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1.
Mol Biol Cell ; 13(11): 3878-89, 2002 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-12429832

RESUMEN

Recently, we recognized two genes, gbpA and gbpB, encoding putative cGMP-binding proteins with a Zn(2+)-hydrolase domain and two cyclic nucleotide binding domains. The Zn(2+)-hydrolase domains belong to the superfamily of beta-lactamases, also harboring a small family of class II phosphodiesterases from bacteria and lower eukaryotes. Gene inactivation and overexpression studies demonstrate that gbpA encodes the cGMP-stimulated cGMP-phosphodiesterase that was characterized biochemically previously and was shown to be involved in chemotaxis. cAMP neither activates nor is a substrate of GbpA. The gbpB gene is expressed mainly in the multicellular stage and seems to encode a dual specificity phosphodiesterase with preference for cAMP. The enzyme hydrolyses cAMP approximately 9-fold faster than cGMP and is activated by cAMP and cGMP with a K(A) value of approximately 0.7 and 2.3 microM, respectively. Cells with a deletion of the gbpB gene have increased basal and receptor stimulated cAMP levels and are sporogeneous. We propose that GbpA and GbpB hydrolyze the substrate in the Zn(2+)-hydrolase domain, whereas the cyclic nucleotide binding domains mediate activation. The human cGMP-stimulated cAMP/cGMP phosphodiesterase has similar biochemical properties, but a completely different topology: hydrolysis takes place by a class I catalytic domain and GAF domains mediate cGMP activation.


Asunto(s)
3',5'-GMP Cíclico Fosfodiesterasas/metabolismo , Dictyostelium/enzimología , 3',5'-GMP Cíclico Fosfodiesterasas/química , 3',5'-GMP Cíclico Fosfodiesterasas/genética , Secuencia de Aminoácidos , Animales , AMP Cíclico/metabolismo , GMP Cíclico/metabolismo , Dictyostelium/citología , Dictyostelium/genética , Dictyostelium/fisiología , Marcación de Gen , Humanos , Datos de Secuencia Molecular , Fenotipo , Estructura Terciaria de Proteína , Alineación de Secuencia
2.
J Biol Chem ; 277(17): 14717-23, 2002 Apr 26.
Artículo en Inglés | MEDLINE | ID: mdl-11854301

RESUMEN

A cysteine cross-linking approach was used to identify residues at the dimer interface of the Escherichia coli mannitol permease. This transport protein comprises two cytoplasmic domains and one membrane-embedded C domain per monomer, of which the latter provides the dimer contacts. A series of single-cysteine His-tagged C domains present in the native membrane were subjected to Cu(II)-(1,10-phenanthroline)(3)-catalyzed disulfide formation or cysteine cross-linking with dimaleimides of different length. The engineered cysteines were at the borders of the predicted membrane-spanning alpha-helices. Two residues were found to be located in close proximity of each other and capable of forming a disulfide, while four other locations formed cross-links with the longer dimaleimides. Solubilization of the membranes did only influence the cross-linking behavior at one position (Cys(73)). Mannitol binding only effected the cross-linking of a cysteine at the border of the third transmembrane helix (Cys(134)), indicating that substrate binding does not lead to large rearrangements in the helix packing or to dissociation of the dimer. Upon mannitol binding, the Cys(134) becomes more exposed but the residue is no longer capable of forming a stable disulfide in the dimeric IIC domain. In combination with the recently obtained projection structure of the IIC domain in two-dimensional crystals, a first proposal is made for alpha-helix packing in the mannitol permease.


Asunto(s)
Cisteína/metabolismo , Escherichia coli/enzimología , Sistema de Fosfotransferasa de Azúcar del Fosfoenolpiruvato/metabolismo , Secuencia de Aminoácidos , Dimerización , Proteínas de Escherichia coli , Datos de Secuencia Molecular , Proteínas de Transporte de Monosacáridos , Mutagénesis Sitio-Dirigida , Sistema de Fosfotransferasa de Azúcar del Fosfoenolpiruvato/química , Sistema de Fosfotransferasa de Azúcar del Fosfoenolpiruvato/genética
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