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Abnormalities in the erythrocyte membrane in acute lymphoid leukaemia.

Erythrocytes from patients suffering from acute lymphoid leukaemia (ALL) show decreased proportions of spectrin tetrameters and altered spatial distribution of band 4.1 and ankyrins. These abnormalities of the cytoskeleton are probably responsible for altered membrane fluidity and transbilayer distribution of phosphatidylethanolamine in ALL. ALL is associated with severe anaemia and usually, but not always, with overproduction of lymphocytes. To our knowledge, this is the first report of abnormalities in the erythrocyte membrane in ALL which may, in part, be responsible for the observed anaemia.

Dimethyl Adipimidate↗

ATP-dependent vesiculation in red cell membranes from different hereditary stomatocytosis variants.

The hereditary stomatocytoses are a group of dominant haemolytic anaemias that show two main features: invaginated, 'stomatocytic' morphology; and a membrane leak to the univalent cations Na and K. A patient with the most severe variant of these conditions was reported to show a defect in an in vitro process of ATP-dependent endocytic vesiculation (ADEV), which is found in normal red cells. We have examined this endocytosis process in 11 leaky red cell pedigrees available to us in the UK. ADEV in broken membranes was absent only in the two most severely affected, 'overhydrated' pedigrees studied, both of which showed a deficiency in the membrane raft protein, stomatin. The process was present, although typically diminished by about 10-20% compared with normal red cells, in all others. The cross-linker dimethyl adipimate (DMA), which could correct the cation leak in some of these patients, also corrected the ADEV defect in the same patients. In those patients in whom DMA had no effect on the ion leak, ADEV was not absent. In normal cells, this process of vesiculation was inhibited by inhibitors of membrane 'raft' function, by an antistomatin antibody and by vanadate and N-ethyl maleimide, but not by inhibitors of a number of kinases. These data highlight the heterogeneity of these conditions. A mechanism is discussed by which a defect in raft-based endocytosis could lead to the exaggerated surface exposure of an ion channel, which could then function constitutively, i.e. 'leak'.

Adenosine Triphosphate↗

A genomic approach to the identification and characterization of HOXA13 functional binding elements.

HOX proteins are important transcriptional regulators in mammalian embryonic development and are dysregulated in human cancers. However, there are few known direct HOX target genes and their mechanisms of regulation are incompletely understood. To isolate and characterize gene segments through which HOX proteins regulate transcription we used cesium chloride centrifugation-based chromatin purification and immunoprecipitation (ChIP). From NIH 3T3-derived HOXA13-FLAG expressing cells, 33% of randomly selected, ChIP clones were reproducibly enriched. Hox-enriched fragments (HEFs) were more AT-rich compared with cloned fragments that failed reproducible ChIP. All HEFs augmented transcription of a heterologous promoter upon coexpression with HOXA13. One HEF was from intron 2 of Enpp2, a gene highly upregulated in these cells and has been implicated in cell motility. Using Enpp2 as a candidate direct target, we identified three additional HEFs upstream of the transcription start site. HOXA13 upregulated transcription from an Enpp2 promoter construct containing these sites, and each site was necessary for full HOXA13-induced expression. Lastly, given that HOX proteins have been demonstrated to interact with histone deacetylases and/or CBP, we explored whether histone acetylation changed at Enpp2 upon HOXA13-induced activation. No change in the general histone acetylation state was observed. Our results support models in which occupation of multiple HOX binding sites is associated with highly activated genes.

Acetylation↗

The ToxR protein of Vibrio cholerae forms homodimers and heterodimers.

The ToxR protein of Vibrio cholerae regulates the expression of several virulence factors that play important roles in the pathogenesis of cholera. Previous experiments with ToxR-alkaline phosphatase (ToxR-PhoA) fusion proteins suggested a model for gene regulation in which the inactive form of ToxR was a monomer and the active form of ToxR was a dimer (V. L. Miller, R. K. Taylor, and J. J. Mekalanos, Cell 48:271-279, 1987). In order to examine whether ToxR exists in a dimeric form in vivo, biochemical cross-linking analyses were carried out. Different dimeric cross-linked species were detected depending on the expression level of ToxR: when overexpressed, ToxR+ToxR homodimers and ToxR+ToxS heterodimers were detected, and when ToxR was expressed at normal levels, exclusively ToxR+ToxS heterodimers were detected. The amount of overexpression was quantitated by using ToxR-PhoA fusion proteins and was found to correspond to 2.7-fold the normal level of ToxR. The formation of both homodimeric ToxR species and heterodimeric ToxR+ToxS species is consistent with previously reported genetic data that suggested that both types of ToxR oligomeric interactions occur. However, variation in the amount of either the homodimeric or heterodimeric form detectable by this cross-linking analysis was not observed to correlate with laboratory culture conditions known to modulate ToxR activity. Thus, genetic and biochemical data indicate that ToxR is able to interact with both itself and ToxS but that these interactions may not explain mechanistically the observed changes in ToxR activity that occur in response to environmental conditions.

Alkaline Phosphatase↗

Imidoester inhibition of lymphocyte DNA synthesis.

Imidoesters amidinate free amino groups and produce inter- and intramolecular covalent bonds. To determine whether imidoesters influenced lymphocyte transformation, human peripheral blood or calf lymph node lymphocytes were cultured with dimethyladipimate (DMA), a bifunctional (cross-linking) imidoester, or methyl acetimidate (MAC), a monofunctional (noncross-linking) imidoester. Both DMA and MAC decreased the rate of endogenous DNA synthesis in a dose-dependent fashion. In further work, lymphocytes were treated with Phaseolus vulgaris phytohemagglutinin, concanavalin A, or periodate. DMA (1 mM) decreased DNA synthesis in P. vulgaris phytohemagglutinin-stimulated human cells by 65%, Concanavalin A-stimulated cells by 98.2%, and periodate-stimulated cells by 85%. Similar results were obtained with 1 mM MAC. Inhibition by DMA was slightly greater than was the inhibition by MAC. Decreased DNA synthesis resulted if DMA was added to P. vulgaris phytohemagglutinin-stimulated human lymphocytes at initiation of culture (72%) or after 16 hr (75%); inhibition was less when DMA was added after 24 hr (43%) and was not apparent if added after 48 hr. Therefore, both monofunctional and bifunctional imidoesters inhibit endogenous and stimulated DNA synthesis in human and calf lymphocytes.

Cells, Cultured↗

Preparation of heteroenzyme conjugates: trypsin-chymotrypsin and trypsin-alkaline phosphatase.

Hybrid enzymes which have two different enzyme activities linked together covalently may be useful reagents for various applications, such as the determination of complex biological structures. The present paper describes the preparation and purification of two such enzyme-enzyme conjugates, namely, trypsin-chymotrypsin and trypsin-alkaline phosphatase. Whereas the former has been prepared by using the well-known bifunctional reagent glutaraldehyde, the latter exploited the Schiff base formation between the oxidized carbohydrate moiety of alkaline phosphatase and the free amino groups of trypsin.

Alkaline Phosphatase↗

Coupling aminohexyl-FAD to proteins with dimethyladipimidate.

We used an efficient method having general applicability to couple N6-aminohexyl-flavin adenine dinucleotide (AHFAD) to several proteins for use in an apoenzyme reactivation immunoassay system (ARIS). AHFAD is first activated with 40-fold molar excess of dimethyladipimidate, excess imidate is removed rapidly by gel filtration, the activated product is incubated with the protein, and the conjugate formed is purified. This labeling technique permits incorporation of a controlled amount of amino-label into a protein, and eliminates the possibility of self-crosslinking, which would reduce the immunoreactivity of the conjugate. Here we demonstrate the utility of such a conjugate in a totally automated ARIS assay for thyroxin-binding globulin (TBG). After a competitive protein-binding reaction, apoglucose oxidase is added to combine with free TBG-AHFAD conjugate and produce active glucose oxidase, which is measured colorimetrically in a peroxidase-linked reaction. The assay covers the clinically significant range for TBG from 0 to 60 mg/L and has a throughput of 60 reactions in 75 min. Comparison with an RIA method (x) by regression analysis yielded the equation y = 0.890x + 1.217 (r = 0.975, n = 47, Syx = 1.906 mg/L).

Apoenzymes↗

Comparative evaluation of fifteen anti-sickling agents.

Fifteen compounds reported to be inhibitors of gelation or sickling were studied by standard methods. These tests included (1) the determination of the solubility of deoxyhemoglobin S or Csat, (2) evaluation of sickling in whole SS blood at various pO2s, (3) measurement of the oxygen affinity of hemoglobin and blood, and (4) examination of red cell indices and morphology. Among the 4 noncovalent agents tested, butylurea was the most potent inhibitor of gelation and sickling in vitro; however, relatively high concentrations were required compared to the covalent agents. In the latter group, bis-(3,5 dibromosalicyl)-fumarate, nitrogen mustard, and dimethyladipimidate were especially effective inhibitors of gelation and/or sickling. All of these compounds require further development before they can be considered for clinical use.

Anemia, Sickle Cell↗

Cell envelope and shape of Escherichia coli K12. Crosslinking with dimethyl imidoesters of the whole cell wall.

E. coli cells treated with the bifunctional crosslinking reagents dimethyl malonimidate, succinimidate, adipimidate, suberimidate, and sebacinimidate served for the isolation of rod-shaped "ghosts." These ghosts proved to be crosslinked over their entire surface; i.e., a macromolecule (resistant to boiling 1% Na dodecyl sulfate) the size of the cell had been created. Also, ghosts could similarly be crosslinked. In both cases, the final "sacs" contained about 60-70% protein, and very little or no lipopolysaccharide. When ghosts from which phospholipid had been removed were crosslinked, the covalently closed ghosts were almost pure protein; 80-90% of their dry mass was accounted for by protein. Ammonolysis of the crosslinked material (whether stemming from crosslinked cells or ghosts) showed that the same four proteins (Na dodecyl sulfate gel bands) had been crosslinked that are found in normally prepared ghosts. These observations practically exclude the hypothesis that a fluid mosaic model of membrane structure can be applied to the outer membrane of the E. coli cell envelope; rather, extensive protein-protein interactions must exist over the whole surface of this membrane. These findings are consistent with the possibility that the ghost polypeptide chains are involved in the determination of cellular shape.

Bacterial Proteins↗

The preparation of several new nylon tube-glucose oxidase derivatives and their incorporation into the "reagentless" automated analysis of glucose.

Nylon tube was activated by alkylation with dimethyl sulfate and used for the immobilization of glucose oxidase. Lysine, hexamethylene diamine and polyethylene imine were also attached to activated nylon tube, and these nylon tube-spacer derivatives were reactivated with either glutaraldehyde or ethyl adipimidate for the subsequent coupling of glucose oxidase. The activities of all of the different nylon tube-glucose oxidase derivatives were compared by their incorporation into standard Technicon automated analysis systems. Activities were measured either spectrophotometrically, by following the production of hydrogen peroxide using an acid/KI assay, or polarographically by following the decrease in the oxygen concentration using a flow-through oxygen electrode assembly. The activity and stability of all of the nylon tube-glucose oxidase derivatives was such that their use in the routine estimation of glucose levels was an attractive proposition.

Amines↗