The vacuole of yeast shares many features with mammalian lysosomes. It is an acidic compartment, contains several major hydrolases, an d is the final destination for several compounds which enter the cell by receptor-mediated endocytosis and fluid-phase endocytosis. Because yeast is amendable to genetical, biochemical, and cell biological analysis, and because the vacuole is such a large and conspicuous organelle in a yeast cell, yeast is an excellent model system for studies on the function and assembly of this organelle. This lab has accumulated a large collection of mutants defective in vacuolar function and assembly. Advancements in molecular biology has allowed us to easily clone and sequence the genes identified by the defective mutants. In 1988/89 alone we have cloned and sequenced 4 genes (PEP3, PEP5, PEP7, PEP12) found to be involved in vacuolar function. With sequence in hand we have turned to computer analysis for which up till now we have relied on the services of the now defunct BIONET. Our specific computer needs are: 1) sequencing management 2) nucleic and amino acid similarity searches and comparisons and 3) primary and secondary structure analysis. Most of our needs can be met by the Wisconsin package (UWGCG) loaded on VAX. In the interest of time the CRAY would be used to compare our protein sequences to all six translated reading frames of EMBL or GENBANK databases using FASTDB. Our facilities for interacting with PSC are an IBM-PC with a 2400 baud modem which allows us to access the Telenet Public Data Network or to dial into the Carnegie Mellon University Annex Terminal Server and a Macintosh which is connected to the Carnegie Mellon Internet through an AppleTalk connector. We have no current financial or supercomputing support for our computing needs

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Biotechnology Resource Grants (P41)
Project #
5P41RR006009-10
Application #
6221016
Study Section
Project Start
1999-08-01
Project End
2000-07-31
Budget Start
1998-10-01
Budget End
1999-09-30
Support Year
10
Fiscal Year
1999
Total Cost
Indirect Cost
Name
Mellon Pitts Corporation (Mpc Corp)
Department
Type
DUNS #
City
Pittsburgh
State
PA
Country
United States
Zip Code
15213
Simakov, Nikolay A; Kurnikova, Maria G (2018) Membrane Position Dependency of the pKa and Conductivity of the Protein Ion Channel. J Membr Biol 251:393-404
Yonkunas, Michael; Buddhadev, Maiti; Flores Canales, Jose C et al. (2017) Configurational Preference of the Glutamate Receptor Ligand Binding Domain Dimers. Biophys J 112:2291-2300
Hwang, Wonmuk; Lang, Matthew J; Karplus, Martin (2017) Kinesin motility is driven by subdomain dynamics. Elife 6:
Earley, Lauriel F; Powers, John M; Adachi, Kei et al. (2017) Adeno-associated Virus (AAV) Assembly-Activating Protein Is Not an Essential Requirement for Capsid Assembly of AAV Serotypes 4, 5, and 11. J Virol 91:
Subramanian, Sandeep; Chaparala, Srilakshmi; Avali, Viji et al. (2016) A pilot study on the prevalence of DNA palindromes in breast cancer genomes. BMC Med Genomics 9:73
Ramakrishnan, N; Tourdot, Richard W; Radhakrishnan, Ravi (2016) Thermodynamic free energy methods to investigate shape transitions in bilayer membranes. Int J Adv Eng Sci Appl Math 8:88-100
Zhang, Yimeng; Li, Xiong; Samonds, Jason M et al. (2016) Relating functional connectivity in V1 neural circuits and 3D natural scenes using Boltzmann machines. Vision Res 120:121-31
Lee, Wei-Chung Allen; Bonin, Vincent; Reed, Michael et al. (2016) Anatomy and function of an excitatory network in the visual cortex. Nature 532:370-4
Murty, Vishnu P; Calabro, Finnegan; Luna, Beatriz (2016) The role of experience in adolescent cognitive development: Integration of executive, memory, and mesolimbic systems. Neurosci Biobehav Rev 70:46-58
Jurkowitz, Marianne S; Patel, Aalapi; Wu, Lai-Chu et al. (2015) The YhhN protein of Legionella pneumophila is a Lysoplasmalogenase. Biochim Biophys Acta 1848:742-51

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