2m gene in F1 heterozygous B2m+/- animals; thus the presence of B2M confers a normal breeding pattern. The acquisition of an impaired breeding phenotype (IBP) as a result of the knockout of B2m directly implicates B2M in the reproductive cycle of mice and raises the possibility of an effect of B2M on the reproduction of other mammals.
β2微球蛋白(B2M)在哺乳动物生物学中发挥着关键作用,包括其与主要组织相容性复合体(MHC)I类基因产物的关联。尽管确切机制仍不清楚,但已表明后一种分子会影响小鼠和人类的生殖。在这里,我们报告了一项对具有低MHC I类表达的转基因B2m缺陷小鼠品系生殖性能的纵向研究结果。我们的数据表明,该小鼠品系的生殖性能受损。然而,这些小鼠超排卵良好,发情周期正常。转基因小鼠与野生型亲本品系杂交的繁殖研究表明,B2m缺陷小鼠的交配频率明显低于对照B2m+/+小鼠。此外,B2m缺陷小鼠的窝仔数和断奶成功率低于对照。B2m缺陷后代的围产期致死率也受到B2m缺陷雌性对幼崽的同类相食的影响。通过在F1杂合B2m+/-动物中重新引入B2m基因,可以逆转受损的繁殖表型(IBP);因此,B2M的存在赋予了正常的繁殖模式。由于B2m基因敲除导致获得受损的繁殖表型(IBP),直接表明B2M参与小鼠的生殖周期,并增加了B2M对其他哺乳动物生殖产生影响的可能性。