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本文引用的文献

1
The relation of the lethal yellow (Ay) gene to pulmonary tumor formation and obesity in an inbred strain of mice.致死黄色(Ay)基因与近交系小鼠肺肿瘤形成及肥胖的关系。
J Natl Cancer Inst. 1950 Oct;11(2):263-8.
2
New genetically homogeneous background for dystrophic mice and their normal counterparts.营养不良小鼠及其正常对照的新基因同质背景。
Science. 1962 Mar 23;135(3508):1061-2. doi: 10.1126/science.135.3508.1061.
3
GROWTH OF INBRED YELLOW (AYA) AND NON-YELLOW (AA) MICE IN PARABIOSIS.近交系黄色(AYA)和非黄色(AA)小鼠联体生活时的生长情况
Genetics. 1963 Aug;48(8):1041-58. doi: 10.1093/genetics/48.8.1041.
4
Standardized nomenclature for inbred strains of mice: fifth listing.小鼠近交系标准化命名法:第五版名录
Cancer Res. 1972 Aug;32(8):1609-46.
5
The automated assay of complete enzyme reaction rates. II. Digital readout and data processing of linear rates.完整酶促反应速率的自动化测定。II. 线性速率的数字读出与数据处理
Anal Biochem. 1968 Mar;22(3):359-73. doi: 10.1016/0003-2697(68)90277-7.

背景基因组对黄色(A v -、A vy -)小鼠酶学特性的影响。

Influence of background genome on enzymatic characteristics of yellow (A v -, A vy -) mice.

作者信息

Wolff G L, Pitot H C

出版信息

Genetics. 1973 Jan;73(1):109-23. doi: 10.1093/genetics/73.1.109.

DOI:10.1093/genetics/73.1.109
PMID:4405752
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1212873/
Abstract

Identification of the fundamental polypeptide difference between yellow (A(y)/-, A(vy)/-) and non-yellow mice is important for biomedical research because of the influence of the yellow genotype on normal and neoplastic growth and obesity. The complexity of the "yellow mouse syndrome" makes attainment of this objective dependent on the separation of those pleiotropic enzyme differences which are secondary, and depend on the background genome, from those which are primary, and depend primarily on the agouti locus genotype.-Four of nine hepatic enzyme activities assayed simultaneously differed between eight-week-old yellow (A(y)/-, A(vy)/-) and non-yellow (A/-, a/a) male inbred and F(1) hybrid mice. Among these four, only cytoplasmic malic enzyme activity was elevated in all yellow mice, as compared with the non-yellow sibs, regardless of background genome. Glucokinase, serine dehydratase, and tyrosine alpha-ketoglutarate transaminase activities were also changed in yellow mice, but these alterations depended on the background genome.-The ratio of malic enzyme activity to citrate-cleavage enzyme activity, possibly related to the altered fat metabolism of yellow mice, was influenced by background genome as well as by the yellow genotype.--Significant deviations of enzyme activities from mid-parent values among F(1) hybrids were associated with particular background genomes; the number of such deviations was larger among yellow mice than among non-yellows and this difference was greater among C3H F(1) hybrids than among C57BL/6 F(1) hybrids.

摘要

由于黄色基因型对正常生长、肿瘤生长及肥胖的影响,确定黄色(A(y)/-,A(vy)/-)小鼠与非黄色小鼠之间基本的多肽差异对于生物医学研究具有重要意义。“黄色小鼠综合征”的复杂性使得实现这一目标依赖于区分那些次要的、依赖于背景基因组的多效性酶差异与那些主要的、主要依赖于刺豚鼠位点基因型的多效性酶差异。在同时检测的9种肝酶活性中,8周龄的黄色(A(y)/-,A(vy)/-)雄性近交系和F(1)杂种小鼠与非黄色(A/-,a/a)雄性近交系和F(1)杂种小鼠之间有4种酶活性存在差异。在这4种酶中,与非黄色同胞相比,只有细胞质苹果酸酶活性在所有黄色小鼠中均升高,且与背景基因组无关。黄色小鼠中的葡萄糖激酶、丝氨酸脱水酶和酪氨酸α-酮戊二酸转氨酶活性也发生了变化,但这些变化依赖于背景基因组。苹果酸酶活性与柠檬酸裂解酶活性的比值可能与黄色小鼠脂肪代谢的改变有关,它受背景基因组以及黄色基因型的影响。F(1)杂种中酶活性与中亲值的显著偏差与特定的背景基因组有关;黄色小鼠中这种偏差的数量比非黄色小鼠多,且这种差异在C3H F(1)杂种中比在C57BL/6 F(1)杂种中更大。