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首页> 外文期刊>Plant Molecular Biology >LHCAR1 OF THE RED ALGA PORPHYRIDIUM CRUENTUM ENCODES A POLYPEPTIDE OF THE LHCI COMPLEX WITH SEVEN POTENTIAL CHLOROPHYLL A-BINDING RESIDUES THAT ARE CONSERVED IN MOST LHCS
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LHCAR1 OF THE RED ALGA PORPHYRIDIUM CRUENTUM ENCODES A POLYPEPTIDE OF THE LHCI COMPLEX WITH SEVEN POTENTIAL CHLOROPHYLL A-BINDING RESIDUES THAT ARE CONSERVED IN MOST LHCS

机译:红藻鲍鱼轮虫的LHCAR1编码LHCI配合物的多肽,该肽具有最多保留在LHC中的七种潜在的叶绿素A结合残基

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摘要

The accessory light-harvesting polypeptides associated with photosystem I (LHCI)! in Porphyridium cruentum bind chlorophyll a, zeaxanthin and p-carotene. A cDNA library of P. cruentum was screened with an antiserum specific to the LHCI polypeptides, and an 0.9 kb fragment was identified as coding for an LHCI polypeptide. This cDNA; which we named LhcaR1, has an open reading frame encoding 222 amino acid residues including a putative transit peptide of 28 amino acids. Hydropathy analysis suggests that there are three transmembrane helices in the mature polypeptide. Each of the amino acid residues that bind chlorophyll (six residues) and serve in stabilizing the helices in higher-plant LHCs are conserved in helices I and 3 of P. cruentum LhcaR1. The N-terminal flanking regions of these two helices also show high sequence conservation with other LHCs. Helix 2 contains a seventh putative chlorophyll-binding site, but resembles helix 2 of higher-plant LHCs to a lesser degree. A sequence motif of 11 residues found near the N-terminus and in each of the three helices suggests the possibility that the red algal LhcaR1 derives from a gene duplication. Polypeptides of the expected molecular weight in six other red algae (Achrochaetium, Bangia, Callithamnion Cyanidium, Polysiphonia, Spermothamnion) were recognized by the antiserum to P. cruentum LHCI, indicating a wide distribution of LHCI in rhodophytes. [References: 37]
机译:与光系统​​I(LHCI)相关的辅助光收集多肽!在卟啉卟啉中结合叶绿素a,玉米黄质和对胡萝卜素。用对LHCI多肽具有特异性的抗血清筛选了克鲁维酵母的cDNA文库,并鉴定出一个0.9 kb的片段编码LHCI多肽。该cDNA;我们将其命名为LhcaR1,其开放阅读框编码222个氨基酸残基,其中包括一个推测的28个氨基酸的转运肽。亲水性分析表明,在成熟多肽中存在三个跨膜螺旋。结合叶绿素的六个氨基酸残基(六个残基)可用于稳定高等植物LHC中的螺旋,这些氨基酸残基在P. cruentum LhcaR1的螺旋I和3中是保守的。这两个螺旋的N-末端侧翼区也显示出与其他LHCs的高序列保守性。螺旋2包含第七个假定的叶绿素结合位点,但在较小程度上类似于高植物LHC的螺旋2。在N末端附近和三个螺旋中的每一个中发现的11个残基的序列基序表明,红色藻LhcaR1可能来自基因重复。对六面体假单胞菌LHCI的抗血清可识别出在其他六种红藻(Achrochaetium,Bangia,Callithamnion Cyanidium,Polysiphonia,Spermothamnion)中具有预期分子量的多肽,这表明LHCI在红藻植物中分布广泛。 [参考:37]

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