Related function of mouse SOX3, SOX9, and SRY HMG domains assayed by male sex determination.

IF 1.5 4区 生物学 Q3 Biochemistry, Genetics and Molecular Biology Genesis Pub Date : 2000-11-01
D E Bergstrom, M Young, K H Albrecht, E M Eicher
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Abstract

Sox genes encode proteins related to each other, and to the sex determining gene Sry, by the presence of a DNA binding motif known as the HMG domain. Although HMG domains can bind to related DNA sequences, Sox gene products may achieve target gene specificity by binding to preferred target sequences or by interacting with specific partner proteins. To assess their functional similarities, we replaced the HMG box of Sry with the HMG box of Sox3 or Sox9 and tested whether these constructs caused sex reversal in XX mice. Our results indicate that such chimeric transgenes can functionally replace Sry and elicit development of testis cords, male patterns of gene expression, and elaboration of male secondary sexual characteristics. This implies that chimeric SRY proteins with SOX HMG domains can bind to and regulate SRY target genes and that potential SRY partner factor interactions are not disrupted by HMG domain substitutions. genesis 28:111-124, 2000.

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小鼠SOX3、SOX9和SRY HMG结构域的相关功能
Sox基因通过存在一种被称为HMG结构域的DNA结合基序来编码彼此相关的蛋白质,以及与性别决定基因Sry相关的蛋白质。虽然HMG结构域可以结合相关的DNA序列,但Sox基因产物可以通过结合首选的靶序列或与特定的伴侣蛋白相互作用来实现靶基因特异性。为了评估它们的功能相似性,我们将Sry的HMG盒替换为Sox3或Sox9的HMG盒,并测试这些结构是否会导致XX小鼠的性别逆转。我们的研究结果表明,这种嵌合转基因可以在功能上取代Sry,并诱导睾丸索的发育、男性基因表达模式和男性第二性征的形成。这意味着具有SOX HMG结构域的嵌合SRY蛋白可以结合并调节SRY靶基因,并且潜在的SRY伴侣因子的相互作用不会被HMG结构域的取代所破坏。创世纪28:11 - 124,2000。
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来源期刊
Genesis
Genesis DEVELOPMENTAL BIOLOGY-GENETICS & HEREDITY
CiteScore
3.90
自引率
0.00%
发文量
19
期刊介绍: As of January 2000, Developmental Genetics was renamed and relaunched as genesis: The Journal of Genetics and Development, with a new scope and Editorial Board. The journal focuses on work that addresses the genetics of development and the fundamental mechanisms of embryological processes in animals and plants. With increased awareness of the interplay between genetics and evolutionary change, particularly during developmental processes, we encourage submission of manuscripts from all ecological niches. The expanded numbers of genomes for which sequencing is being completed will facilitate genetic and genomic examination of developmental issues, even if the model system does not fit the “classical genetic” mold. Therefore, we encourage submission of manuscripts from all species. Other areas of particular interest include: 1) the roles of epigenetics, microRNAs and environment on developmental processes; 2) genome-wide studies; 3) novel imaging techniques for the study of gene expression and cellular function; 4) comparative genetics and genomics and 5) animal models of human genetic and developmental disorders. genesis presents reviews, full research articles, short research letters, and state-of-the-art technology reports that promote an understanding of the function of genes and the roles they play in complex developmental processes.
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