Dubertret G, Mirshahi A, Mirshahi M, Gerard-Hirne C, Tremolieres A
Biochimie Fonctionnelle des Membranes Végétales, URA 1128, CNRS, Gif-sur-Yvette, France.
Eur J Biochem. 1994 Dec 1;226(2):473-82. doi: 10.1111/j.1432-1033.1994.tb20072.x.
The phosphatidylglycerol containing the unusual delta 3-trans hexadecenoic fatty acid is specifically found in photosynthetic membranes of eukaryotic organisms. Its involvement in the biogenesis and the structure of the light-harvesting chlorophyll a/b-protein complex has been evidenced by in vivo targeting this lipid to photosynthetic membranes of Chlamydomonas reinhardtii mutants lacking this lipid. In the mf1 and mf2 mutants, this deficiency results in (a) the absence of the oligomeric light-harvesting complex of photosystem 2; (b) an extensive destacking of thylakoid membranes; (c) a very low 77-K fluorescence emission in the photosystem-2 region. We show in this paper that these deficiencies result from modifications in the pigment and polypeptide compositions of the photosystem-2 light-harvesting complex; it contains less chlorophyll b and some of its constitutive polypeptides are absent or reduced in amount, while immunologically related polypeptides of lower molecular mass accumulate. The direct involvement of the lack of trans-C16: 1-phosphatidylglycerol in these deficiencies is evidenced by the partial restoration of normal characteristics of the light-harvesting complex (pigment and polypeptide composition, oligomerization) after liposome-mediated, in vivo incorporation of this lipid into the photosynthetic membranes of the mf2 mutant. Trans-C16:1-phosphatidylglycerol, therefore, is involved in the biogenesis of the photosystem-2 light-harvesting chlorophyll a/b-protein complex through a mechanism that may prevent degradation processes. Its contribution to the structural conformation of neosynthesized monomers and to their organization into stable oligomeric form is discussed.
含有异常δ3-反式十六碳烯酸的磷脂酰甘油专门存在于真核生物的光合膜中。通过在体内将这种脂质靶向缺乏该脂质的莱茵衣藻突变体的光合膜,已证明其参与了捕光叶绿素a/b-蛋白复合体的生物合成和结构。在mf1和mf2突变体中,这种缺陷导致:(a)光系统2的寡聚捕光复合体缺失;(b)类囊体膜广泛解堆叠;(c)在光系统2区域77-K荧光发射非常低。我们在本文中表明,这些缺陷是由光系统2捕光复合体的色素和多肽组成的改变引起的;它含有较少的叶绿素b,其一些组成多肽缺失或数量减少,而较低分子量的免疫相关多肽积累。脂质体介导的体内将这种脂质掺入mf2突变体的光合膜后,捕光复合体的正常特征(色素和多肽组成、寡聚化)部分恢复,证明了缺乏反式-C16:1-磷脂酰甘油直接参与了这些缺陷。因此,反式-C16:1-磷脂酰甘油通过一种可能防止降解过程的机制参与了光系统2捕光叶绿素a/b-蛋白复合体的生物合成。讨论了其对新合成单体的结构构象及其组织成稳定寡聚形式的贡献。