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Role of the RAM Network in Cell Polarity and Hyphal Morphogenesis in Candida albicansopen access

Authors
Song, YunkyoungCheon, Seon AhLee, Kyung EunLee, So-YeonLee, Byung-KyuOh, Doo-ByungKang, Hyun AhKim, Jeong-Yoon
Issue Date
Dec-2008
Publisher
AMER SOC CELL BIOLOGY
Citation
MOLECULAR BIOLOGY OF THE CELL, v.19, no.12, pp 5456 - 5477
Pages
22
Journal Title
MOLECULAR BIOLOGY OF THE CELL
Volume
19
Number
12
Start Page
5456
End Page
5477
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/23521
DOI
10.1091/mbc.E08-03-0272
ISSN
1059-1524
1939-4586
Abstract
RAM (regulation of Ace2p transcription factor and polarized morphogenesis) is a conserved signaling network that regulates polarized morphogenesis in yeast, worms, flies, and humans. To investigate the role of the RAM network in cell polarity and hyphal morphogenesis of Candida albicans, each of the C. albicans RAM genes (CaCBK1, CaMOB2, CaKIC1, CaPAG1, CaHYM1, and CaSOG2) was deleted. All C. albicans RAM mutants exhibited hypersensitivity to cell-wall- or membrane-perturbing agents, exhibiting cell-separation defects, a multinucleate phenotype and loss of cell polarity. Yeast two-hybrid and in vivo functional analyses of CaCbk1p and its activator, CaMob2p, the key factors in the RAM network, demonstrated that the direct interaction between the SMA domain of CaCbk1p and the Mob1/phocein domain of CaMob2p was necessary for hyphal growth of C. albicans. Genome-wide transcription profiling of a Camob2 mutant suggested that the RAM network played a role in serum- and antifungal azoles-induced activation of ergosterol biosynthesis genes, especially those involved in the late steps of ergosterol biosynthesis, and might be associated, at least indirectly, with the Tup1p-Nrg1p pathway. Collectively, these results demonstrate that the RAM network is critically required for hyphal growth as well as normal vegetative growth in C. albicans.
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자연과학대학 (생명과학과)
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