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Biomedical subjects

M W Lu

Publications and source records attributed to M W Lu.

7 recordsLinked to original sources

Involvement of the terminus of grouper betanodavirus capsid protein in virus-like particle assembly.

Dragon grouper, Epinephelus lanceolatus, nervous necrosis virus (DGNNV) consists of 180 copies of capsid protein that encapsulates a bipartite genome of single-stranded (+)RNAs. Expressing the open reading frame (ORF) of RNA2 in Escherichia coli forms virus-like particles (VLPs) that resembles native virus. Deleting N- and C-termini revealed different impacts on VLP formation. Deletion of 35 or 52 residues at the N-terminus completely ruined the VLP assembly, presumably due to removal of positively charged residues for binding RNAs. When deletions were restricted to 4, 16, or 25 N-terminal residues, the assembly of VLPs remained. The ability of VLP formation diminished when 4 to 11 C-terminal residues were deleted. The termini that can be deleted without seriously destructing the VLPs are 25 and 3 residues at N- and C-termini, respectively.

Amino Acid Sequence↗

Characterization of virus-like particles assembled in a recombinant baculovirus system expressing the capsid protein of a fish nodavirus.

Betanodaviruses are causative agents of neurological disorders in several species of fish. We cloned and sequenced the RNA2 segment of two grouper viruses isolated from Epinephelus malabaricus (malabaricus grouper nervous necrosis virus, MGNNV) and Epinephelus lanceolatus (dragon grouper nervous necrosis virus, DGNNV). The sequences of the two RNAs were 99% identical and comparison with previously sequenced RNA2 segments of fish nodaviruses striped jack nervous necrosis virus, Atlantic halibut virus, sea bass encephalitis virus, and greasy grouper nervous necrosis virus (GGNNV) revealed that MGNNV and DGNNV were most closely related to GGNNV. No correlation of sequence with geographical habitat was detected. The MGNNV coat protein, the gene product of RNA2, was expressed in Sf21 cells with a recombinant baculovirus system and virus-like particles (VLPs) spontaneously formed. Two types of VLPs were observed: a slower sedimenting particle was RNase-sensitive and stain-permeable, while the faster sedimenting particle survived RNase treatment and was not stain-permeable. An image reconstruction of the latter, obtained with electron cryomicroscopy data, revealed a morphology consistent with T = 3 quasi-symmetry but with features significantly different from insect nodavirus structures at the same resolution. This assembly system allows the first biophysical comparisons of fish and insect nodavirus structure, assembly, and stability.

Amino Acid Sequence↗

Expression of polyphosphate kinase inhibits the glucose uptake in Escherichia coli.

This paper examines the effects of phosphate pool and expression of polyphosphate kinase on glucose uptake by expressing the polyphosphate kinase under the control of lac promoter. The E. coli transformant of pL1, containing an IPTG controllable element for polyphosphate kinase expression, showed that the total intracellular phosphate significantly increased. However, the rate of glucose uptake by the resting plasmid-bearing cells with IPTG induction significantly decreased. These findings suggest that the polyphosphate can not directly function as an energy source in E. coli or at least not as a good energy supplier.

Biological Transport↗

Reversible inhibition of tomato fruit senescence by antisense RNA.

Ethylene controls fruit ripening. Expression of antisense RNA to the rate-limiting enzyme in the biosynthetic pathway of ethylene, 1-aminocyclopropane-1-carboxylate synthase, inhibits fruit ripening in tomato plants. Administration of exogenous ethylene or propylene reverses the inhibitory effect. This result demonstrates that ethylene is the trigger and not the by-product of ripening and raises the prospect that the life-span of plant tissues can be extended, thereby preventing spoilage.

Ethylenes↗

Critical Care Scoring System--new concept based on hemodynamic data.

Based on the rationale that hemodynamic, oxygen transport, and perfusion derangements describe physiologically important abnormalities in critically ill patients, we devised a Critical Care Scoring System (CCSS). The database includes a retrospective analysis of 318 patients managed with pulmonary artery catheters during 1986 to 1988. For comparison, Acute Physiology and Chronic Health Evaluation (APACHE II) score was computed for these patients. CCSS includes a total of 17 variables with a weighted score of 71. The mortality rates for increases by 5 points were observed and were statistically significant (p less than .0001). The same was not true for APACHE II. Although neither of the scores could predict ICU days, both reflected the number of life-threatening complications. Serial CCSS that was computed at 24 +/- 4 h (CCSS-C) provided documentation for improvement in patient condition secondary to therapeutic interventions. Statistically improved mortality prediction was observed with CCSS-C. Since 70 (45.7%) of 153 patients died with an APACHE II score less than 14, it appears that this score is deficient in a specific group of patients, i.e., those requiring invasive monitoring. For patients with circulatory or respiratory failure, CCSS may offer a better tool to predict mortality and evaluate therapy.

Adult↗

[Effects of dietary K on blood pressure, prostaglandin, and kallikrein in renovascular hypertensive rats].

The effects of dietary K (food and tap water both containing 1% KCl) on blood pressure and renal prostaglandin-kallikrein-kinin system were investigated in Wistar rats made hypertensive by constriction of left renal artery. Dietary K attenuated the development of hypertension and increased urine volume accompanied by increased excretion of K, but by uninfluenced excretion of Na. Dietary K also increased the urinary excretion of kallikrein, PGE2 and aldosterone in Goldblatt hypertensive rats. There was no significant difference in the values of plasma Na between the two groups with and without dietary K. These results suggest that dietary K may attenuate the development of hypertension, increase urine volume via the mechanism of enhancing production of renal PGE2 and kallikrein in hypertensive rats.

Animals↗