Department of Bioscience and Biotechnology and BioMolecular Informatics Center, Konkuk University , Seoul 143-701, South Korea.
Biochemistry. 2014 Jul 29;53(29):4814-25. doi: 10.1021/bi5003844. Epub 2014 Jul 14.
Phosphatases of regenerating liver (PRLs) constitute a novel class of small, prenylated phosphatases with oncogenic activity. PRL-3 is particularly important in cancer metastasis and represents a potential therapeutic target. The flexibility of the WPD loop as well as the P-loop of protein tyrosine phosphatases is closely related to their catalytic activity. Using nuclear magnetic resonance spectroscopy, we studied the structure of vanadate-bound PRL-3, which was generated by addition of sodium orthovanadate to PRL-3. The WPD loop of free PRL-3 extended outside of the active site, forming an open conformation, whereas that of vanadate-bound PRL-3 was directed into the active site by a large movement, resulting in a closed conformation. We suggest that vanadate binding induced structural changes in the WPD loop, P-loop, helices α4-α6, and the polybasic region. Compared to free PRL-3, vanadate-bound PRL-3 has a longer α4 helix, where the catalytic R110 residue coordinates with vanadate in the active site. In addition, the hydrophobic cavity formed by helices α4-α6 with a depth of 14-15 Å can accommodate a farnesyl chain at the truncated prenylation motif of PRL-3, i.e., from R169 to M173. Conformational exchange data suggested that the WPD loop moves between open and closed conformations with a closing rate constant k(close) of 7 s(-1). This intrinsic loop flexibility of PRL-3 may be related to their catalytic rate and may play a role in substrate recognition.
肝再生磷酸酶(PRLs)构成了一类新型的具有致癌活性的小的异戊烯基化磷酸酶。PRL-3 在癌症转移中尤为重要,是潜在的治疗靶点。WPD 环以及蛋白酪氨酸磷酸酶的 P 环的灵活性与它们的催化活性密切相关。我们使用核磁共振波谱学研究了添加正钒酸钠到 PRL-3 中产生的钒酸盐结合的 PRL-3 的结构。游离 PRL-3 的 WPD 环延伸到活性位点之外,形成开放构象,而钒酸盐结合的 PRL-3 的 WPD 环则通过大的运动被引导到活性位点,形成封闭构象。我们认为,钒酸盐结合诱导了 WPD 环、P 环、α4-α6 螺旋和多碱性区域的结构变化。与游离 PRL-3 相比,钒酸盐结合的 PRL-3 的α4 螺旋更长,其中催化 R110 残基在活性位点与钒酸盐配位。此外,由α4-α6 螺旋形成的疏水性腔具有 14-15Å 的深度,可以容纳 PRL-3 截断的异戊烯基化模体(即从 R169 到 M173)中的法呢基链。构象交换数据表明,WPD 环在开放和封闭构象之间移动,封闭速率常数 k(close)为 7 s(-1)。PRL-3 的这种固有环灵活性可能与其催化速率有关,并可能在底物识别中发挥作用。