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1.
Biochem Biophys Res Commun ; 435(2): 313-8, 2013 May 31.
Article in English | MEDLINE | ID: mdl-23583397

ABSTRACT

The bifunctional hexokinase KlHxk1 is a key component of glucose-dependent signal transduction in Kluyveromyces lactis. KlHxk1 is phosphorylated in vivo and undergoes ATP-dependent autophosphorylation-inactivation in vitro. This study identifies serine-15 as the site of in vivo phosphorylation and serine-157 as the autophosphorylation-inactivation site. X-ray crystallography of the in vivo phosphorylated enzyme indicates the existence of a ring-shaped symmetrical homodimer carrying two phosphoserine-15 residues. In contrast, small-angle X-ray scattering and equilibrium sedimentation analyses reveal the existence of monomeric phosphoserine-15 KlHxk1 in solution. While phosphorylation at serine-15 and concomitant homodimer dissociation are likely to be involved in glucose signalling, mechanism and putative physiological significance of KlHxk1 inactivation by autophosphorylation at serine-157 remain to be established.


Subject(s)
Glucose/chemistry , Glucose/metabolism , Hexokinase/chemistry , Hexokinase/metabolism , Kluyveromyces/enzymology , Enzyme Activation , Enzyme Stability , Hexokinase/ultrastructure , Kluyveromyces/classification , Phosphorylation , Species Specificity
2.
Microsc Res Tech ; 27(3): 233-61, 1994 Feb 15.
Article in English | MEDLINE | ID: mdl-8204913

ABSTRACT

The surface distribution of several proteins (porin, hexokinase, and two proteins associated with microtubules or actin filaments) on the outer membrane of brain mitochondria was analyzed by immunogold labelling of purified mitochondria in vitro. The results suggest the existence of specialized domains for the distribution of porin in the outer mitochondrial membrane. Similarities between the distribution of porin and the distribution of microtubule-associated proteins bound in vitro to mitochondria suggested that mitochondria and microtubules interact by binding microtubule-associated proteins to porin-containing domains of the outer membrane. This hypothesis was supported by biochemical studies on outer mitochondrial proteins involved in in vitro binding of cytoskeleton elements. In vitro interactions between mitochondria and microtubules or neurofilaments were analyzed by electron microscopy. These studies revealed cross-bridging between the outer membrane of mitochondria and the two cytoskeleton elements. Cross-bridging was influenced by ATP hydrolysis and by several proteins associated with the surface of mitochondria or with microtubules. In addition, unidentified proteins which were recognized by antibodies to all intermediate filaments subunits were associated either with the mitochondrial surface or with microtubules. This data suggest the participation of additional cytoplasmic proteins in the interactions between cytoskeleton elements and mitochondria.


Subject(s)
Brain/metabolism , Cytoskeletal Proteins/metabolism , Cytoskeleton/metabolism , Membrane Proteins/metabolism , Mitochondria/metabolism , Animals , Brain/ultrastructure , Cytoskeletal Proteins/ultrastructure , Cytoskeleton/ultrastructure , Hexokinase/metabolism , Hexokinase/ultrastructure , Membrane Proteins/ultrastructure , Microscopy, Immunoelectron , Microtubule-Associated Proteins/metabolism , Microtubule-Associated Proteins/ultrastructure , Mitochondria/ultrastructure , Neurofilament Proteins/metabolism , Neurofilament Proteins/ultrastructure , Porins/metabolism , Porins/ultrastructure , Rats
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