Hernández-Gras Francesc, Boronat Albert
Departament de Bioquímica i Biologia Molecular, Facultat de Biologia, Universitat de Barcelona, Avda. Diagonal 643, 08028, Barcelona, Spain.
Plant Mol Biol. 2015 Jun;88(3):301-11. doi: 10.1007/s11103-015-0326-x. Epub 2015 May 10.
Temperature-induced lipocalins (TILs) play an essential role in the response of plants to different abiotic stresses. In agreement with their proposed role in protecting membrane lipids, TILs have been reported to be associated to cell membranes. However, TILs show an overall hydrophilic character and do not contain any signal for membrane targeting nor hydrophobic sequences that could represent transmembrane domains. Arabidopsis TIL (AtTIL) is considered the ortholog of human ApoD, a protein known to associate to membranes through a short hydrophobic loop protruding from strands 5 and 6 of the lipocalin β-barrel. An equivalent loop (referred to as HPR motif) is also present between β-strands 5 and 6 of TILs. The HPR motif, which is highly conserved among TIL proteins, extends over as short stretch of eight amino acids and contains four invariant proline residues. Subcellular localization studies have shown that TILs are targeted to a variety of cell membranes and organelles. We have also found that the HPR motif is necessary and sufficient for the intracellular targeting of TILs. Modeling studies suggest that the HPR motif may directly anchor TILs to cell membranes, favoring in this way further contact with the polar group of membrane lipids. However, some particular features of the HPR motif open the possibility that targeting of TILs to cell membranes could be mediated by interaction with other proteins. The functional analysis of the HPR motif unveils the existence of novel mechanisms involved in the intracellular targeting of proteins in plants.
温度诱导的脂质运载蛋白(TILs)在植物对不同非生物胁迫的响应中起着至关重要的作用。与它们在保护膜脂方面所提出的作用一致,据报道TILs与细胞膜相关。然而,TILs总体上表现出亲水性特征,不包含任何膜靶向信号,也没有可代表跨膜结构域的疏水序列。拟南芥TIL(AtTIL)被认为是人类载脂蛋白D(ApoD)的直系同源物,已知该蛋白通过从脂质运载蛋白β桶的第5和第6条链伸出的短疏水环与膜结合。在TILs的β链5和6之间也存在一个等效环(称为HPR基序)。HPR基序在TIL蛋白中高度保守,延伸超过一段由八个氨基酸组成的短序列,并且包含四个不变的脯氨酸残基。亚细胞定位研究表明,TILs靶向多种细胞膜和细胞器。我们还发现HPR基序对于TILs的细胞内靶向是必要且充分的。建模研究表明,HPR基序可能直接将TILs锚定到细胞膜上,从而有利于与膜脂的极性基团进一步接触。然而,HPR基序的一些特殊特征使得TILs靶向细胞膜可能是通过与其他蛋白质相互作用介导的。对HPR基序的功能分析揭示了植物中蛋白质细胞内靶向所涉及的新机制的存在。