Artículo
Functional characterization of Legionella pneumophila Cu+ transport ATPase: The activation by Cu+ and ATP
Placenti, Maria Agueda ; Roman, Ernesto Andres
; Roman, Ernesto Andres ; Gonzalez Flecha, Francisco Luis
; Gonzalez Flecha, Francisco Luis ; Gonzalez-Lebrero, Rodolfo Martin
; Gonzalez-Lebrero, Rodolfo Martin 
 ; Roman, Ernesto Andres
; Roman, Ernesto Andres ; Gonzalez Flecha, Francisco Luis
; Gonzalez Flecha, Francisco Luis ; Gonzalez-Lebrero, Rodolfo Martin
; Gonzalez-Lebrero, Rodolfo Martin 
Fecha de publicación:
11/2021
Editorial:
Elsevier Science
Revista:
Biochimica et Biophysica Acta - Biomembranes
ISSN:
0005-2736
Idioma:
								Inglés
							
Tipo de recurso:
							Artículo publicado
							
Clasificación temática:
Resumen
Cu+-ATPases are integral membrane proteins belonging to the IB subfamily of the P-type ATPases that couple Cu+ transport to the hydrolysis of ATP. As some structural and functional particularities arise  for  Cu+-ATPases,  several  authors suggest  that  some  of  the  reaction  steps  of the Albers-Post model  postulated  for  other  P-ATPases may be different. In  this  work  we  describe  a  functional characterization  of Legionella  pneumophila Cu⁺-ATPase  (LpCopA),  the  first  PIB-ATPase  whose structure was determined by X-ray crystallography. Cu+-ATPase activity  of the  enzyme presents  a maximum at ∼37ºC and pH 6.6-6.8. Phospholipids enhance LpCopA Cu+-ATPase activity in a non-essential  mode  where  optimal  activity  is  achieved  at  an  asolectin molar  fraction  of  0.15  and  an amphiphile-protein  ratio  of  ~30000.  As  described  for  other  P-ATPases,  Mg2+ acts  as  an  essential activator. Furthermore, Cu+-ATPase activity dependence on [Cu+] and [ATP] can both be described by a sum of two hyperbolic functions. Based on that, and the [Cu+] and [ATP] dependencies of the best fitting parameters of the hyperbolae pointed above, we propose a minimal reaction scheme for the  catalytic  mechanism  that  shares  the  basic  reaction  steps  of  the  Albers-Post  model  for  P-type ATPases. The reaction scheme postulated contemplates two different binding affinities for a single ATP  (apparent  affinities  of  0.66  and  550  μM  at  [Cu+]→∞) and, binding of  at  least,  2  Cu+ with different affinities as well (apparent affinities of 1.4 and 102.5 μM at [ATP]→∞).
Palabras clave:
ATPASE
                            ,
	                    
COPPER TRANSPORT
                            ,
	                    
ENZYME CATALYSIS
                            ,
	                    
ENZYME KINETICS
                            ,
	                    
ENZYME MECHANISM
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Articulos(IQUIFIB)
Articulos de INST.DE QUIMICA Y FISICO-QUIMICA BIOLOGICAS "PROF. ALEJANDRO C. PALADINI"
Articulos de INST.DE QUIMICA Y FISICO-QUIMICA BIOLOGICAS "PROF. ALEJANDRO C. PALADINI"
	                Citación
	                
Placenti, Maria Agueda; Roman, Ernesto Andres; Gonzalez Flecha, Francisco Luis; Gonzalez-Lebrero, Rodolfo Martin; Functional characterization of Legionella pneumophila Cu+ transport ATPase: The activation by Cu+ and ATP; Elsevier Science; Biochimica et Biophysica Acta - Biomembranes; 1864; 2; 11-2021; 1-29
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