Peter N. Lipke

Affiliations: 
Biochemistry City University of New York, New York, NY, United States 
Area:
Biochemistry, Microbiology Biology
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"Peter Lipke"

Children

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Chong Jue grad student 2001 CUNY
Pearl Kipnis grad student 2002 CUNY
Jason Rauceo grad student 2006 CUNY
Henry N. Otoo grad student 2007 CUNY
Juan E. Coronado grad student 2008 CUNY
Edimarlyn Gonzalez grad student 2009 CUNY
Cho X. Chan grad student 2014 CUNY
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Publications

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Ho V, Herman-Bausier P, Shaw C, et al. (2019) An Amyloid Core Sequence in the Major Candida albicans Adhesin Als1p Mediates Cell-Cell Adhesion. Mbio. 10
Behrens NE, Lipke PN, Pilling D, et al. (2019) Serum Amyloid P Component Binds Fungal Surface Amyloid and Decreases Human Macrophage Phagocytosis and Secretion of Inflammatory Cytokines. Mbio. 10
Lipke PN, Klotz SA, Dufrene YF, et al. (2018) Amyloid-Like β-Aggregates as Force-Sensitive Switches in Fungal Biofilms and Infections. Microbiology and Molecular Biology Reviews : Mmbr. 82
Klotz SA, Sobonya RE, Lipke PN, et al. (2016) Serum Amyloid P Component and Systemic Fungal Infection: Does It Protect the Host or Is It a Trojan Horse? Open Forum Infectious Diseases. 3: ofw166
Barua S, Li L, Lipke PN, et al. (2016) Molecular Basis for Strain Variation in the Saccharomyces cerevisiae Adhesin Flo11p. Msphere. 1
Chan CX, El-Kirat-Chatel S, Joseph IG, et al. (2016) Force Sensitivity in Saccharomyces cerevisiae Flocculins. Msphere. 1
Rameau RD, Jackson DN, Beaussart A, et al. (2016) The Human Disease-Associated Aβ Amyloid Core Sequence Forms Functional Amyloids in a Fungal Adhesin. Mbio. 7
Garcia-Sherman MC, Lundberg T, Sobonya RE, et al. (2015) A unique biofilm in human deep mycoses: fungal amyloid is bound by host serum amyloid P component. Npj Biofilms and Microbiomes. 1
Chan CX, Joseph IG, Huang A, et al. (2015) Quantitative Analyses of Force-Induced Amyloid Formation in Candida albicans Als5p: Activation by Standard Laboratory Procedures. Plos One. 10: e0129152
El-Kirat-Chatel S, Beaussart A, Vincent SP, et al. (2015) Forces in yeast flocculation. Nanoscale. 7: 1760-7
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