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Sequence Alignment

Articles 1 - 3 of 3

Full-Text Articles in Life Sciences

Identification Of Cytoplasmic Residues Of Sec61p Involved In Ribosome Binding And Cotranslational Translocation, Zhiliang Cheng, Ying Jiang, Elisabet Mandon, Reid Gilmore Feb 2012

Identification Of Cytoplasmic Residues Of Sec61p Involved In Ribosome Binding And Cotranslational Translocation, Zhiliang Cheng, Ying Jiang, Elisabet Mandon, Reid Gilmore

Elisabet Mandon

The cytoplasmic surface of Sec61p is the binding site for the ribosome and has been proposed to interact with the signal recognition particle receptor during targeting of the ribosome nascent chain complex to the translocation channel. Point mutations in cytoplasmic loops six (L6) and eight (L8) of yeast Sec61p cause reductions in growth rates and defects in the translocation of nascent polypeptides that use the cotranslational translocation pathway. Sec61 heterotrimers isolated from the L8 sec61 mutants have a greatly reduced affinity for 80S ribosomes. Cytoplasmic accumulation of protein precursors demonstrates that the initial contact between the large ribosomal subunit and …


Patellin1, A Novel Sec14-Like Protein, Localizes To The Cell Plate And Binds Phosphoinositides, T. Peterman, Yamini Ohol, Lisa Mcreynolds, Elizabeth Luna Mar 2008

Patellin1, A Novel Sec14-Like Protein, Localizes To The Cell Plate And Binds Phosphoinositides, T. Peterman, Yamini Ohol, Lisa Mcreynolds, Elizabeth Luna

Elizabeth J. Luna

Membrane trafficking is central to construction of the cell plate during plant cytokinesis. Consequently, a detailed understanding of the process depends on the characterization of molecules that function in the formation, transport, targeting, and fusion of membrane vesicles to the developing plate, as well as those that participate in its consolidation and maturation into a fully functional partition. Here we report the initial biochemical and functional characterization of patellin1 (PATL1), a novel cell-plate-associated protein that is related in sequence to proteins involved in membrane trafficking in other eukaryotes. Analysis of the Arabidopsis genome indicated that PATL1 is one of a …


Merlin Differs From Moesin In Binding To F-Actin And In Its Intra- And Intermolecular Interactions, L. Huang, E. Ichimaru, Kersi Pestonjamasp, X. Cui, H. Nakamura, G. Lo, F. Lin, Elizabeth Luna, H. Furthmayr Mar 2008

Merlin Differs From Moesin In Binding To F-Actin And In Its Intra- And Intermolecular Interactions, L. Huang, E. Ichimaru, Kersi Pestonjamasp, X. Cui, H. Nakamura, G. Lo, F. Lin, Elizabeth Luna, H. Furthmayr

Elizabeth J. Luna

The neurofibromatosis type 2 (NF2) tumor suppressor gene encodes merlin, a protein with homology to the cell membrane/F-actin linking proteins, moesin, ezrin and radixin. Unlike these closely related proteins, merlin lacks a C-terminal F-actin binding site detectable by actin blot overlays, and the GFP-tagged merlin C-terminal domain co-distributes with neither stress fibers nor cortical actin in NIH3T3 cells. Merlin also differs from the other three proteins in its inter- and intramolecular domain interactions, as shown by in vitro binding and yeast two-hybrid assays. As is true for ezrin, moesin and radixin, the N- and C-terminal domains of merlin type 1 …