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Temporal Behavior of Capsule Enlargement by Cryptococcus neoformans

机译:新型隐球菌扩大胶囊的时间行为

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Microbial capsules are important virulence traits that mediate cell-host interactions and provide protection against host immune defense mechanisms. Cryptococcus neoformans is a yeast-like fungus that is capable of synthesizing a complex polysaccharide (PS) capsule that is required for causing disease. Microscopic visualization of capsule enlargement is difficult, because the capsule is a highly hydrated structure with an index of refraction that is very close to that of aqueous medium. In this study, we took advantage of the capsular reaction (“quellung” effect) produced by IgM monoclonal antibody (MAb) 13F1 to increase the refraction index difference between capsule and medium such that we visualized the capsule using differential interference contrast (DIC) microscopy. Time-lapse size measurements allowed us to quantify the growth rate of the capsule relative to that of the cell body. The increase in capsule volume per unit of time was consistent with a logistic variable slope model in which the capsule's final size was proportional to the rate of its growth. The rate of capsule growth (0.3 to 2.5 μm3/min) was at least 4-fold faster than the rate of cell body growth (0.1 to 0.3 μm3/min), and there was large cell-to-cell variation in the temporal kinetics of capsule and cellular growth. Previous to the first cellular replication event, both the capsule and cell body enlarged simultaneously, and their differences showed monotonic growth, which was affected only by its rate of volume increase per unit of time. Using these results, we provide an updated model for cryptococcal capsule biogenesis.
机译:微生物胶囊是重要的毒力特性,可调节细胞与宿主之间的相互作用并提供针对宿主免疫防御机制的保护。新型隐球菌是一种酵母样真菌,能够合成引起疾病所需的复合多糖(PS)胶囊。由于胶囊是高度水合的结构,其折射率与水介质的折射率非常接近,因此很难通过显微镜观察胶囊的扩大情况。在这项研究中,我们利用了IgM单克隆抗体(MAb)13F1产生的荚膜反应(“ quellung”效应)来增加胶囊和培养基之间的折射率差,因此我们使用差分干涉对比(DIC)显微镜观察了胶囊。随时间推移的尺寸测量使我们能够定量相对于细胞体的胶囊生长速率。每单位时间胶囊体积的增加与逻辑变量斜率模型一致,在该模型中,胶囊的最终尺寸与其生长速度成正比。胶囊的生长速率(0.3至2.5μm 3 / min)至少快4倍于细胞体的生长速率(0.1至0.3μm 3 / min) ),并且在囊膜和细胞生长的时间动力学方面,细胞之间存在较大的差异。在第一次细胞复制事件之前,胶囊和细胞体都同时扩大,并且它们的差异显示出单调增长,这仅受其单位时间体积增加率的影响。使用这些结果,我们提供了隐球菌胶囊生物发生的更新模型。

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