首页> 外文OA文献 >Amino-terminal protein-protein interaction motif (POZ-domain) is responsible for activities of the promyelocytic leukemia zinc finger-retinoic acid receptor-alpha fusion protein.
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Amino-terminal protein-protein interaction motif (POZ-domain) is responsible for activities of the promyelocytic leukemia zinc finger-retinoic acid receptor-alpha fusion protein.

机译:氨基末端蛋白-蛋白相互作用基序(POZ域)负责早幼粒细胞白血病锌指-视黄酸受体-α融合蛋白的活性。

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摘要

Promyelocytic leukemia zinc finger-retinoic acid receptor a (PLZF-RARalpha), a fusion receptor generated as a result of a variant t(11;17) chromosomal translocation that occurs in a small subset of acute promyelocytic leukemia (APL) patients, has been shown to display a dominant-negative effect against the wild-type RARalpha/retinoid X receptor alpha (RXRalpha). We now show that its N-terminal region (called the POZ-domain), which mediates protein-protein interaction as well as specific nuclear localization of the wild-type PLZF and chimeric PLZF-RARalpha proteins, is primarily responsible for this activity. To further investigate the mechanisms of PLZF-RARalpha action, we have also studied its ligand-receptor, protein-protein, and protein-DNA interaction properties and compared them with those of the promyelocytic leukemia gene (PML)-RARalpha, which is expressed in the majority of APLs as a result of t(15;17) translocation. PLZF-RARalpha and PML-RARalpha have essentially the same ligand-binding affinities and can bind in vitro to retinoic acid response elements (RAREs) as homodimers or heterodimers with RXRalpha. PLZF-RARalpha homodimerization and heterodimerization with RXRalpha were primarily mediated by the POZ-domain and RARalpha sequence, respectively. Despite having identical RARalpha sequences, PLZF-RARalpha and PML-RARalpha homodimers recognized with different affinities distinct RAREs. Furthermore, PLZF-RARalpha could heterodimerize in vitro with the wild-type PLZF, suggesting that it may play a role in leukemogenesis by antagonizing actions of not only the retinoid receptors but also the wild-type PLZF and possibly other POZ-domain-containing regulators. These different protein-protein interactions and the target gene specificities of PLZF-RARalpha and PML-RARalpha may underlie, at least in part, the apparent resistance of APL with t(11;17) to differentiation effects of all-trans-retinoic acid.
机译:早幼粒细胞白血病锌指-视黄酸受体a(PLZF-RARalpha)是一种融合受体,它是在少数急性早幼粒细胞白血病(APL)患者中发生的变体t(11; 17)染色体易位而产生的显示对野生型RARalpha /类维生素X受体alpha(RXRalpha)表现出显性负性作用。我们现在显示其N末端区域(称为POZ域),其介导蛋白质与蛋白质的相互作用以及野生型PLZF和嵌合PLZF-RARalpha蛋白的特定核定位,主要负责此活性。为了进一步研究PLZF-RARalpha作用的机制,我们还研究了其配体-受体,蛋白质-蛋白质和蛋白质-DNA相互作用特性,并将其与早幼粒细胞白血病基因(PML)-RARalpha的表达进行了比较。 t(15; 17)易位的结果是大多数APL。 PLZF-RARalpha和PML-RARalpha具有基本相同的配体结合亲和力,并且可以与RXRalpha的同二聚体或异二聚体在体外与视黄酸应答元件(RARE)结合。 PLZF-RARalpha均二聚化和与RXRalpha的异二聚化分别主要由POZ域和RARalpha序列介导。尽管具有相同的RARalpha序列,但以不同亲和力识别的PLZF-RARalpha和PML-RARalpha同型二聚体截然不同。此外,PLZF-RARalpha可以在体外与野生型PLZF异源二聚体,这表明它可能通过拮抗类维生素A受体和野生型PLZF以及其他可能含POZ域的调节剂的作用而在白血病发生中起作用。这些不同的蛋白质相互作用和PLZF-RARalpha和PML-RARalpha的靶基因特异性可能至少部分是基于t(11; 17)的APL对全反式视黄酸分化作用的表观抗性。

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