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M Little

Publications and source records attributed to M Little.

At least 163 records · Page 9Linked to original sources

Microtubule-dependent cell cycle regulation is implicated in the G2 phase of Hydra cells.

Interstitial cells of Hydra attenuata, from which nerve cells and nematocytes (stinging cells) differentiate, were arrested in either metaphase or G2 by different concentrations of the microtubule-depolymerizing agent nocodazole. At a concentration of 1.4 nM-nocodazole, a large number of cells were arrested in metaphase. However, at concentrations of 2 nM-nocodazole and above most of the cells were arrested at a distinct point in G2 several hours before mitosis. After removal of the 2 nM-nocodazole block, 75% of the cells entered the next cell cycle about 10 h later. To our knowledge this is the first time that cells have been synchronized by arresting them in the G2 phase. Visualization of Hydra microtubules with a tubulin monoclonal antibody and immunofluorescent staining showed that the very low concentrations of nocodazole used for cell cycle arrest were indeed affecting microtubule structures. Spindles and stem cell microtubules disappeared at 0.8-1 nM-nocodazole, followed by nerve microtubules (about 2 nM), cnidocil microtubules (10 nM) and finally by nematocyte microtubules (34 nM). Taken together, these data strongly indicate a microtubule-dependent mechanism of cell cycle regulation in the G2 phase.

Animals↗

Structural differences between blood-platelet tubulin and other mammalian tubulins.

Carboxymethylated pig blood-platelet tubulin subunits have been characterized by comparing their electrophoretic mobilities and two-dimensional tryptic peptide maps with those of tubulin subunits isolated from four other mammalian tissues. These were pig brain, pig lung, pig sperm and bovine kidney. In addition to the major blood-platelet alpha- and beta-tubulin subunits, minor alpha- and beta-components could be resolved on sodium dodecyl sulphate-polyacrylamide gel electrophoresis. The major blood-platelet beta-tubulin, as well as the minor brain beta 2-tubulin subunit, were clearly tissue specific. In both cases, their two-dimensional peptide maps contained unique heavily labelled peptides. Distinct peptide maps were also observed for the major blood-platelet alpha-tubulin subunit as well as for sperm tail alpha-tubulin, both of which were missing peptides (different in each case) that were present in all of the other alpha-tubulin maps. Under our conditions, a protein with a molecular weight of 70,000 and an isoelectric point of pH 6.4 co-purified with blood-platelet microtubules.

Animals↗

Location of the epitope for the alpha-tubulin monoclonal antibody TU-O1.

A cyanogen bromide peptide of pig brain alpha-tubulin with high reactivity to the monoclonal antibody TU-O1 has been isolated and identified. It corresponds to positions 37-154 of the alpha-tubulin sequence. A tryptic peptide within this region corresponding to positions 65-79 was also immunoreactive. Its relatively low reactivity, however, indicates that one or more important determinants are missing.

Amino Acid Sequence↗

The interaction of cystamine with bovine brain tubulin.

Microtubule assembly in vitro is sensitive to a variety of non-physiological sulfhydryl-oxidizing agents, but the physiological significance of this phenomenon is unknown, since no physiological sulfhydryl-oxidizing agent has been shown to affect microtubule assembly in vitro. We have accordingly investigated the interaction of tubulin with cystamine. We have found that millimolar concentrations of cystamine inhibit microtubule assembly and induce an abnormal form of tubulin polymerization. Cystamine-induced polymerization does not occur at cold temperature. Formation of the polymer requires reaction of cystamine with two sulfhydryls which become available at 37 degrees C. In addition, cystamine reacts with about three sulfhydryls at 0 degrees C without inducing polymerization. This latter set of sulfhydryls appear to include one or both of the previously defined beta s sulfhydryls whose reaction with N, N'-ethylene-bis(iodoacetamide) is markedly inhibited by GTP, maytansine and vinblastine [Roach, M. C. & Luduena, R. F. (1984) J. Biol. Chem. 259, 12063-12071]. Cystamine's specific manner of interacting with tubulin suggests that it may mimic an endogenous sulfhydryl-directed regulator of microtubule assembly.

Animals↗

Isolation and sequencing of alpha-tubulin peptides from myxamoebae of the slime mould Physarum polycephalum.

Starting from only 5.9 mg of alpha-tubulin from myxamoebae of the slime mould Physarum polycephalum, we have isolated and sequenced peptides that account for 96% of the complete sequence. The peptides were generated by digestion of alpha-tubulin with trypsin, Staphylococcus aureus protease and cyanogen bromide. They were then separated according to size on a TSK G2000 SW column using a 10 mM ammonium acetate buffer at pH 6.8. In addition to good peptide separations, a time-consuming desalting step with subsequent loss of material was unnecessary because the relatively small amount of ammonium acetate could be removed by lyophilization. High resolution of peptides from the TSK fractions was achieved on C4 or C18 reverse-phase columns by eluting with a gradient of acetonitrile in 50 mM ammonium acetate (pH 6.8) and in 0.1% trifluoroacetic acid, respectively. The peptides were then sequenced using a gas phase sequencer.

Amino Acid Sequence↗

Location of two cysteines in brain beta 1-tubulin that can be cross-linked after removal of exchangeable GTP.

Two cysteines of the major neuronal beta-tubulin subunit (beta 1) can be specifically cross-linked with the bifunctional sulfhydryl reagent N',N'-ethylenebis(iodoacetamide) after removal of GTP. A cysteine in position 12 cross-links with one of the cysteines in position 201 or 211. Although the two cross-linked cysteines are separated by at least 189 residues in the primary structure of tubulin, they are maximally 9 A apart in the tertiary structure.

Amino Acid Sequence↗

Amino acid sequence data of alpha-tubulin from myxamoebae of Physarum polycephalum.

About 96% of the amino acid sequence of an alpha-tubulin from the slime mould Physarum polycephalum has been determined. Of 430 sequenced amino acids, 30 differ from the deduced amino acid sequence of a recently published alpha-tubulin complementary DNA from the plasmodial form of P. polycephalum. The myxamoebal alpha-tubulin differs from all other known alpha-tubulins in one of the last three C-terminal amino acids that are Gly-Glu-Tyr instead of the usual Glu-Glu-Tyr. These last three amino acids are preceded by 11 residues that appear to be particularly susceptible to mutation. No heterogeneity was found whilst sequencing the myxamoebal alpha-tubulin, indicating that only one type of alpha-tubulin is present in myxamoebae. This alpha-tubulin appears to be less conserved than the previously described plasmodial alpha-tubulin, supporting the hypothesis that the structural constraints on tubulin in axonemes have a significant effect on its rate of mutation.

Amino Acid Sequence↗

Amino-acid sequence data of beta-tubulin from Physarum polycephalum myxamoebae.

Starting with 7.7 mg of a beta-tubulin isolated from myxamoebae of the slime mould Physarum polycephalum, 90% of the sequence has been determined by the Edman degradation of peptides generated by cyanogen bromide, trypsin and Staphylococcus aureus protease. Differences to other beta-tubulins are mainly conservative and spread evenly throughout the chain except for a high concentration at the C-terminus. The Physarum beta-tubulin shows most homology to Chlamydomonas beta-tubulin (90.5%) and least homology to yeast beta-tubulin (S. cerevisiae, 73.4%). Two tryptic peptides were isolated in approximately equal quantities which were identical except in one position (S/ALTVPELTQRMFDA) showing that at least two beta-tubulins are present in myxamoebae. However, since this was the only heterogeneity found, these beta-tubulins are probably very similar.

Amino Acid Sequence↗

Carboxy-terminal regions on the surface of tubulin and microtubules. Epitope locations of YOL1/34, DM1A and DM1B.

Tryptic and cyanogen bromide peptides of pig brain alpha- and beta-tubulin reacting with monoclonal antibodies YOL1/34, DM1A and DM1B have been isolated and identified. They all correspond to parts of the C-terminal regions of either alpha- or beta-tubulin, and those peptides reacting with a given antibody have overlapping sequences. In the case of YOL1/34, its relatively high reactivity with small peptides suggests that many of the determinants for this antibody are within the overlapping region of these peptides comprising only nine amino acids in positions alpha 414 to 422. The smallest common region of peptides reacting with the other alpha-tubulin antibody DM1A corresponds to positions alpha 426 to 450, whereby amino acids within the positions 426 and 430 appear to be particularly important for reactivity. Since the last C-terminal residues of alpha-tubulin are also accessible to antibodies and enzymes, it seems that an extensive part (35 to 40 residues) of this very acidic C-terminal domain is exposed on the surface of native tubulin dimers. In microtubules, however, the amino-terminal end of this region appears to be less accessible, as YOL1/34 reacts poorly, if at all, with intact microtubules. All of the peptides reacting with beta-tubulin monoclonal antibody DM1B were derived from the acidic C-terminal domain and they overlapped in positions beta 416 to 430. This indicates that beta-tubulin is also positioned with at least part of its acidic C-terminal domain on the surface of microtubules, since DM1B reacts with unfixed microtubules after microinjection.

Amino Acid Sequence↗

Family observations of everyday cognitive impairment in dementia.

The observations made by family members of cognitive impairment and decline serve an important role in the description of dementia-related illnesses such as Alzheimer's disease. A common clinical practice is to interview the family and informally gather information about the severity and history of intellectual impairment such as memory disorder and aphasia. The present study introduces a method to formalize this information gathering using an inventory that allows a family member to rate the presence and severity of the everyday manifestations of dementia. Results of initial psychometric studies of the rating scale indicate that a family member can make reliable judgments of everyday cognitive impairment. Observér ratings such as these should significantly enhance diagnostic efforts when they are used in conjunction with neuropsychological tests and in cases in which the demented person cannot participate in a full neuropsychological evaluation.

Journal Article↗

A plasmodial alpha-tubulin cDNA from Physarum polycephalum. Nucleotide sequence and comparative analysis.

As the first step towards correlating structure and function of tubulin in the slime mold Physarum polycephalum we have elucidated the nucleotide sequence of a cDNA that appears to code for all but the last 25 to 30 C-terminal amino acids of a plasmodial alpha-tubulin. Differences in amino acid sequence from those of other alpha-tubulins are distributed fairly evenly throughout the sequence, although a relatively extensive conserved region is found in position 396 to 426 near the C terminus. A small region in position 298 to 307 contains a cluster of amino acid residues unique to Physarum alpha-tubulin. The sequence is 70% homologous to two yeast alpha-tubulins and about 83% homologous to five animal alpha-tubulins. A comparison of the homologies of all the known alpha-tubulins indicates that a large decrease in the accepted point mutation rate has occurred during the evolution of the metazoa, suggesting a major functional specialization of microtubules.

Base Sequence↗

Structural differences between brain beta 1- and beta 2-tubulins: implications for microtubule assembly and colchicine binding.

Brain beta 1- and beta 2-tubulins are the major and minor beta-tubulin components of chordate brain tissue, respectively. Two cysteines of beta 1, but not beta 2, can be specifically cross-linked with the bifunctional sulfhydryl reagent N,N'-ethylenebis(iodoacetamide) (EBI). They are in positions 239 and 354. Although separated by 115 amino acid residues along the beta 1-chain, the two sulfur atoms are maximally 9 A apart in the beta 1 tertiary structure. The failure of beta 2 to form a similar cross-bridge is due to the absence of a cysteine in position 239. At least 10 other sequence differences are also present between beta 1 and beta 2. Positions 239 and 354 of beta 1 probably occupy a key part of the tubulin molecule. The microtubule assembly inhibitors colchicine and podophyllotoxin appear to bind on or near this site and EBI is a potent inhibitor of microtubule assembly. Furthermore, the beta 1-cysteine in position 239 appears to be the most reactive in brain tubulin under the given conditions. The marked difference between beta 1 and beta 2 in this critical region suggests that they may have different functions in brain tissue.

Amino Acid Sequence↗

An evaluation of tubulin as a molecular clock.

The available sequence data for tubulin indicates that it cannot be used as a molecular clock. Apparent alpha-tubulin mutation rates, for example, vary from 0.16 to 3.8 PAMs per 100 million years depending on which two alpha-tubulins are compared. All animal alpha-tubulin mutation rates seem to be quite low, whereas those of non-animals are relatively high. A similar division is not present amongst the beta-tubulins; their apparent mutation rates, however, vary just as much. For any given tubulin, the largest number of amino acid sequence differences are obtained when comparing it to the tubulins of yeasts. Sequence comparisons with the tubulins of unicellular algae and chelates show far fewer differences. Cytochrome c data, however, show that the ciliates diverged from animals well before the yeasts. This means, therefore, that the average tubulin mutation rates in yeasts and ciliates since the time they shared a common ancestor must be quite different. The high mutation rate of yeast tubulins may possibly reflect the absence of cilia. Structural constraints imposed on tubulin by the large number of interactions with other components of the complex ciliary axoneme probably have a significant effect on its rate of mutation.

Amino Acid Sequence↗

Significance of X granules in histiocytosis X: an ultrastructural study.

Histiocytosis X is characterized by the presence of cytoplasmic rod structures called Langerhans' cell granules or X granules (XG). It has been speculated that histiocytosis X is a Langerhans' cell disorder. This ultrastructural study was performed to quantitate the number of XG containing histiocytes in the histiocytosis X lesions. Twenty-four specimens from 22 patients with histiocytosis X were studied: 4 from skin, 5 from lymph node, 11 from bone, 2 from lung, 1 from gingiva, and 1 from cheek. The majority of the histiocytes in histiocytosis X lesions do not contain X granules. The majority of the histiocytes in histiocytosis X lesions do not contain X granules. The percentage of histiocytes with XG in a lesion has no relation to the age of the patient or the organ from which it was obtained, except for skin, where they were quite numerous. The relative percent-age of histiocytes with granules does not correlate significantly with the prognosis of these patients.

Adolescent↗

Quantitative determination, isolation and characterization of pig lung tubulin.

Tubulin from pig lung was quantitatively determined, isolated and characterized. It accounted for about 0.3-0.4% of the total soluble protein of pig lung, as measured by colchicine binding or radioimmunoassay. Purified tubulin was obtained by several cycles of polymerization and depolymerization in the presence of dimethyl sulphoxide and 2H2O as stabilizing agents. The proteolytic cleavage patterns of the lung tubulin subunits closely resembled those of other mammalian cytoplasmic tubulin subunits, such as those of brain and kidney. However, the pattern of lung isotubulins on isoelectric focusing differed substantially from that of brain isotubulins . These differences did not appear to be the result of major lung tubulin post-translational modifications, since approximately the same pattern of isotubulins was found for the tubulin synthesized by lung poly(A)-containing mRNA in a reticulocyte system in vitro.

Animals↗

The tubulins of animals, plants, fungi and protists implications for metazoan evolution.

alpha-Tubulin subunits from trout (S. gairdneri) sperm tails, sea urchin (S. purpuratus) cilia, protistan alga (C. elongatum ) flagella and rose (Paul's Scarlet) cytoplasm have been characterized by limited proteolytic cleavage with the enzyme Staphylococcus aureus protease and electrophoresis of the digestion products on SDS-PAGE. The resulting patterns corresponded to either of two major types representative of animal and non-animal alpha-tubulins, respectively. A total of 28 alpha-tubulins have now been characterized by this method. They are classified in this paper according to the type of cleavage pattern generated by the enzyme S. aureus protease. The implications of these results for metazoan evolution are discussed.

Animals↗

Pig sperm tail tubulin. Its extraction and characterization.

Axonemal tubulin extracted from pig sperm tails has been characterized by one- and two-dimensional electrophoresis and by one-dimensional peptide mapping. The electrophoretic mobilities of its subunits after reduction and carboxymethylation were similar to those of the major subunits of pig brain tubulin. Sperm tail tubulin subunits also had roughly the same isoelectric points as pig brain tubulin subunits, except that they appeared to have a relatively larger tailing effect. The proteolytic cleavage pattern of the pig sperm tail beta-tubulin closely resembled those of both the tunicate (Ciona intestinalis) sperm beta-tubulin and pig brain beta-tubulin. The peptide pattern of pig sperm tail alpha-tubulin, however, was more similar to that of tunicate sperm tail alpha-tubulin than to that of pig brain alpha-tubulin. This supports the hypothesis put forward in a previous investigation [1] that functionally similar tubulins from taxonomically distant species can be more related than functionally dissimilar tubulins from the same species.

Animals↗