Adam Z, Malkin R
Division of Molecular Plant Biology, University of California, Berkeley 94720.
Biochim Biophys Acta. 1989 Jun 23;975(1):158-63. doi: 10.1016/s0005-2728(89)80214-2.
The interaction between cytochrome f and its electron acceptor plastocyanin (PC) was studied. To address the question of which specific regions and which of the positively charged residues of cytochrome f are important for the interaction with the negatively charged residues of PC we have used two different experimental approaches. Cytochrome f was proteolytically cleaved and fragments that could bind to a PC-affinity column were isolated. The smallest of these fragments was analysed to give information on the minimum structural requirement for binding to PC. By this procedure, we identified a peptide of approx. 11 kDa, containing the heme binding site, and having an N-terminal sequence identical to that of the mature cytochrome f. This finding suggests that the first 90 amino acids of cytochrome f contain at least some of the residues interacting with PC. The second approach involved modification of Arg residues of cytochrome f with the specific chemical modifier, hydroxyphenylglyoxal (HPG). Cytochrome f modification was performed in the absence of PC to enable identification of residues that are protected from modification when PC is bound to cytochrome f. Two peptides containing Arg residues which are modified in the absence of PC, but are not modified when PC is present, were isolated. Sequence analysis of these two peptides revealed that Arg residues no. 88 and 154 of cytochrome f are the residues that are protected from modification when cytochrome f is bound to PC, suggesting a role for these residues in the binding of cytochrome f to PC.
研究了细胞色素f与其电子受体质体蓝素(PC)之间的相互作用。为了解决细胞色素f的哪些特定区域以及哪些带正电荷的残基对于与PC带负电荷的残基相互作用很重要这一问题,我们采用了两种不同的实验方法。对细胞色素f进行蛋白水解切割,并分离出能够与PC亲和柱结合的片段。对这些片段中最小的片段进行分析,以获取与PC结合的最小结构要求的信息。通过这个过程,我们鉴定出一个约11 kDa的肽段,它包含血红素结合位点,并且其N端序列与成熟细胞色素f的N端序列相同。这一发现表明细胞色素f的前90个氨基酸至少包含一些与PC相互作用的残基。第二种方法涉及用特定的化学修饰剂羟苯基乙二醛(HPG)对细胞色素f的精氨酸残基进行修饰。在没有PC的情况下进行细胞色素f的修饰,以便鉴定当PC与细胞色素f结合时免受修饰的残基。分离出了两个含有精氨酸残基的肽段,它们在没有PC时会被修饰,但在有PC时不会被修饰。对这两个肽段的序列分析表明,细胞色素f的第88位和第154位精氨酸残基是当细胞色素f与PC结合时免受修饰的残基,这表明这些残基在细胞色素f与PC的结合中起作用。