Department of Internal Medicine, Division of Infectious Diseases, University of Cincinnati College of Medicine, Cincinnati, OH 45267-0560, USA.
Med Mycol. 2011 Aug;49(6):633-42. doi: 10.3109/13693786.2011.558930. Epub 2011 Feb 22.
Histoplasma capsulatum is a dimorphic fungal pathogen that survives and replicates within macrophages (MΦ). Studies in human and murine MΦ demonstrate that the intracellular growth of H. capsulatum yeasts is exquisitely sensitive to the availability of iron. As H. capsulatum produces hydroxamate siderophores, we sought to determine if siderophores were required for intracellular survival in MΦ, and in a murine model of pulmonary histoplasmosis. The expression of SID1 (coding for L-ornithine-N(5)-monooxygenase) was silenced by RNA interference (RNAi) in H. capsulatum strain G217B, and abolished by gene targeting in strain G186AR. G217B SID1-silenced yeasts grew normally in rich medium, did not synthesize siderophores, and were unable to grow on apotransferrin-chelated medium. Their intracellular growth in human and murine MΦ was significantly decreased compared to wild type (WT) yeasts, but growth was restored to WT levels by the addition of exogenous iron, or restoration of SID1 expression. Similar results were obtained with G186AR Δsid1 yeasts. Compared to WT yeasts, G217B SID1-silenced yeasts demonstrated in C57BL/6 mice significantly reduced growth in the lungs and spleens seven days after infection, and 40% of the mice given a normally lethal inoculum of G217B SID1-silenced yeasts survived. These experiments demonstrate that: (1) SID1 expression is required for siderophore biosynthesis by H. capsulatum strain G217B, (2) SID1 expression is required for optimum intracellular growth in MΦ, and (3) inhibition of SID1 expression in vivo reduces the virulence of H. capsulatum yeasts.
荚膜组织胞浆菌是一种二态真菌病原体,在巨噬细胞(MΦ)内生存和复制。在人类和鼠类 MΦ中的研究表明,荚膜组织胞浆菌酵母的细胞内生长对铁的可用性极为敏感。由于荚膜组织胞浆菌产生羟肟酸类铁载体,我们试图确定铁载体是否是 MΦ 内生存和肺部荚膜组织胞浆菌病的鼠模型中细胞内生存所必需的。荚膜组织胞浆菌菌株 G217B 中的 SID1(编码 L-鸟氨酸-N(5)-单加氧酶)的表达通过 RNA 干扰(RNAi)沉默,并在菌株 G186AR 中通过基因靶向消除。G217B SID1 沉默的酵母在丰富培养基中正常生长,不合成铁载体,并且不能在无转铁蛋白螯合的培养基上生长。与野生型(WT)酵母相比,它们在人源和鼠源 MΦ 中的细胞内生长明显减少,但通过添加外源性铁或恢复 SID1 表达,生长恢复到 WT 水平。G186AR Δsid1 酵母也得到了类似的结果。与 WT 酵母相比,G217B SID1 沉默的酵母在感染后 7 天在 C57BL/6 小鼠的肺部和脾脏中的生长明显减少,给予正常致死性接种量的 G217B SID1 沉默的酵母的 40%小鼠存活下来。这些实验表明:(1)SID1 表达是荚膜组织胞浆菌菌株 G217B 合成铁载体所必需的,(2)SID1 表达是 MΦ 中最佳细胞内生长所必需的,(3)体内抑制 SID1 表达降低了荚膜组织胞浆菌酵母的毒力。