Polacheck I, Platt Y, Aronovitch J
Department of Clinical Microbiology, Hebrew University-Hadassah Medical Center, Jerusalem, Israel.
Infect Immun. 1990 Sep;58(9):2919-22. doi: 10.1128/iai.58.9.2919-2922.1990.
Cryptococcus neoformans was unable to utilize catecholamines (epinephrine, norepinephrine, or dopamine) as sole carbon or nitrogen sources. Therefore, catecholamines are not essential growth factors for this fungus and the brain is not a preferred nutritional niche for its growth with regard to catecholamines. To establish whether the brain is a survival niche for C. neoformans and to explain the role of phenoloxidase as a virulence factor, a wild-type strain that had phenoloxidase activity and mutants which lacked it were exposed to an epinephrine oxidative system, and the survival of both strains was tested. The oxidative system contained epinephrine as an electron donor, Fe3+ as the catalytic transition metal ion, and hydrogen peroxide as an electron acceptor. The wild-type strain was found to be resistant to this oxidative system, whereas under the same conditions the mutant strain was susceptible and its survival decreased at a rate of 4 logs per h. Damage to high-molecular-weight DNA seems to be a causative factor of cell death after exposure of the mutants to the oxidative system. These results suggest that C. neoformans may survive in the brain because of its ability to utilize catecholamines for melanogenesis and thus neutralize the harmful effects of catecholamines which are manifested in the presence of hydrogen peroxide and transition metal ions. The role of phenoloxidase in resistance to the epinephrine oxidative system is also discussed.
新型隐球菌无法将儿茶酚胺(肾上腺素、去甲肾上腺素或多巴胺)作为唯一的碳源或氮源。因此,儿茶酚胺不是这种真菌生长所必需的生长因子,就儿茶酚胺而言,大脑也不是其生长的首选营养小生境。为了确定大脑是否是新型隐球菌的生存小生境,并解释酚氧化酶作为毒力因子的作用,将具有酚氧化酶活性的野生型菌株和缺乏该酶的突变体暴露于肾上腺素氧化系统中,并测试了两种菌株的存活率。该氧化系统以肾上腺素作为电子供体,Fe3+作为催化过渡金属离子,过氧化氢作为电子受体。发现野生型菌株对该氧化系统具有抗性,而在相同条件下突变体菌株易感,其存活率以每小时4个对数的速率下降。高分子量DNA的损伤似乎是突变体暴露于氧化系统后细胞死亡的一个致病因素。这些结果表明,新型隐球菌可能因其利用儿茶酚胺进行黑色素生成的能力而在大脑中存活,从而中和儿茶酚胺在过氧化氢和过渡金属离子存在下所表现出的有害影响。还讨论了酚氧化酶在抵抗肾上腺素氧化系统中的作用。