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光滑假丝酵母甾醇摄取机制由 ATP 结合盒转运蛋白 Aus1p 介导,并受铁限制调节。

The Candida glabrata sterol scavenging mechanism, mediated by the ATP-binding cassette transporter Aus1p, is regulated by iron limitation.

机构信息

Department of Chemotherapy and Mycoses, National Institute of Infectious Diseases, 1-23-1 Toyama, Shinjuku-ku, Tokyo 162-8640, Japan.

出版信息

Mol Microbiol. 2013 Apr;88(2):371-81. doi: 10.1111/mmi.12189. Epub 2013 Mar 11.

Abstract

During disseminated infection by the opportunistic pathogen Candida glabrata, uptake of sterols such as serum cholesterol may play a significant role during pathogenesis. The ATP-binding cassette transporter Aus1p is thought to function as a sterol importer and in this study, we show that uptake of exogenous sterols occurred under anaerobic conditions in wild-type cells of C. glabrata but not in AUS1-deleted mutant (aus1Δ) cells. In aerobic cultures, growth inhibition by fluconazole was prevented in the presence of serum, and AUS1 expression was upregulated. Uptake of sterol by azole treated cells required the presence of serum, and sterol alone did not reverse FLC inhibition of growth. However, if iron availability in the growth medium was limited by addition of the iron chelators ferrozine or apo-transferrin, growth of wild-type cells, but not aus1Δ cells, was rescued. In a mouse model of disseminated infection, the C. glabrata aus1Δ strain caused a significantly decreased kidney fungal burden than the wild-type strain or a strain in which AUS1 was restored. We conclude that sterol uptake in C. glabrata can occur in iron poor environment of host tissues and thus may contribute to C. glabrata pathogenesis.

摘要

在机会性病原体 Candida glabrata 的播散性感染过程中,摄取固醇(如血清胆固醇)可能在发病机制中发挥重要作用。ATP 结合盒转运蛋白 Aus1p 被认为是固醇的摄取者,在本研究中,我们表明,在野生型 C. glabrata 细胞中,外源性固醇的摄取发生在厌氧条件下,但在 AUS1 缺失突变体(aus1Δ)细胞中则没有。在需氧培养物中,血清的存在可防止氟康唑引起的生长抑制,并且 AUS1 的表达上调。唑类处理细胞的固醇摄取需要血清的存在,而固醇本身并不能逆转 FLC 对生长的抑制作用。然而,如果通过添加铁螯合剂 ferrozine 或脱铁转铁蛋白来限制生长培养基中的铁可用性,则野生型细胞的生长得到恢复,但 aus1Δ 细胞则没有。在播散性感染的小鼠模型中,与野生型菌株或恢复 AUS1 的菌株相比,C. glabrata aus1Δ 菌株引起的肾脏真菌负荷显著降低。我们得出结论,C. glabrata 中的固醇摄取可以在宿主组织缺铁的环境中发生,因此可能有助于 C. glabrata 的发病机制。

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