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Biomedical subjects

C Janse

Publications and source records attributed to C Janse.

17 recordsLinked to original sources

Comparison of introns in a cdc2-homologous gene within a number of Plasmodium species.

The first three introns of CRK2, a cdc2-homologous gene, have been compared in a total of seven Plasmodium species. The introns were located at conserved sites, suggesting an ancestral origin. Interspecific comparison of intron sequences agreed with the previously inferred evolutionary relationships of the malaria parasites. Unlike the introns in the rodent malaria species, the similarity of the CRK2 introns was regionalized between the human parasite P. vivax and the simian parasite P. knowlesi: the central region of all three introns showed markedly less interspecific similarity than the 5' and 3' regions. This was also in contrast with the organisation and composition of homologous intron pairs from other genes of the same two species. No conservation at the level of secondary structure could be detected, even between highly similar introns. A database search for intron-containing Plasmodium genes was performed. All introns obtained in this way plus the additional CRK2 introns were scanned for the presence of putative branching site consensus sequences. For P. falciparum, we present an update of the 5' and 3' splice-site consensus.

Amino Acid Sequence

The role of membrane properties, synaptic input and electrical junction in determination of spike output of a pair of peptidergic neurons in the mollusc Lymnaea stagnalis.

The two electrotonically coupled peptidergic neurons, VD1 and RPD2 show in the isolated central nervous system (CNS) a patterned activity. The cells fire in almost perfect synchrony in CNS's derived from animals of moderate age, while in old animals disturbances in synchrony are observed. The firing pattern varies from beating to bursting. Isolated VD1's show a beating firing pattern, indicating that the cell possesses pacemaker properties, while the isolated RPD2 is almost always silent. Hybrid current/voltage clamp experiments show that in the intact CNS spike generation in the two cells is due to VD1, indicating that the pacemaker properties of VD1 constitute the main driving force for the firing rhythm of the two cell system. In low calcium/high magnesium solutions the rhythm is a beating one, while in solutions which do not suppress synaptic input, sometimes a bursting pattern is observed. The idea that the bursting pattern is due to synaptic modulation of these cells is corroborated by the observation that application of certain transmitters induces a very prominent burst of activity in these neurons. These bursts are very reminiscent of the bursts, observed in semi-intact preparations, which are accompanied by penumostome movements. Increase in coupling resistance, which occurs at older age, is accompanied by irregularities in firing rhythm. Apparently the electrotonic junction is essential for the patterned output of the two cell system.

Action Potentials

The role of pacemaker properties and synaptic input in generation and modulation of spiking activity in a pair of electrically coupled peptidergic neurons.

The origin of patterned electrical activity in two electronically coupled peptidergic neurons, VD1 and RPD2, in the CNS of Lymnaea stagnalis was investigated. VD1 proved to have intrinsic beating pacemaker properties. Hybrid current/voltage clamp experiments demonstrated that in the intact CNS generation of spike activity in the coupled cell system is dominated by VD1. Modulation of spiking activity of VD1/RPD2 appears to originate mainly from chemical synaptic input. The electrical coupling of VD1 and RPD2 proved essential for spike synchronization between the cells.

Action Potentials

Age-related changes in junctional and non-junctional conductances in two electrically coupled peptidergic neurons of the mollusc Lymnaea stagnalis.

Age-related changes in electrotonic coupling ratio of two identified neurons in Lymnaea stagnalis were studied together with the underlying changes in the steady-state conductance properties of the network. Two phases were distinguished in the development of coupling ratio across lifespan. During the first phase (age of 3-13 months), coupling ratio decreased from decreased from 60% to 30%. The second phase (age 13-20 months) was characterized by an increase in coupling ratio. Values of up to 60% were reached again in the oldest animals. Voltage clamp measurements showed that the biphasic trend of the age-related changes in coupling ratio is paralleled by changes in conductance properties of the junction between VD1 and RPD2. During the first phase junctional conductance decreased, whereas during the second phase junctional conductance increased. In addition to the decrease in junctional conductance, a growth-related increase in non-junctional conductance of VD1 and RPD2 contributed to the decrease in coupling ratio observed during the first phase. Thus our results indicate that in Lymnaea junctional connections between neurons may undergo considerable and discontinuous changes after sexual maturation. In addition to these changes in steady-state electrical properties, indications were obtained that age-related changes of kinetically slower conductance(s) may occur in the non-junctional membrane of VD1 and RPD2.

Aging

Long insertions within telomeres contribute to chromosome size polymorphism in Plasmodium berghei.

During prolonged in vivo mitotic multiplication of a Plasmodium berghei ANKA clone (8417HP), parasites that contained an enlarged version of chromosome 4 were observed. Restriction mapping and hybridization results demonstrated that the extra DNA present in the enlarged chromosome consists of 2.3-kb tandem repeats, known to be normally located in subtelomeric position at several chromosomal ends but absent in the original chromosome. The inserted 2.3-kb units appeared to interrupt one of the original telomeres and to create an internal (approximately 1-kb-long) telomeric sequence.

Animals

Age-related changes in female reproductive activity and growth in the mollusc Lymnaea stagnalis.

Age-related changes in reproduction and growth of the pulmonate snail Lymnaea stagnalis were studied in animals under standard culture conditions. Longitudinal studies as well as cross-sectional studies were done. Egg-laying activity starts in Lymnaea at an age of about 2 months. Up to an age of about 250 days it increases, and in older snails it decreases with age. Cross-sectional studies showed that the increase in egg-laying activity is due to an increase in the number of animals that lay eggs and to an increase in the egg-laying frequency of individuals. The decrease in egg-laying activity is due to a decrease in the egg-laying frequency of individual animals and to an increase in the number of animals that stop egg laying. Growth (shell length and body weight) ceases at about the same age at which egg laying begins to decrease. The results are discussed in relation to the organization of the neuroendocrine system in Lymnaea and to results of earlier studies on age-related changes in peptidergic neurons in the CNS of Lymnaea.

Aging

Survival characteristics of the mollusc Lymnaea stagnalis under constant culture conditions: effects of aging and disease.

Survival characteristics of seven different populations of the mollusc Lymnaea stagnalis were studied under constant culture conditions. On the basis of these characteristics four populations were considered as healthy and three as infected. In the healthy populations senescence started at an age of about 200 days, 50% survival age varied from 282 to 372 days, 10% survival age from 417 to 508 days and the maximum age from 528 to 673 days. Infected populations differed from healthy ones: (1) in behaviour of the animals; and (2) in shape of survival curve and age-specific death rate. It is concluded that in aging studies in addition to the absolute age of the animals, the following information should be given: the percentage of survival of the population at the time of sampling and a quantitative estimate of the quality of the cultures from which the animals were sampled. The parameters of the Weibull function seem to be suitable for such estimations.

Aging

A quantitative method to evaluate the quality of interrupted animal cultures in aging studies.

A method is described for a quantitative estimation of the quality of interrupted animal cultures. It is applicable when survival can be described by a Weibull or by a Gompertz function. Application to four healthy and three infected cultures of Lymnaea stagnalis shows that survival curves can be successfully predicted from cultures censored at 25%, 50%, and 75% survival. The parameters of these predicted survival curves can be used to evaluate experimental results from single (longitudinal or cross-sectional) aging studies, and to evaluate comparisons among different aging studies.

Aging

The complete development in vitro of the vertebrate phase of the mammalian malarial parasite Plasmodium berghei.

All three 'vertebrate' stages of the rodent malarial parasite Plasmodium berghei berghei were grown in vitro in the absence of the vertebrate host. The parasite was introduced into culture from infected mosquitoes and 2 in vitro culture methods were used sequentially to complete the 'vertebrate' phases of development in hepatoma and erythrocyte host cells. The resultant blood infection produced mature schizonts and male and female gametocytes. The protocol, which is now being extended to the human pathogen P. falciparum, may assist future studies on this important group of parasites.

Animals

Age-related decrease in electrical coupling of two identified neurons in the mollusc Lymnaea stagnalis.

Electrophysiological characteristics of two identified giant electrotonically coupled neurosecretory cells in the central nervous system of the mollusc Lymnaea stagnalis were studied in mature animals of different age. The coupling coefficient of the neurons decreased considerably with age. The possibility that the decrease is due to an increase in the junctional resistance between the cells is discussed.

Aging

The re-formation of connections in the nervous sytem of Lymnaea stagnalis after nerve injury.

Changes in the tentacle reflex pathway of the pond snail Lymnaea stagnalis induced by peripheral nerve injury were studied with behavioural and electrophysiological techniques. After nerve injury regeneration of sensory axons is obtained in 6-12 days, suggesting an axonal outgrowth at a rate of 1 mm per day. Recovery of the tentacle reflex takes much more time indicating that synaptic efficacy is affected considerably by the period of sensory deprivation following nerve injury.

Action Potentials

Molluscan ovulation hormone containing neurons and age-related reproductive decline.

Behavioural and neurophysiological experiments were conducted to examine the state of the neurosecretory caudodorsal cells (CDCs) during female reproductive decline in the freshwater snail Lymnaea stagnalis. Old animals that had ceased egg laying do not respond to an oviposition-inducing stimulus. Female reproductive organs in such animals are still intact, though less sensitive to CDC-hormone. The CDC contents of old nonlaying snails are still effective in producing ovulation in young animals. The electrophysiological properties of the CDCs of old nonlaying snails only differ from those of egg-laying snails in one respect; the duration of the afterdischarge is longer. This difference is not directly related to age but to egg-laying activity of the snails since the afterdischarge in old layers did not differ significantly from that in young layers. It is concluded that the CDCs of old nonlaying animals are in principle still intact. Female reproductive decline and subsequent cessation of female reproduction in Lymnaea may result from impairment of input to the CDCs.

Age Factors