首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >DIMERIZATION SPECIFICITY OF ARABIDOPSIS MADS DOMAIN HOMEOTIC PROTEINS APETALA1, APETALA3, PISTILLATA, AND AGAMOUS
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DIMERIZATION SPECIFICITY OF ARABIDOPSIS MADS DOMAIN HOMEOTIC PROTEINS APETALA1, APETALA3, PISTILLATA, AND AGAMOUS

机译:阿拉伯菊科植物病原体同源蛋白APETALA1,APETALA3,雌蕊和拟南芥的二聚化特异性

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摘要

The MADS domain homeotic proteins APETALA1 (AP1), APETALA3 (AP3), PISTILLATA (PI), and AGAMOUS (AG) act in a combinatorial manner to specify the identity of Arabidopsis floral organs. The molecular basis for this combinatorial mode of action was investigated. Immunoprecipitation experiments indicate that all four proteins are capable of interacting with each other. However, these proteins exhibit ''partner-specificity'' for the formation of DNA-binding dimers; only AP1 homodimers, AG homodimers, and AP3/PI heterodimers are capable of binding to CArG-box sequences. Both the AP3/PI heterodimer and the AP1 or AG homodimers are formed when the three corresponding proteins are present together. The use of chimeric proteins formed by domain swapping indicates that the L region (which follows the MADS box) constitutes a key molecular determinant for the selective formation of DNA-binding dimers. The implications of these results for the ABC genetic model of flower development are discussed. [References: 28]
机译:MADS域同源蛋白APETALA1(AP1),APETALA3(AP3),PISTILLATA(PI)和AGAMOUS(AG)以组合方式起作用,以指定拟南芥花器官的身份。研究了这种组合作用方式的分子基础。免疫沉淀实验表明,所有四种蛋白质都能够相互作用。然而,这些蛋白质对DNA结合二聚体的形成表现出“伙伴特异性”。只有AP1同二聚体,AG同二聚体和AP3 / PI异二聚体能够结合CArG-box序列。当三个相应的蛋白质同时存在时,会形成AP3 / PI异二聚体和AP1或AG同二聚体。通过结构域交换形成的嵌合蛋白的使用表明L区(位于MADS框之后)构成了选择性形成DNA结合二聚体的关键分子决定因素。讨论了这些结果对花卉发育的ABC遗传模型的影响。 [参考:28]

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