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D J Luck

Publications and source records attributed to D J Luck.

At least 37 records · Page 2Linked to original sources

Central-pair microtubular complex of Chlamydomonas flagella: polypeptide composition as revealed by analysis of mutants.

Four mutants of Chlamydomonas reinhardtii representing independent gene loci have been shown to lack totally (pf-18, pf-19, and pf-15) or nearly totally (pf-20) the central microtubular pair complex in isolated axonemal preparations. Analysis of 35S-labeled axonemal proteins, using two methods of electrophoresis, reveals that all four mutants lack or are markedly deficient in 18 polypeptides, ranging in molecular weight from 360,000 to 20,000, that are regularly present in wild-type axonemes. Analyses of axonemal proteins labeled by cellular growth on 32P-labeled medium indicates that a subset of 8 of the 18 polypeptides are phosphorylated. Mutant and wild-type axonemes and flagella have been analyzed for their content of tubulin subunits using a high resolution two-dimensional electrophoresis system combined with agarose gel overlays containing either anti-alpha or anti-beta tubulin sera prepared from Chlamydomonas tubulins. The immunoprecipitates identify two major alpha tubulins, a major beta tubulin, and a minor component which is also precipitated by the anti-beta serum. None of these tubulins shows a specific defect in mutant axonemes, nor do the tubulin polypeptides show altered two-dimensional map positions in the mutant flagella. The 18 polypeptides provide a useful signature for identifying other mutants affecting the central-pair microtubular complex. Such mutants could be useful in defining the structural or functional role of these polypeptides in the central microtubules. Efforts to obtain additional central-pair mutants based on the motility phenotype of the four mutants analyzed here have yielded mutants which are allelic to three of the four mutants.

Chlamydomonas↗

An actin-like protein is a component of axonemes from Chlamydomonas flagella.

Several lines of evidence indicate that a component of axonemes from Chlamydomonas flagella is similar to actin from rabbit skeletal muscle. The polypeptide has an apparent molecular weight of 42,000 and in a pH gradient has the electrophoretic behavior of beta-actin. It was co-polymerized with rabbit actin and purified by affinity chromatography on DNase I-Sepharose. Incomplete proteolysis of mixed 35S-labeled axonemal protein and cold rabbit actin formed similar sets of peptides as analyzed by one-dimensional gel electrophoresis. The actin-like protein and the tubulin appear to be present in the axoneme in the molar ratio 1:60.

Actins↗

Microtubular proteins of Chlamydomonas reinhardtii. An immunochemical study based on the use of an antibody specific for the beta-tubulin subunit.

An immunochemical assay for tubulin subunits is described. The method is applied directly to homogenates of Chlamydomonas reinhardtii solubilized in sodium dodecyl sulfate (Na dodecyl-SO4), and it makes use of a two-dimensional electrophoresis system; the first separation is carried out by Na dodecyl-SO4-polyacrylamide gel electrophoresis and the second by electrophoresis into an agarose gel containing antibodies. Tubulin is precipitated in the form of a "rocket" and the method is made quantitative through the use of cells labeled with [35S]sulfate. The antiserum used in this assay was prepared in rabbits using beta subunit of tubulin purified from Chlamydomonas flagella by two preparative Na dodecyl-SO4-polyacrylamide gel electrophoreses. This antiserum and an antiserum to alpha subunit of tubulin from porcine brain, prepared for comparative study, were extensively characterized. Both antisera show specificity for the polypeptide used as antigen and react with the native dimeric tubulin. The antiserum to beta subunit from Chlamydomonas flagella also forms immunoprecipitates with native brain tubulin and its beta subunit when used at high titer. In contrast, the antiserum to alpha subunit from porcine brain does not cross-react with Chlamydomonas tubulin. The immunochemical assay was applied to Chlamydomonas cells synchronized by a 12-h light/dark cycle. In cells collected during the light period (late G1), after removal of flagella, the content of tubulin is estimated to be 0.3% of total protein. As cells enter the dark period there is a striking increase in tubulin content which reaches a maximum just before cell division.

Animals↗

Two-dimensional analysis of flagellar proteins from wild-type and paralyzed mutants of Chlamydomonas reinhardtii.

Flagellar polypeptides of Chlamydomonas reinhardtii were analyzed in two-dimensions by isoelectric focusing and electrophoresis in the presence of sodium dodecyl sulfate. In addition to flagellar tubulin, over 130 polypeptides were resolved and 100 of these were identified as axonemal components in wild-type organisms. Flagella of two nonconditional paralyzed mutants, pf 14 and pf 1, were also analyzed and, at the same time, electron microscopic studies were carried out. pf 14 flagella, which completely lack radial spokes and associated spokeheads, are missing 12 polypeptides. Six of these polypeptides are also missing from pf 1 flagella in which spokes are clearly present but spoke heads appear to be absent.

Cell Movement↗

Temperature-sensitive mutations affecting flagellar assembly and function in Chlamydomonas reinhardtii.

A series of conditional mutants of the algal, biflagellate Chlamydomonas reinhardtii with temperature-sensitive defects in flagellar assembly and function were isolated. The genetics and phenotypes of 21 mutants displaying a rapid alteration in flagellar function upon shift from the permissive (20 degrees C) to the restrictive (32 degrees C) temperatures are described. These mutants designated as "drop-down" or dd-mutants have been placed in four categories on the basis of their defective phenotypes: (a) dd-assembly mutants - the preformed flagella are resorbed at 32 degrees C and reassembly of flagella is inhibited; (b) dd-fragile flagella mutants - the flagella are lost by detachment at 32 degrees C, but can be reassembled; (c) dd-motility mutants - the flagella are retained at 32 degrees C, but are functionally defective; (d) dd-lethal mutants - display combined defects in flagellar function and cell growth. Tetrad analysis of the mutants back-crossed to wild-type, recombination analysis of intermutant crosses, and complementation tests in the construction of heterozygous diploid strains indicate that at least 14 nuclear genetic loci are represented among 21 mutants. The availability of temperature-sensitive mutations affecting the assembly and function of the flagellum suggests that the morphogenesis of this complex eukaryotic organelle is amenable to genetic dissection.

Chlamydomonas↗

Studies on the poky mutant of eurospora crassa. Fingerprint analysis of mitochondrial ribosomal RNA.

Base sequence and methylation of mitochondrial ribosomal RNAs from wild type and poky strains of Neurospora crassa were compared to determine whether a mutational lesion exists in poky 19 S RNA. At the outset, new procedures were developed for the isolation of intact nucleic acids from Neurospora mitochondria based on the substitution of Ca2+ for Mg2+ in the isolation media to inhibit mitochondrial nuclease activity. Using these procedures, intact and highly purified 32P-labeled ribosomal RNAs were extracted from purified mitochondrial ribosomal subunits of wild type and poky and compared using three complementary fingerprinting systems: two-dimensional electrophoresis of T1 plus phosphatase digests and homochromatography of T1 and pancreatic RNase digests. In supplementary experiments, 32P-labeled wild type RNA was co-fingerprinted with 32P-labeled poky and ratios of 32P/33P radioactivity were determined in each fragment to detect possible differences in stoichiometry. In addition, levels and patterns of methylated nucleotides were compared using procedures based on in vivo labeling with [methyl-3H]methionine and [32P]orthophosphate. In all these experiments, no difference was detected between wild type and poky in base sequence or methylation of either 19 S or 25 S RNA. Levels of methylation of Neurospora mitochondrial ribosomal RNAs were extremely low (less than 0.1% of the nucleotides), and results based on fingerprint analysis and DEAE-cellulose chromatography of alkaline hydrolysates of the [3H]methyl-labeled RNA suggested that 25 S RNA contains two ribose methylations, while 19 S RNA contains no methylated nucleotides.

Calcium↗

Phosphorylation of axonemal proteins in Chlamydomonas reinhardtii.

In order to determine whether microtubular proteins of flagellar axonemes were phosphorylated, cells of Chlamydomonas reinhardtii were grown in medium containing [32P]orthophosphate for several generations. Only one (alpha subunit) of the two tubulin polypeptides separated by Na dodecyl-SO4-polyacrylamide gel electrophoresis appeared labeled, as detected by autoradiography of the dried gel. 3H- and 32P-labeled alpha tubulin subunit purified by preparative Na dodecyl-SO4-polyacrylamide gel electrophoresis and Na dodecyl-SO4-hydroxyapatite chromatography contained about 0.2 mol of phosphate per mol of polypeptide. Upon partial acid hydrolysis, radioactivity could be accounted for as serine and threonine phosphate. By altering the conditions of the Na dodecyl-SO4-polyacrylamide gel electrophoresis is was possible to resolve the purified alpha-tubulin subunit into five or more components: a major band comprising approximately 65% of the total mass, not phosphorylated, and four or more minor bands comprising together 35% of the mass. Among the minor components at least two were phosphorylated.

Chlamydomonas↗

The intracellular site of synthesis of mitochndrial ribosomal proteins in Neurospora crassa.

The intracellular site of synthesis of mitochondrial ribosomal proteins (MRP) in Neurospora crassa has been investigated using three complementary approaches. (a) Mitochondrial protein synthesis in vitro: Tritium-labeled proteins made by isolated mitochondria were compared to (14)C-labeled marker MRP by cofractionation in a two-step procedure involving isoelectric focusing and polyacrylamide gel electrophoresis. Examination of the electrophoretic profiles showed that essentially none of the peaks of in vitro product corresponded exactly to any of the MRP marker peaks. (b) Sensitivity of in vivo MRP synthesis to chloramphenicol: Cells were labeled with leucine-(3)H in the presence of chloramphenicol, mitochondrial ribosomal subunits were subsequently isolated, and their proteins fractionated by isoelectric focusing followed by gel electrophoresis. The labeling of every single MRP was found to be insensitive to chloramphenicol, a selective inhibitor of mitochondrial protein synthesis. (c) Sensitivity of in vivo MRP synthesis to anisomycin: We have found this antibiotic to be a good selective inhibitor of cytoplasmic protein synthesis in Neurospora. In the presence of anisomycin the labeling of virtually all MRP is inhibited to the same extent as the labeling of cytoplasmic ribosomal proteins. On the basis of these three types of studies we conclude that most if not all 53 structural proteins of mitochondrial ribosomal subunits in Neurospora are synthesized by cytoplasmic ribosomes.

Carbon Isotopes↗

Defective production of mitochondrial ribosomes in the poky mutant of Neurospora crassa.

A strain of Neurospora crassa containing a cytoplasmic mutation (poky) affecting mitochondrial function is shown to be deficient in small ribosomal subunits in the mitochondrion during the exponential growth phase. In the stationary growth phase, small subunits are more abundant and are present in mitochondrial ribosomal monomers. This change can be correlated with the return of mitochondrial cytochrome content to amounts approaching those of wild type mitochondria. The ribosomal defect shows an extrachromosomal pattern of inheritance in crosses of poky with wild type.

Crosses, Genetic↗

A paracrystalline inclusion in Neurospora crassa. Induction by ethidium and acridine, isolation, and characterization.

A paracrystal indistinguishable from the one which occurs in the mitochondrial mutant abnormal-1 can be induced in wild-type Neurospora crassa after growth in either ethidium or euflavine. This paracrystal has been isolated and partially characterized. It appears to be composed of a single polypeptide (mol wt 68,000) which can be reversibly crystallized and dissociated by changes in the pH and ionic strength. When aggregated, the polypeptide forms oligomers which are arranged end-to-end into fibers. During the characterization of the polypeptide, it was found that the polypeptide's electrophoretic and immunological properties could be used as assays. Using these methods it was found that the polypeptide normally accumulates in a soluble form in the cytoplasm of wild-type Neurospora at the end of the log-phase of growth.

Acridines↗