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Budding of melanized Cryptococcus neoformans in the presence or absence of l-dopa

机译:在L-DOPA的存在或不存在的情况下,黑色化密码粥样蛋白酶的萌芽

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Cryptococcus neoformans is a pathogenic fungus that produces melanin when incubated in the presence of certain phenolic substrates such as l-3,4-dihydroxyphenylalanine (l-dopa). Melanin is an enigmatic polymer that is deposited in the cell wall and contributes to virulence. Substantial progress has been made in understanding the synthesis of melanin and the mechanisms by which it contributes to virulence, but relatively little is known about how melanin is rearranged during growth and budding. In this study we used transmission and scanning electron microscopy and immunofluorescence of melanized cells and melanin ‘ghosts' to study the process of melanization during replication. Budding in melanized C. neoformans results in focal disruption of cell-wall melanin at the bud site. In the presence of l-dopa, bud-related melanin defects are repaired and daughter cells are melanized. However, in the absence of substrate, mother cells cannot repair their melanin defects and daughter cells are non-melanized. Hence, melanin in the parent cell is not carried to the daughter cells, but rather is synthesized de novo in buds. These results imply that melanin remodelling occurs during cell growth in a process that involves degradation and synthesis at sites of budding.
机译:Cryptococcus Neoformans是一种致病性真菌,其在存在某些酚醛基材如L-3,4-二羟基苯基丙氨酸(L-DOPA)的情况下孵育时产生黑色素。黑色素是沉积在细胞壁中并有助于毒力的神经典型聚合物。理解黑色素的合成以及它有助于毒力的机制,已经取得了实质性进展,但是关于在生长和萌芽期间黑色素被重新排列的黑色素相对较少。在这项研究中,我们使用传输和扫描电子显微镜和黑色素化细胞的免疫荧光和黑色素“幽灵”研究复制过程中的黑色化过程。 MILANIZED的芽芽C. Neoformans导致在芽位点的细胞壁黑色素的局灶性破坏。在L-DOPA存在下,修复了芽相关的黑色素缺陷,并将子细胞呈黑化。然而,在没有底物的情况下,母细胞不能修复它们的黑色素缺陷,子细胞是非黑色的。因此,亲本细胞中的黑色素不携带给子细胞,而是在芽中合成De Novo。这些结果意味着在细胞生长期间发生黑色素重塑在涉及萌芽位置的降解和合成的过程中。

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