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1
Myosin I is required for hypha formation in Candida albicans.
Eukaryot Cell. 2002 Apr;1(2):213-28. doi: 10.1128/EC.1.2.213-228.2002.
2
Polarized hyphal growth in Candida albicans requires the Wiskott-Aldrich Syndrome protein homolog Wal1p.
Eukaryot Cell. 2004 Apr;3(2):471-82. doi: 10.1128/EC.3.2.471-482.2004.
3
Functional characterization of myosin I tail regions in Candida albicans.
Eukaryot Cell. 2004 Oct;3(5):1272-86. doi: 10.1128/EC.3.5.1272-1286.2004.
4
The formin family protein CaBni1p has a role in cell polarity control during both yeast and hyphal growth in Candida albicans.
J Cell Sci. 2005 Jun 15;118(Pt 12):2637-48. doi: 10.1242/jcs.02393. Epub 2005 May 24.
6
Differences in actin localization during bud and hypha formation in the yeast Candida albicans.
J Gen Microbiol. 1986 Jul;132(7):2035-47. doi: 10.1099/00221287-132-7-2035.
7
Multifunction of the ER P-Type Calcium Pump Spf1 During Hyphal Development in Candida albicans.
Mycopathologia. 2019 Oct;184(5):573-583. doi: 10.1007/s11046-019-00372-5. Epub 2019 Aug 31.
8
Genetic Analysis of Sirtuin Deacetylases in Hyphal Growth of .
mSphere. 2021 May 5;6(3):e00053-21. doi: 10.1128/mSphere.00053-21.
9
Hyphal tip-associated localization of Cdc42 is F-actin dependent in Candida albicans.
Eukaryot Cell. 2002 Dec;1(6):856-64. doi: 10.1128/EC.1.6.856-864.2002.
10
Septin function in Candida albicans morphogenesis.
Mol Biol Cell. 2002 Aug;13(8):2732-46. doi: 10.1091/mbc.e02-01-0013.

引用本文的文献

1
Myosin-II proteins are involved in the growth, morphogenesis, and virulence of the human pathogenic fungus .
Front Cell Infect Microbiol. 2022 Dec 16;12:1031463. doi: 10.3389/fcimb.2022.1031463. eCollection 2022.
2
From Jekyll to Hyde: The Yeast-Hyphal Transition of .
Pathogens. 2021 Jul 7;10(7):859. doi: 10.3390/pathogens10070859.
3
Recent advances in understanding hyphal growth.
F1000Res. 2019 May 21;8. doi: 10.12688/f1000research.18546.1. eCollection 2019.
5
Ras hyperactivation versus overexpression: Lessons from Ras dynamics in Candida albicans.
Sci Rep. 2018 Mar 27;8(1):5248. doi: 10.1038/s41598-018-23187-8.
6
A Global Analysis of Kinase Function in Hyphal Morphogenesis Reveals a Role for the Endocytosis Regulator Akl1.
Front Cell Infect Microbiol. 2018 Feb 8;8:17. doi: 10.3389/fcimb.2018.00017. eCollection 2018.
7
Chemical inhibitors of Candida albicans hyphal morphogenesis target endocytosis.
Sci Rep. 2017 Jul 18;7(1):5692. doi: 10.1038/s41598-017-05741-y.
8
A class-II myosin is required for growth, conidiation, cell wall integrity and pathogenicity of Magnaporthe oryzae.
Virulence. 2017 Oct 3;8(7):1335-1354. doi: 10.1080/21505594.2017.1323156. Epub 2017 Apr 27.
9
Myosin 1b functions as an effector of EphB signaling to control cell repulsion.
J Cell Biol. 2015 Jul 20;210(2):347-61. doi: 10.1083/jcb.201501018.
10
Regulation and control of myosin-I by the motor and light chain-binding domains.
Trends Cell Biol. 2013 Feb;23(2):81-9. doi: 10.1016/j.tcb.2012.10.008. Epub 2012 Nov 29.

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Emerging from the Pak: the p21-activated protein kinase family.
Trends Cell Biol. 1997 Apr;7(4):162-7. doi: 10.1016/S0962-8924(97)01003-9.
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The life cycle of actin patches in mating yeast.
J Cell Sci. 2001 Apr;114(Pt 8):1505-13. doi: 10.1242/jcs.114.8.1505.
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Identification and functional analysis of the gene for type I myosin in fission yeast.
Genes Cells. 2001 Mar;6(3):187-99. doi: 10.1046/j.1365-2443.2001.00414.x.
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Genomic evidence for a complete sexual cycle in Candida albicans.
Proc Natl Acad Sci U S A. 2001 Mar 13;98(6):3249-53. doi: 10.1073/pnas.061628798.
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Candida albicans INT1-induced filamentation in Saccharomyces cerevisiae depends on Sla2p.
Mol Cell Biol. 2001 Feb;21(4):1272-84. doi: 10.1128/MCB.21.4.1272-1284.2001.
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Rho GTPases: molecular switches that control the organization and dynamics of the actin cytoskeleton.
Philos Trans R Soc Lond B Biol Sci. 2000 Jul 29;355(1399):965-70. doi: 10.1098/rstb.2000.0632.
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Transcriptional control of cell type and morphogenesis in Candida albicans.
Curr Opin Microbiol. 2000 Dec;3(6):582-8. doi: 10.1016/s1369-5274(00)00144-2.

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