scholarly journals Glutamine 57 at the Complementary Binding Site Face Is a Key Determinant of Morantel Selectivity for α7 Nicotinic Receptors

2009 ◽  
Vol 284 (32) ◽  
pp. 21478-21487 ◽  
Author(s):  
Mariana Bartos ◽  
Kerry L. Price ◽  
Sarah C. R. Lummis ◽  
Cecilia Bouzat
Toxicon ◽  
1996 ◽  
Vol 34 (3) ◽  
pp. 290
Author(s):  
V.A. Chiappinelli ◽  
W.R. Weaver ◽  
B.M. Conti-Fine ◽  
J.J. Fiordalisi ◽  
G.A. Grant

1998 ◽  
Vol 66 (11) ◽  
pp. 5388-5392 ◽  
Author(s):  
Ke Gong ◽  
T. Ouyang ◽  
M. C. Herzberg

ABSTRACT A Streptococcus sanguis 133-79 adhesin identified by the monoclonal antibody 1.1 (MAb 1.1) binds both saliva-coated hydroxylapatite (sHA) and platelets. The complementary binding site(s) for the adhesin was identified by the anti-idiotypical MAb 2.1. To learn if this adhesion system, marked by the antiadhesin MAb 1.1 and anti-binding site MAb 2.1, is commonly used by strains within the sanguis group and other viridans group streptococci, 42 strains from seven species were tested. Strains that bind to both sHA and platelets use the same adhesin and binding site epitopes. Strains that do not adhere to platelets rely on other adhesin specificities to bind to sHA.


2019 ◽  
Author(s):  
Jason Talkish ◽  
Haller Igel ◽  
Oarteze Hunter ◽  
Steven W. Horner ◽  
Nazish N. Jeffrey ◽  
...  

ABSTRACTStable recognition of the intron branchpoint by the U2 snRNP to form the pre-spliceosome is the first ATP-dependent step of splicing. Genetic and biochemical data from yeast indicate that Cus2 aids U2 snRNA folding into the stem IIa conformation prior to pre-spliceosome formation. Cus2 must then be removed by an ATP-dependent function of Prp5 before assembly can progress. However, the location from which Cus2 is displaced and the nature of its binding to the snRNP are unknown. Here, we show that Cus2 contains a conserved UHM (U2AF homology motif) that binds Hsh155, the yeast homolog of human SF3b1, through a conserved ULM (U2AF ligand motif). Mutations in either motif block binding and allow pre-spliceosome formation without ATP. A 2.0 Å resolution structure of the Hsh155 ULM in complex with the UHM of Tat-SF1, the human homolog of Cus2, and complementary binding assays show that the interaction is highly similar between yeast and humans. Furthermore, Tat-SF1 enforces ATP-dependence of pre-spliceosome formation in yeast extracts, showing that it can replace Cus2 function. Cus2 is removed before pre-spliceosome formation, and both Cus2 and its Hsh155 ULM binding site are absent from available cryo-EM structure models. However, our data are consistent with the apparent location of the disordered Hsh155 ULM between the U2 stem-loop IIa and the HEAT-repeats of Hsh155 that interact with Prp5. We suggest a model in which Prp5 uses ATP to remove Cus2 from Hsh155 such that extended base pairing between U2 snRNA and the intron branchpoint can occur.


1992 ◽  
Vol 15 (1-2) ◽  
pp. 113-120 ◽  
Author(s):  
Ralph H. Loring ◽  
Ya-Min Dou ◽  
William Lane ◽  
Gerald S. Jones ◽  
Kenneth J. Stevenson

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