The Proteomic Task Force, Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Kong.
J Proteome Res. 2009 Nov;8(11):5080-92. doi: 10.1021/pr900475f.
The formation of harmful algal blooms (HABs) by dinoflagellates has been correlated with the nitrogen load in coastal waters. Nitrogen is implicated as an important factor in the initiation and maintenance of phytoplankton blooms. To characterize the cellular response to nitrogen, 2DE was used to compare protein expressions from dinoflagellates grown under nitrogen depleted and nitrogen replete conditions. A total of 17 differentially expressed protein spots were found, nine of which showed a roughly 16-fold decrease in N-depleted conditions. Five of these nine spots were all identified as isoforms of the plastid Form II ribulose-1,5 bisphosphate carboxylase/oxygenase (Rubisco II), while an additional four protein spots with a molecular weight of 50 kDa were identified as isoforms of a novel protein named nitrogen-associated protein 50 (NAP50). NAP50 was located in the plastids as shown by the presence of an N-terminal plastid targeting leader sequence and by immunohistochemistry. Levels of both Rubisco II and NAP50 decrease sharply between 24 and 36 h following nitrogen depletion and the decrease can be blocked if the N source is replenished before degradation occurs. Both proteins are rapidly resynthesized if the nitrogen source is replenished after degradation has occurred. These results are a first step in the dissection of the behavior of the dinoflagellate proteome under nitrogen stress conditions and may provide new insights into the relationship between dinoflagellate blooms and the nitrogen budget.
赤潮生物(HAB)的形成与沿海水域的氮负荷有关。氮被认为是引发和维持浮游植物大量繁殖的重要因素。为了描述细胞对氮的反应,采用 2DE 比较了在氮缺乏和氮充足条件下生长的甲藻的蛋白质表达。发现了总共 17 个差异表达的蛋白质斑点,其中 9 个在氮缺乏条件下的表达量下降了约 16 倍。这 9 个斑点中的 5 个被鉴定为质体 Form II 核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco II)的同工型,而另外 4 个分子量为 50 kDa 的蛋白质斑点被鉴定为一种名为氮相关蛋白 50(NAP50)的新型蛋白质的同工型。NAP50 存在于质体中,这一点通过存在 N 端质体靶向导肽序列和免疫组织化学得到证实。在氮耗尽后 24 至 36 小时之间,Rubisco II 和 NAP50 的水平急剧下降,如果在降解发生之前补充氮源,则可以阻止下降。如果在降解后补充氮源,这两种蛋白质都会迅速重新合成。这些结果是在氮胁迫条件下对甲藻蛋白组行为进行剖析的第一步,可能为甲藻大量繁殖与氮收支之间的关系提供新的见解。