Throne-Holst M, Thöny-Meyer L, Hederstedt L
Department of Microbiology, Lund University, Sweden.
FEBS Lett. 1997 Jun 30;410(2-3):351-5. doi: 10.1016/s0014-5793(97)00656-x.
Escherichia coli CcmA, CcmB and CcmC polypeptides are required for cytochrome c synthesis and are thought to constitute the subunits of an ABC-type transporter as judged from sequence data. Using a periplasmic reporter system based on Bacillus subtilis cytochrome c-550 and E. coli cytochrome b-562 we show that the synthesis of the b-type cytochrome in the periplasm is normal in E. coli ccmA and ccmC in-frame deletion mutants. Mutants deleted for ccmF or ccmG encoding a component of a putative cytochrome c-heme lyase and a membrane bound thioredoxin-like protein, respectively, have the same phenotype. The ccm mutants produce cytochrome c-550 polypeptide, but not holocytochrome c. Taken together the results demonstrate that heme can be transported to the periplasm by a ccm-independent mechanism.
大肠杆菌的CcmA、CcmB和CcmC多肽是细胞色素c合成所必需的,从序列数据判断,它们被认为构成ABC型转运蛋白的亚基。使用基于枯草芽孢杆菌细胞色素c-550和大肠杆菌细胞色素b-562的周质报告系统,我们发现周质中b型细胞色素的合成在大肠杆菌ccmA和ccmC框内缺失突变体中是正常的。分别缺失编码假定的细胞色素c-血红素裂合酶组分和膜结合硫氧还蛋白样蛋白的ccmF或ccmG的突变体具有相同的表型。ccm突变体产生细胞色素c-550多肽,但不产生全细胞色素c。综合这些结果表明,血红素可以通过一种不依赖ccm的机制转运到周质中。