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C2 结构域负责靶向水稻磷酸肌醇特异性磷脂酶 C。

C2 domain is responsible for targeting rice phosphoinositide specific phospholipase C.

机构信息

Department of Biochemistry, Indian Institute of Science, Bangalore 560012, India.

出版信息

Plant Mol Biol. 2012 Feb;78(3):247-58. doi: 10.1007/s11103-011-9862-1. Epub 2011 Nov 29.

Abstract

Phosphoinositide-specific phospholipase C (PLC) is involved in Ca²⁺ mediated signalling events that lead to altered cellular status. Using various sequence-analysis methods, we identified two conserved motifs in known PLC sequences. The identified motifs are located in the C2 domain of plant PLCs and are not found in any other protein. These motifs are specifically found in the Ca²⁺ binding loops and form adjoining beta strands. Further, we identified certain conserved residues that are highly distinct from corresponding residues of animal PLCs. The motifs reported here could be used to annotate plant-specific phospholipase C sequences. Furthermore, we demonstrated that the C2 domain alone is capable of targeting PLC to the membrane in response to a Ca²⁺ signal. We also showed that the binding event results from a change in the hydrophobicity of the C2 domain upon Ca²⁺ binding. Bioinformatic analyses revealed that all PLCs from Arabidopsis and rice lack a transmembrane domain, myristoylation and GPI-anchor protein modifications. Our bioinformatic study indicates that plant PLCs are located in the cytoplasm, the nucleus and the mitochondria. Our results suggest that there are no distinct isoforms of plant PLCs, as have been proposed to exist in the soluble and membrane associated fractions. The same isoform could potentially be present in both subcellular fractions, depending on the calcium level of the cytosol. Overall, these data suggest that the C2 domain of PLC plays a vital role in calcium signalling.

摘要

磷酯酰肌醇特异性磷酯酶 C(PLC)参与 Ca²⁺介导的信号转导事件,导致细胞状态发生改变。使用各种序列分析方法,我们在已知 PLC 序列中鉴定出两个保守基序。鉴定出的基序位于植物 PLC 的 C2 结构域中,在其他任何蛋白质中都找不到。这些基序专门位于 Ca²⁺结合环中,并形成相邻的β链。此外,我们鉴定出某些保守残基与动物 PLC 的相应残基高度不同。这里报道的基序可用于注释植物特异性磷酯酶 C 序列。此外,我们证明仅 C2 结构域就能在 Ca²⁺信号作用下将 PLC 靶向膜。我们还表明,结合事件是由于 C2 结构域在 Ca²⁺结合后疏水性发生变化而产生的。生物信息学分析表明,拟南芥和水稻的所有 PLC 都缺乏跨膜结构域、豆蔻酰化和 GPI-锚定蛋白修饰。我们的生物信息学研究表明,植物 PLC 位于细胞质、细胞核和线粒体中。我们的结果表明,植物 PLC 没有不同的同工型,正如在可溶性和膜相关部分中所提出的那样。相同的同工型可能根据细胞质 Ca²⁺水平存在于两个亚细胞部分中。总的来说,这些数据表明 PLC 的 C2 结构域在钙信号转导中起着至关重要的作用。

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