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PLASMODIUM BERGHEI: CYCLICAL TRANSMISSIONS BY EXPERIMENTALLY INFECTED ANOPHELES QUADRIMACULATUS.

A number of strains of Plasmodium berghei were isolated from sporozoites of Anopheles dureni. Laboratory-bred Anopheles quadrimaculatus fed on carriers of the newly isolated strains showed overwhelming midgut infections and moderate or mild salivary gland infections. Successive cyclic transmissions by the bite of experimentally infected A. quadrimaculatus in laboratorybred tree rats (Thamnomys surdaster) were carried out.

Animals↗

Expression of hemolytically active human complement component C1r proenzyme in insect cells using a baculovirus vector.

The gene of human C1r has been expressed in a baculovirus-insect-cell system via the pAc373 transplacement vector. The full-length cDNA copy was inserted into the pAc373 vector downstream from the strong polyhedrin promoter of the baculovirus, Autographa californica nuclear polyhedrosis virus (AcNPV). Spodoptera frugiperda cells were cotransfected with the resultant plasmid, pAcC1r, and the wild-type AcNPV DNA. Recombinant viruses, which drove the expression of C1r protein, were selected by plaque morphology and ELISA. Insect cells infected with the recombinant virus produced and secreted human C1r protein, at a level of 1-2 mg/l of medium. The expressed C1r was isolated from the medium by chromatofocusing. On reducing gels only a single Coomassie-staining band was observed, and this band migrated at 80-83 kD characteristic of the unactivated C1r proenzyme. Its identification as C1r was immunologically confirmed on Western blots. C1 reconstituted from purified C1r expressed in insect cells together with human C1q and C1s proved biologically active in a hemolytic assay. Thus, the baculovirus-insect-cell system is capable of expressing and secreting a sophisticated, multifunctional human complement subcomponent in its biologically activatable form.

Animals↗

TWELVE ISOLATIONS OF ZIKA VIRUS FROM AEDES (STEGOMYIA) AFRICANUS (THEOBALD) TAKEN IN AND ABOVE A UGANDA FOREST.

In continuation of a series of studies of arboreal mosquitos as virus vectors in Uganda, 12 strains of Zika virus and one strain of another Group B arbovirus were isolated between November 1961 and June 1963 from pools of Aedes (Stegomyia) africanus caught on a 120-foot (36.5-m) tower in Zika forest. For five strains it is known at what height the mosquitos were caught: one was from mosquitos taken at ground level, and the other four were from mosquitos taken in or above the upper canopy after sunset. No small mammal trapped in the forest either on the ground or in the trees showed serum antibody for Zika virus.These findings suggest that in Zika forest, A. (S.) africanus becomes infected from a virus reservoir that is probably not among the small animals tested and that infected mosquitos are liable to be spread widely beyond the forest by convection currents above the tree-tops in the first two or three hours after sunset.

Aedes↗

Characterization and purification of human fos protein generated in insect cells with a baculoviral expression vector.

We generated recombinant baculoviruses that contained the human fos gene and that, upon infection of insect cells, synthesized fos protein. The quantity of fos protein produced was at least 10 to 20 times higher than that observed in any mammalian cells reported so far. The fos protein made in insect cells manifested most of the characteristics of mammalian fos protein, which include (i) 55-kilodalton size, (ii) nuclear localization, (iii) phosphoesterification at serine residues, (iv) identical 35S tryptic peptide maps, (v) ability to make heterodimers with the nuclear jun oncoprotein, and (vi) cooperation with the jun protein to bind to a 12-O-tetradecanoyl-phorbol-13-acetate-responsive element. A 100- to 150-fold purification of the fos protein from infected insect cells was achieved in a single step by immunoaffinity chromatography. Availability of authentic fos protein made by baculoviral vectors in insect cells should allow a more rigorous analysis of its biochemical and biological properties.

Amino Acids↗

INVESTIGATIONS LEADING TO THE IDENTIFICATION OF MEMBERS OF THE ANOPHELES UMBROSUS GROUP AS THE PROBABLE VECTORS OF MOUSE DEER MALARIA.

Although mosquitos of the Anopheles umbrosus group have long been recognized as important vectors of human malaria in Malaya, there have been doubts about the origin of some of the malaria infections found, especially in A. umbrosus and A. letifer. Investigations have accordingly been carried out in the Malayan swamp-forest, in conjunction with laboratory studies, into the nature of malaria infections in wild-caught mosquitos, the biting behaviour of anophelines and the presence of malaria infection in man and animals. The authors conclude from the results reported in this paper that A. umbrosus is a vector of mouse deer malaria and rarely, if ever, transmits primate malaria; that A. letifer transmits both human and mouse deer malaria; and that A. baezai and A. roperi are probably vectors of mouse deer malaria.

Animals↗