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J Carboni

Publications and source records attributed to J Carboni.

6 recordsLinked to original sources

Partial deduced sequence of the 110-kD-calmodulin complex of the avian intestinal microvillus shows that this mechanoenzyme is a member of the myosin I family.

The actin bundle within each microvillus of the intestinal brush border is laterally tethered to the membrane by bridges composed of the protein complex, 110-kD-calmodulin. Previous studies have shown that avian 110-kD-calmodulin shares many properties with myosins including mechanochemical activity. In the present study, a cDNA molecule encoding 1,000 amino acids of the 110-kD protein has been sequenced, providing direct evidence that this protein is a vertebrate homologue of the tail-less, single-headed myosin I first described in amoeboid cells. The primary structure of the 110-kD protein (or brush border myosin I heavy chain) consists of two domains, an amino-terminal "head" domain and a 35-kD carboxy-terminal "tail" domain. The head domain is homologous to the S1 domain of other known myosins, with highest homology observed between that of Acanthamoeba myosin IB and the S1 domain of the protein encoded by bovine myosin I heavy chain gene (MIHC; Hoshimaru, M., and S. Nakanishi. 1987. J. Biol. Chem. 262:14625-14632). The carboxy-terminal domain shows no significant homology with any other known myosins except that of the bovine MIHC. This demonstrates that the bovine MIHC gene most probably encodes the heavy chain of bovine brush border myosin I (BBMI). A bacterially expressed fusion protein encoded by the brush border 110-kD cDNA binds calmodulin. Proteolytic removal of the carboxy-terminal domain of the fusion protein results in loss of calmodulin binding activity, a result consistent with previous studies on the domain structure of the 110-kD protein. No hydrophobic sequence is present in the molecule indicating that chicken BBMI heavy chain is probably not an integral membrane protein. Northern blot analysis of various chicken tissue indicates that BBMI heavy chain is preferentially expressed in the intestine.

Amino Acid Sequence

Electron microscopic localization of myosin II and ABP-120 in the cortical actin matrix of Dictyostelium amoebae using IgG-gold conjugates.

To narrow the field of possible functions of an actin-binding protein (ABP-120) and myosin II, we have used high resolution immunocytochemistry with IgG-colloidal gold conjugates to identify the types of actin containing structures with which these proteins are associated in the isolated cell cortex. Staining for myosin II and ABP-120 is associated with distinct regions of the actin cytoskeleton in isolated cortices. Myosin II is localized to lateral arrays of filaments, where it is clustered and has a density that is unrelated to distance from the plasma membrane. Staining for myosin II is associated also with unidentified cytoplasmic vesicles. However, staining for ABP-120 is concentrated in dense networks of branched microfilaments that are adjacent to the plasma membrane or in surface projections (residual pseudopods and lamellopods). These results are consistent with a role for ABP-120 in the formation of filament networks in vivo and further suggest that networks of branched microfilaments are unlikely to participate in motility that is mediated by myosin II.

Actins

PGE2: metabolic effects in healthy volunteers.

Some metabolic and haemodynamic responses to intravenous prostaglandin (PG) were studied in five healthy male volunteers, aged 27-40. Subjects, who fasted overnight, rested supine for for 30 min before any measurements were made. Control pulse rate and arterial blood pressure were recorded and 20ml venous blood drawn for analysis. Intravenous infusion of PGE2 5 microgram/min then began and was continued for 15 min; the dose was then increased to 7.5 microgram/min. Measurements were made during the infusion at 15 and 30 min and also 15 min after infusion was stopped. Pulse rate increased but blood pressure was unaffected by the infusion. Glycerol and FFA levels rose, whereas lactate and pyruvate levels fell during the infusion. The rise in glycerol level was significant at 30 min. The changes recorded were slight in clinical terms but the study provides a baseline for the screening of other PG analogues.

Adult

The effects of sodium pentosan polysulphate on peripheral metabolism.

Sodium pentosan polysulphate is a polymer of beta-D-xylopyranose which possesses some of the biological properties of the endogenous acid polysaccharides such as heparin. The actions of this compound on plasma lipids, carbohydrate metabolism and fibrinolysis have been studied using the human forearm technique. Ten healthy volunteers were investigated in the fasting state, and blood flow measurements and blood samples were taken before and at 60 and 90 minutes after 100 mg sodium pentosan polysulphate by intramuscular injection. Following administration of the drug, significant changes occurred in plasma triglyceride, free fatty acid (ffa) and glycerol levels. Triglycerides fell (P less than 0,001) and glycerol and FFA rose (P less than 0,001. Changes were largely owing to activation of intravascular lipolysis, although an effect on stored triglycerides was also noted. Fibrinolytic activity also increased after drug administration, but no changes were noted in insulin exchange or glucose metabolism.

Adult