Ikeuchi M, Hirano A, Hiyama T, Inoue Y
Solar Energy Research Group, Institute of Physical and Chemical Research, Saitama, Japan.
FEBS Lett. 1990 Apr 24;263(2):274-8. doi: 10.1016/0014-5793(90)81391-z.
High resolution gel electrophoresis of the native photosystem I complex retaining light-harvesting chlorophyll complex revealed the presence of three low-molecular-mass proteins of 7, 4.1 and 3.9 kDa in spinach, and 6.8, 4.4 and 4.1 kDa in pea, in addition to the other well-characterized higher-molecular-mass components. Upon further detergent treatment to deplete light-harvesting chlorophyll complex, the 7 kDa and 4.1 kDa proteins were removed from the photosystem I core complex of spinach, while the 3.9 kDa protein was retained. N-terminal sequencing demonstrated that the 4.1 kDa proteins from both spinach and pea correspond to the gene product of ORF42/44 in chloroplast genome of liverwort and higher plants, which was previously hypothesized as a photosystem I gene (psaJ) based on sequence homology with the cyanobacterial photosystem I component of 4.1 kDa [(1989) FEBS Lett. 253, 257-263]. N-terminal sequence of the spinach 3.9 kDa and pea 4.4 kDa proteins fitted with chloroplast ORF36/40 (psaI) although no homologue has been found in cyanobacteria. The spinach 7 kDa and pea 6.8 kDa proteins correspond to the nuclear-encoded psaK product and significantly matched with the N-terminal sequence of the cyanobacterial 6.5 kDa subunit. The evolutional conservation of the psaJ and psaK seems to suggest their intrinsic role(s) in photosystem I.
对保留捕光叶绿素复合体的天然光系统I复合体进行高分辨率凝胶电泳分析,结果显示,除了其他已明确表征的高分子量组分外,菠菜中存在分子量分别为7 kDa、4.1 kDa和3.9 kDa的三种低分子量蛋白质,豌豆中存在分子量分别为6.8 kDa、4.4 kDa和4.1 kDa的三种低分子量蛋白质。经过进一步的去污剂处理以去除捕光叶绿素复合体后,7 kDa和4.1 kDa的蛋白质从菠菜的光系统I核心复合体中被去除,而3.9 kDa的蛋白质则保留了下来。N端测序表明,菠菜和豌豆中的4.1 kDa蛋白质与地钱和高等植物叶绿体基因组中ORF42/44的基因产物相对应,基于与蓝细菌4.1 kDa光系统I组分的序列同源性,该基因产物先前被假定为光系统I基因(psaJ)[(1989)《欧洲生物化学学会联合会快报》253, 257 - 263]。菠菜3.9 kDa和豌豆4.4 kDa蛋白质的N端序列与叶绿体ORF36/40(psaI)相符,尽管在蓝细菌中未发现同源物。菠菜7 kDa和豌豆6.8 kDa蛋白质与核编码的psaK产物相对应,并且与蓝细菌6.5 kDa亚基的N端序列显著匹配。psaJ和psaK在进化上的保守性似乎表明它们在光系统I中具有内在作用。