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淋病奈瑟菌中血红蛋白利用的相变

Phase variation of hemoglobin utilization in Neisseria gonorrhoeae.

作者信息

Chen C J, Elkins C, Sparling P F

机构信息

Department of Medicine, School of Medicine, University of North Carolina, Chapel Hill 27599, USA.

出版信息

Infect Immun. 1998 Mar;66(3):987-93. doi: 10.1128/IAI.66.3.987-993.1998.

Abstract

Most Neisseria gonorrhoeae isolates are unable to use human hemoglobin as the sole source of iron for growth (Hgb-), but a minor population is able to do so (Hgb+). This minor population grows luxuriously on hemoglobin, expresses two outer membrane proteins of 42 kDa (HpuA) and 89 kDa (HpuB), and binds hemoglobin under iron-stressed conditions. In addition to the previously reported HpuB, we identified and characterized HpuA, which is encoded by the gene hpuA, located immediately upstream of hpuB. Expression of both proteins was found to be controlled at the translational level by frameshift mutations in a run of guanine residues within the hpuA sequence encoding the mature HpuA protein. The "on-phase" hemoglobin-utilizing variants contained 10 G's, while the "off-phase" variants contained 9 G's. Insertional hpuB mutants of FA19 Hgb+ and FA1090 Hgb+ no longer expressed HpuB but still produced HpuA. A polar insertional mutation of the upstream hpuA gene in FA1090 Hgb+ eliminated production of both HpuA and HpuB, whereas a nonpolar insertional mutant expressed HpuB only. Insertional mutagenesis of either hpuA or hpuB or both substantially decreased the hemoglobin binding ability of the FA1090 Hgb+ variant and prevented growth on hemoglobin plates. Therefore, both HpuA and HpuB were required for the utilization of hemoglobin for growth.

摘要

大多数淋病奈瑟菌分离株无法将人血红蛋白作为唯一的铁源用于生长(Hgb-),但有一小部分能够利用(Hgb+)。这一小部分在血红蛋白上生长旺盛,表达两种外膜蛋白,分子量分别为42 kDa(HpuA)和89 kDa(HpuB),并在铁缺乏条件下结合血红蛋白。除了先前报道的HpuB,我们鉴定并表征了HpuA,它由hpuA基因编码,位于hpuB上游紧邻位置。发现这两种蛋白的表达在翻译水平上受编码成熟HpuA蛋白的hpuA序列中一段鸟嘌呤残基处移码突变的控制。“开启阶段”的血红蛋白利用变体含有10个G,而“关闭阶段”的变体含有9个G。FA19 Hgb+和FA1090 Hgb+的插入型hpuB突变体不再表达HpuB,但仍产生HpuA。FA1090 Hgb+中上游hpuA基因的极性插入突变消除了HpuA和HpuB的产生,而非极性插入突变体仅表达HpuB。hpuA或hpuB或两者的插入诱变显著降低了FA1090 Hgb+变体的血红蛋白结合能力,并阻止其在血红蛋白平板上生长。因此,利用血红蛋白进行生长需要HpuA和HpuB两者。

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