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Binding of nicotinamide-adenine dinucleotide to rabbit muscle aldolase.

A direct interaction of rabbit muscle fructose-1,6-bisphosphate aldolase with NAD+, NADH, and NAD-agarose was demonstrated. The electrostatic forces are primary involved in this interaction. Two specific binding sites for the dinucleotide were observed. One of them is located at the active site of the enzyme, the second is in a region of weak binding site for ATP and fructose 1,6-bisphosphate.

Adenosine Triphosphate↗

Phosphate ion inactivation of rabbit skeletal muscle aldolase in the crystalline state.

Catalytically active crystals of rabbit skeletal muscle aldolase are inactivated by phosphate ion and D-glyceraldehyde-3-phosphate. Four moles of phosphate are incorporated per mole of tetrameric enzyme. The inactivation rates are first order in time and demonstrate saturation behaviour. Competition inactivation experiments are consistent with the two substrates competing for the same site on the enzyme. Protection is afforded by substrates binding to the active site on the enzyme. No phosphate inactivation is observed in solution under identical experimental conditions and D-glyceraldehyde-3-phosphate inactivation in solution is unaffected by phosphate ion concentrations. Inactivation by phosphate is apparently due to an unique enzyme conformation stabilized upon protein crystallization.

Animals↗

Cellular localization of aldolase C subunits in human brain.

An antiserum specific for the brain-type aldolase C subunit has been used to investigate the cellular localization of this protein in human brain. Immunoperoxidase labeling at the light microscope level showed heavy staining of Purkinje cells in the cerebellum and of astrocytes in the cerebrum. Faint staining of occasional large neurons in the gray matter of the cerebral cortex was also seen.

Astrocytes↗

Levels of immunoreactive aldolase C, creatine kinase-BB, neuronal and non-neuronal enolase, and 14-3-3 protein in circulating human blood cells.

Five proteins found in the human nervous system have been measured by radioimmunoassay in human red cells, platelets, and lymphocytes. Two neuronal proteins (neurone-specific enolase and 14-3-3 protein) occur in platelets at levels equivalent to their concentration in brain, and in erythrocytes at levels approximately 10% of the level in brain. Two proteins characteristic of astrocytes in the cerebral cortex (creatine kinase BB and aldolase C) occur at low levels in platelets and are virtually undetectable in erythrocytes and lymphocytes. The more widely distributed non-neuronal enolase is present in erythrocytes, platelets and lymphocytes. The neurone-specific enolase and 14-3-3 protein immunoreactivities found in circulating blood cells have been characterised in terms of molecular mass, charge, and dilution characteristics in the respective radioimmunoassay and in each case appears to represent the intact protein. Controlled lysis of erythrocytes releases neurone-specific enolase and 14-3-3 protein in parallel with haemoglobin. The occurrence of brain proteins in circulating blood cells (which appears to be a species-dependent phenomenon) has the practical clinical consequence that minor degrees of especially red cell lysis can produce high serum levels of immunoreactivity. This represents a pitfall in the measurement of these proteins in serum as tumour markers or as indices of damage to the central nervous system.

14-3-3 Proteins↗

The proximal promoter of the aldolase A gene remains active during myogenesis in vitro and muscle development in vivo.

The gene for aldolase A in mouse has been shown to be regulated by alternative promoters with attendant alternative first exons. The distal promoter/exon M functions only in muscle while the proximal promoter/exon H is active in early muscle development and in most other tissues. We have analyzed the developmental expression of M and H promoters in mouse throughout myogenesis both in vitro and in vivo. In C2C12 cells RNase protection assays revealed the M promoter is induced within 24 hr of the onset of myogenic differentiation, and both M- and H-specific mRNAs accumulate over 5 days in culture. Nuclear run-on transcription and in situ hybridization with an exon-specific probe demonstrate that the H promoter remains transcriptionally active even in differentiated myotubes. The in vitro results were then compared to similar RNase protection studies of M and H expression during muscle development in vivo. These data show a marked similarity between promoter activation and steady-state transcript accumulation in vivo and in vitro, but within a limited developmental time frame (E15 to 1 week postnatal). In situ hybridizations suggest that simultaneous transcription from both promoters may also occur early in muscle development. Furthermore, the M promoter shows no fiber-type restriction until 1 to 3 weeks postnatally, coincident with muscle maturation, while the H promoter remains transcriptionally active at all stages of development and in all fiber types.

Animals↗

Modification of some properties of spherical lipid membranes induced by the association with fructose-1,6-bisphosphate aldolase.

The influence of fructose-1,6-bisphosphate aldolase, as a membrane peripheral protein, on some electrical and transport properties of spherical lipid membranes was investigated. It was found that the association of the enzyme with the membrane did not effect markedly the electrical conductance or capacity of the membrane but decreased the water filtration coefficient and the cationic transferance number. The enzyme association also modifies temperature characteristics of the membrane parameters.

Animals↗

In vivo activity of the most proximal promoter of the human aldolase A gene and analysis of transcriptional control elements.

The genomic region upstream from exon F (exon IV) of the human aldolase A gene has been studied for its ability to direct the transcription of a reporter gene in vivo. Transfection experiments in human hepatoma cells (Hep 3B) followed by CAT assay, and S1 mapping analysis, demonstrated that: (i) this region is able to drive CAT gene transcription; (ii) all the transcriptional control elements of this promoter are downstream from nucleotide -384 of the longer ubiquitous RNA start site and the sequences between -384 and -262 play a crucial role in transcriptional efficiency; (iii) initiation starting points for two mRNAs exist 61 bp apart. Gel retardation and footprinting assays demonstrated the presence of DNA-protein complexes mainly in the region between -384 and -262 and such ubiquitous binding factors as Sp1 and AP-1.

Base Sequence↗

Analysis of upstream regulatory regions required for the activities of two promoters of the rat aldolase A gene.

Rat aldolase A gene has 2 promoters with different tissue specificities (M- and AH promoters). The M promoter is active only in adult skeletal muscle and induced during myogenesis, whereas the AH promoter is active ubiquitously in many tissues, including various cancer cells. Regulatory sequences for these promoters were investigated through assays for transient expression after introduction into myogenic and nonmyogenic cells. When M promoter-CAT fusion genes were transfected into primary cultures of chicken myoblasts, expression of CAT activity was drastically induced during myotube formation. The region comprising 202 to 85 base pairs (bp) upstream from the transcription initiation site was found to be necessary for the induction and an enhancer activity whose region includes the AT-rich recognition sequence (MEF-2 binding site). On the other hand, 2 upstream regions were found to be responsible for AH promoter activity expressed in HepG2 cells. The distal region (-280 to -260) of the promoter includes the AP1 binding sequence, whereas the proximal region (-207 to -180) contains a novel inverted repeat consisting of 22 bp but does not contain known promoter and enhancer sequences.

Animals↗

Evidence for an interaction between cytosolic aldolase and the ATP-and pyrophosphate-dependent phosphofructokinases in carrot storage roots.

Immunoaffinity chromatography was employed to identify potential plant cytosolic aldolase (ALDc) binding proteins. A clarified homogenate of carrot storage root was chromatographed on a column of protein-A-Sepharose that had been covalently coupled to anti-(carrot root ALDc) immunoglobulin G. The column was washed with phosphate-buffered saline (PBS), followed by step-wise elution with increasing concentrations of NaCl in PBS. Several proteins were eluted following application of the salt gradient. Western blotting identified the major eluting proteins to be the PPi-dependent phosphofructokinase (PFP) and the cytosolic form of the ATP-dependent phosphofructokinase (PFKc), enzymes that are metabolically sequential to ALDc. The results suggest that ALDc may specifically interact with PFP and PFKc in carrots.

Adenosine Triphosphate↗

Cis-acting elements in the promoter region of the human aldolase C gene.

We investigated the cis-acting sequences involved in the expression of the human aldolase C gene by transient transfections into human neuroblastoma cells (SKNBE). We demonstrate that 420 bp of the 5'-flanking DNA direct at high efficiency the transcription of the CAT reporter gene. A deletion between -420 bp and -164 bp causes a 60% decrease of CAT activity. Gel shift and DNase I footprinting analyses revealed four protected elements: A, B, C and D. Competition analyses indicate that Sp1 or factors sharing a similar sequence specificity bind to elements A and B, but not to elements C and D. Sequence analysis shows a half palindromic ERE motif (GGTCA), in elements B and D. Region D binds a transactivating factor which appears also essential to stabilize the initiation complex.

Base Sequence↗

Insulin rapidly stimulates binding of phosphofructokinase and aldolase to muscle cytoskeleton.

1. We report here on a novel action of insulin which shows that the hormone stimulates binding of phosphofructokinase (PFK) and aldolase to muscle cytoskeleton. 2. This effect was demonstrated both in vivo, by injection of insulin, in the tibialis anterior and gastrocnemius muscles, as well as in vitro, in the isolated rat diaphragm muscle incubated with insulin. 3. Insulin exerted this effect at physiologic range of concentrations and very rapidly (about 50% stimulation of binding occurred within 1 min). 4. The possible physiological significance of this rapid action of insulin, is to provide local ATP, generated by the accelerated cytoskeletal glycolysis, for other rapidly insulin-stimulated membrane-cytoskeleton processes.

Animals↗

Initiating a crystallographic study of a class II fructose-1,6-bisphosphate aldolase.

We have reproducibly crystallized the metal-dependent Class II fructose-1,6-bisphosphate aldolase from Escherichia coli. Crystals in the shape of truncated hexagonal bipyramids have unit cell dimensions of a = b = 78.4 A, c = 290.6 A and are suitable for a detailed structural analysis. The space group has been identified as P6(1)22 or enantiomorph. Data sets to approximately 2.9 A resolution have been recorded using both the Rigaku R-AXIS IIc image plate area detector coupled to a copper target rotating anode X-ray source and using the MAR image plate systems with synchrotron radiation at the EMBL outstation DESY in Hamburg, and at S.R.S. Daresbury. Diffraction beyond 2.5 A has been observed when large freshly grown crystals are used with the synchrotron beam. A data set to this resolution has been collected. Several putative heavy-atom derivative data sets have also been measured using synchrotron radiation facilities and analysis of these data sets is in progress.

Crystallization↗

Selective inhibition of Plasmodium falciparum aldolase by a tubulin derived peptide and identification of the binding site.

Aldolase of the human malaria parasite Plasmodium falciparum (PfAldo) may be a potential target for the development of novel antimalarial drugs. Using in vitro mutagenesis we analyzed the function of the carboxy-terminus of the recombinant enzyme. Deletion of the carboxy-terminus of PfAldo confirmed its critical role in catalysis; exchange of conserved residues minimally affected enzyme activity. We exchanged a pair of parasite specific lysine residues with corresponding amino acids of the host. These mutant enzymes exhibited an increased catalytic activity and reduced binding to erythrocyte band 3 protein. Homologous peptides of human band 3 protein and P. falciparum alpha-tubulin were competitive inhibitors of PfAldo. Selective inhibition of PfAldo by the alpha-tubulin peptide depends on the presence of tandem lysine residues and the fine structure of the inhibitor peptide. Our data support the concept of a matrix organisation of glycolytic enzymes in Plasmodium falciparum.

Amino Acid Sequence↗

Ubiquitous factors that interact simultaneously with two distinct cis-elements on the rat aldolase B gene promoter.

The proximal promoter region (nucleotide -202 to -1) of the rat aldolase B gene confers liver-specific transcription, and contains three indispensable protein-binding sites (site A, site B and site C). Site A binds HNF-1 and HNF-3, and site B binds NF-Y and a CCAAT-binding factor AlF-B (Tsutsumi et al. (1989) Mol. Cell. Biol. 9, 4923-4931; Raymondjean et al. (1991) Nucleic Acids Res. 19, 6145-6153), trans-acting factors that interact with site C, however, have not been well characterized. In this study, we identified specific factors that bind site C by two-dimensional gel electrophoretic analyses. The factors interacted with two distinct cis-elements; site C and site B. This observation, together with the fact that site C contains a C/EBP binding motif, implied that the site C-binding factors are members of C/EBP family. However, analyses of their binding characteristics, their relative molecular masses, and their distribution in different cell types showed that the site C binding factors are different from known members of C/EBP family.

Albumins↗

A data-based reaction mechanism for type I fructose bisphosphate aldolase.

The structures of three type I fructose-1,6-bisphosphate aldolases have been determined and the common residues surrounding the Schiff base-forming Lys residue located. Armed with this information, it is now possible to propose a mechanism for this ubiquitous enzyme which is consistent with the recorded biochemical data. An interesting, but by no means mandatory, feature of the reaction mechanism is that catalysis can proceed without exchange with the solvent.

Animals↗

Effects of chirality and substituents at carbon 3 in dihydroxyacetone-phosphate analogues on their binding to rabbit muscle aldolase.

A series of dihydroxyacetone-phosphate (DHAP) analogues has been synthesized, differing in their stereochemistry and functionality at C-3. The kinetic effects of these compounds on the enzyme aldolase (EC 4.1.2.13) have been studied and differing modes of action observed. Competitive and time dependent reversible inhibition have been shown to take place both with and without borohydride detected formation of an immonium ion.

Animals↗