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W Godchaux

Publications and source records attributed to W Godchaux.

32 records · Page 2Linked to original sources

Unusual sulfonolipids are characteristic of the Cytophaga-Flexibacter group.

Capnocytophaga spp. contain a group of unusual sulfonolipids, called capnoids (W. Godchaux III and E. R. Leadbetter, J. Bacteriol. 144:592-602, 1980). One of these lipids, capnine, is 2-amino-3-hydroxy-15-methylhexadecane-1-sulfonic acid; the others are, apparently, N-acylated versions of capnine. The lipids were found, in amounts ranging from 2.5 to 16 mumol of capnoid sulfur per g of cells (wet weight), in two Cytophaga spp. and also in several closely related organisms: several Capnocytophaga spp., Sporocytophaga myxococcoides, two Flexibacter spp., and two Flavobacterium spp. With the exception of the flavobacteria, all of these bacteria have been shown to exhibit gliding motility. The two Flavobacterium spp. belong to a subset of that genus that shares many other characteristics with the cytophagas. Only the Capnocytophaga spp. contained large quantities of capnine as such; in all of the others, most (and possibly all) of the capnoids were present as N-acylcapnines. Capnoid-negative bacteria included some gliding organisms that may not be closely related to the cytophagas: two fruiting myxobacters, a gliding cyanobacterium (Plectonema sp.), Beggiatoa alba, Vitreoscilla stercoraria, Herpetosiphon aurantiacus, and Lysobacter enzymogenes. Nongliding bacteria representing nine genera were also tested, and all of these fell into the capnoid-negative group.

Alkanesulfonates↗

Capnocytophaga spp. contain sulfonolipids that are novel in procaryotes.

A group of unusual sulfonolipids was found in bacteria of the genus Capnocytophaga. One of these lipids, to which we have assigned the trivial name capnine, was isolated in 98% pure form and was identified, by infrared absorption spectrometry, high-resolution mass spectrometry, and other methods, as 2-amino-3-hydroxy-15-methylhexadecane-1-sulfonic acid. Another lipid appears to be an N-acylated version of capnine; after acid hydrolysis, its sulfur was recovered in a form chromatographically indistinguishable from that of capnine. The new lipids are related structurally to sphingosine and the ceramides, respectively, but differ markedly from those compounds in important respects, notably the presence of the sulfonate group. Some Capnocytophaga strains accumulated mostly capnine, whereas others accumulated mostly N-acylcapnine. All seven strains examined were found to contain the new lipids, in amounts ranging from 7 to 16 mumol/g of cells (wet weight). The lipids were found in isolated cell envelopes, where they were present in amounts ranging up to 400 mg/g of envelope protein; they are, accordingly, major cell components.

Alkanesulfonates↗

Membrane-dependent guanine nucleotide binding and GTPase activities of soluble protein from bovine rod cell outer segments.

Soluble proteins can be extracted by osmotic shock of purified rod (photoreceptor cell) outer segments that have intact plasma membranes. The soluble proteins include a component that contains tightly bound GDP-Exchange of this GDP with exogenous nucleotide is catalyzed by (and requires) the membranes from the outer segments. ATP does not participate in these reactions. Approximately one-half of the binding sites in the soluble component require GTP as the source of exogenous nucleotide; the remainder accept GTP or GDP with equal facility. When exogenous GTP is the source of bound nucleotide, it is found in the complex in the form of GDP. Exchange of bound nucleotide with GTP is stoichiometrically related to GTPase activity; this activity is highly dependent upon the presence of both membranes and soluble protein. The soluble nucleotide binding protein was purified by making use of the fact that it binds tightly to the membranes (under conditions of moderate ionic strength) in the absence of GTP and can be eluted by solutions containing low concentrations of GTP (but not GDP or ATP, nor can it be eluted by GTP-free solutions of low ionic strength). The purified protein contains two polypeptide chains of molecular weights 41,000 and 37,000; these are the major species that can be extracted from the outer segments by osmotic shock, and they constitute approximately 7% of the total protein of the isolated organelle.

Animals↗

Protein biosynthesis in a cell-free system from bovine retina.

A cell-free extract active in the incorporation of [3H]leucine into protein has been prepared from bovine retina. This system may be useful in identifying early precursors and transported forms of the visual pigment apoprotein. The system completed a minimum of 50% of the preexisting nascent polypeptide chains. 20% of the labelled product accumulated in the soluble fraction of the extract. Gel electrophoresis revealed that this fraction contained six major labelled polypeptide species, each of which correspond to a major unlabelled soluble polypeptide. Some completed polypeptides were retained in the particulate fraction of the extract; several of these were resolved on gel electrophoresis and were of very high specific radioactivity. An antiserum to rod outer segment disc proteins precipitated several labelled species from each fraction. The most interesting of these is a polypeptide of molecular weight 41 000 which was found only in the particulate fraction.

Animals↗

Structure and function of initiation complexes which accumulate during inhibition of protein synthesis by fluoride ion.

Incubation of the reticulocyte lysate cell-free system with KF results in the accumulation in polysomes of complexes containing deacylated tRNAMet and of complexes which can initiate globin chains in the presence of aurintricarboxylate. Degradation of these polysomes with T1RNase yields both 40 S and 80 S particles, and tRNAMet is found in both of these fractions. When the 80 S particles are reincubated with the soluble fraction of the lysate plus reagents for protein synthesis, short peptides which have the properties of the NH2-terminal regions of globin are synthesized de novo. These peptides are deficient in NH2-terminal methionine, but occur under conditions where nascent globin peptides of comparable length, containing NH2-terminal methionine, are completely protected from the methionine aminopeptidase.

Animals↗

Fluoride inhibition of the initiation of protein synthesis in the reticulocyte lysate cell-free system.

KF (30 mM) strongly inhibits polypeptide chain initiation in the reticulocyte lysate cell-free system.. Chain elongation is partially inhibited but proceeds to a significant extent with little initiation of new chains. Polysome breakdown is incomplete after incubations as long as 20 min. Under these conditions deacylated tRNA-Met accumulates in a fraction sedimenting faster than 120 S and thus may be associated with ribosomes bound to mRNA. Incubation of the system with KF results in the accumulation of a complex which can initiate synthesis of polypeptide chains in the presence of aurintricarboxylate; KF thus inhibits a step in initiation after that inhibited by aurintricarboxylate. The accumulation of deacylated tRNA-Met is correlated with the accumulation of the aurintricarboxylate-resistant complex. Both phenomema are dependent on KF and both are inhibited by aurintricarboxylate in the same range of concentrations which inhibit initiation of protein synthesis.

Animals↗