Cope L D, Yogev R, Muller-Eberhard U, Hansen E J
Department of Microbiology, University of Texas Southwestern Medical Center, Dallas 75235, USA.
J Bacteriol. 1995 May;177(10):2644-53. doi: 10.1128/jb.177.10.2644-2653.1995.
The utilization of heme bound to the serum glycoprotein hemopexin by Haemophilus influenzae type b (Hib) strain DL42 requires the presence of the 100-kDa heme:hemopexin-binding protein encoded by the hxuA gene (M. S. Hanson, S. E. Pelzel, J. Latimer, U. Muller-Eberhard, and E. J. Hansen, Proc. Natl. Acad. Sci. USA 89:1973-1977, 1992). Nucleotide sequence analysis of a 5-kb region immediately upstream from the hxuA gene revealed the presence of two genes, designated hxuC and hxuB, which encoded outer membrane proteins. The 78-kDa HxuC protein had similarity to TonB-dependent outer membrane proteins of other organisms, whereas the 60-kDa HxuB molecule most closely resembled the ShlB protein of Serratia marcescens. A set of three isogenic Hib mutants with cat cartridges inserted individually into their hxuA, hxuB, and hxuC genes was constructed. None of these mutants could utilize heme:hemopexin. The hxuC mutant was also unable to utilize low levels of free heme, whereas both the hxuA and hxuB mutants could utilize free heme. When the wild-type hxuC gene was present in trans, the hxuC mutant regained its ability to utilize low levels of free heme but still could not utilize heme:hemopexin. The hxuA mutant could utilize heme:hemopexin when a functional hxuA gene from a nontypeable H. influenzae strain was present in trans. Complementation analysis using this cloned nontypeable H. influenzae hxuA gene also indicated that the HxuB protein likely functions in the release of soluble HxuA from the Hib cell. These studies indicate that at least two and possible three gene products are required for utilization of heme bound to hemopexin by Hib strain DL42.
b型流感嗜血杆菌(Hib)菌株DL42对与血清糖蛋白血红素结合蛋白结合的血红素的利用需要hxuA基因编码的100 kDa血红素:血红素结合蛋白的存在(M. S. 汉森、S. E. 佩尔泽、J. 拉蒂默、U. 米勒 - 埃伯哈德和E. J. 汉森,《美国国家科学院院刊》89:1973 - 1977, 1992)。对hxuA基因上游紧邻的一个5 kb区域进行核苷酸序列分析,发现存在两个基因,命名为hxuC和hxuB,它们编码外膜蛋白。78 kDa的HxuC蛋白与其他生物的依赖TonB的外膜蛋白有相似性,而60 kDa的HxuB分子与粘质沙雷氏菌的ShlB蛋白最为相似。构建了一组三个同基因的Hib突变体,它们分别将卡那霉素抗性盒插入到各自的hxuA、hxuB和hxuC基因中。这些突变体均不能利用血红素:血红素结合蛋白。hxuC突变体也无法利用低水平的游离血红素,而hxuA和hxuB突变体都能利用游离血红素。当野生型hxuC基因以反式存在时,hxuC突变体重获利用低水平游离血红素的能力,但仍不能利用血红素:血红素结合蛋白。当来自非b型流感嗜血杆菌菌株的功能性hxuA基因以反式存在时,hxuA突变体能够利用血红素:血红素结合蛋白。使用该克隆的非b型流感嗜血杆菌hxuA基因进行的互补分析还表明,HxuB蛋白可能在从Hib细胞释放可溶性HxuA中发挥作用。这些研究表明,Hib菌株DL利用与血红素结合蛋白结合的血红素至少需要两种基因产物,可能需要三种。