首页> 美国卫生研究院文献>Biochemical Journal >Interactions between plant RING-H2 and plant-specific NAC (NAM/ATAF1/2/CUC2) proteins: RING-H2 molecular specificity and cellular localization.
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Interactions between plant RING-H2 and plant-specific NAC (NAM/ATAF1/2/CUC2) proteins: RING-H2 molecular specificity and cellular localization.

机译:植物RING-H2与植物特异性NAC(NAM / ATAF1 / 2 / CUC2)蛋白之间的相互作用:RING-H2分子特异性和细胞定位。

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摘要

Numerous, highly conserved RING-H2 domains are found in the model plant Arabidopsis thaliana (thale cress). To characterize potential RING-H2 protein interactions, the small RING-H2 protein RHA2a was used as bait in a yeast two-hybrid screen. RHA2a interacted with one of the plant-specific NAC [NAM ('no apical meristem'), ATAF1/2, CUC2 ('cup-shaped cotyledons 2')] transcription factors, here named ANAC (abscisic acid-responsive NAC). The core RING-H2 domain was sufficient for the interaction. The ability of 11 structurally diverse RING-H2 domains to interact with ANAC was then examined. Robust interaction was detected for three of the domains, suggesting multi-specificity for the interaction. The domains that interacted with ANAC contain a glutamic acid residue in a position corresponding to a proline in many RING-H2 domains. Conversion of this glutamic acid residue into proline in RHA2a decreased its ability to interact with ANAC, most likely by changing the interaction surface. This suggested that a short, divergent region in RING-H2 domains modulate interaction specificity. ANAC contains a degenerate bipartite nuclear localization signal (NLS), while RHG1a, also identified as an ANAC interaction partner, contains a basic NLS. Both signals localized beta-glucuronidase reporter fusions to the nucleus. N-terminally truncated RHA2a also directed nuclear localization, apparently dependent on basic amino acids in the RING-H2 domain. Nuclear co-localization of the RING-H2 proteins and ANAC may enable their interaction in vivo to regulate the activity of the ANAC transcription factor.
机译:在模型植物拟南芥(拟南芥)中发现了许多高度保守的RING-H2结构域。为了表征潜在的RING-H2蛋白相互作用,在酵母双杂交筛选中将小的RING-H2蛋白RHA2a用作诱饵。 RHA2a与植物特异性NAC [NAM('no apical meristem'),ATAF1 / 2,CUC2('cup-shaped cotyledons 2')]转录因子之一相互作用,此处称为ANAC(脱落酸响应NAC)。核心RING-H2结构域足以进行相互作用。然后检查了11个结构多样的RING-H2域与ANAC相互作用的能力。在三个结构域中检测到强大的相互作用,表明相互作用具有多特异性。与ANAC相互作用的域在许多RING-H2域中与脯氨酸相对应的位置上含有谷氨酸残基。 RHA2a中此谷氨酸残基向脯氨酸的转化降低了其与ANAC相互作用的能力,这很可能是通过改变相互作用表面来实现的。这表明RING-H2结构域中的一个短而分歧的区域调节了相互作用的特异性。 ANAC包含简并的双核核定位信号(NLS),而RHG1a也被确定为ANAC交互伙伴,包含基本NLS。这两个信号都将β-葡萄糖醛酸苷酶报道分子融合到细胞核。 N端截短的RHA2a也定向核定位,显然取决于RING-H2域中的碱性氨基酸。 RING-H2蛋白和ANAC的核共定位可能使它们在体内相互作用,从而调节ANAC转录因子的活性。

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