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At least 199 records · Page 11Linked to original sources

Cellular structure and function in normal and neoplastic lymphoid cells.

In general, the ultrastructure of normal lymphocytes and plasma cells reflects their functional state. Similarly, in pathologic conditions, ultrastructural abnormalities may reflect specific functional derangements of the cells. The identification of some structural abnormalities may be clinically useful, even though their origin and biochemical composition is still obscure.

Bone Neoplasms↗

[Discovery of a new cellular structure--porosome].

A new cell structure--"porosome", discovered by the American scientist Bhanu Jena and co-wokers, is described. Mechanisms of budding and fusion of transport vesicle are elucidated in addition to those of fusion of secretory vesicles at the cell plasma membrane, and of release of intravesicular contents. The morphology of porosomes, their contents and functional reconstruction in lipid bilayer membranes were examined at a near nanometer resolution. Using atomic force microscopy, the presence of circular "pits", measuring 400-1200 nm in diameter with small 100-150 nm wide "depressions" inside and 3-4 deep pores, called porosomes, was demonstrated. A porosome is cup-shaped and 15-30 nm wide. Porosomes are the places where secretory vesicles fuse with the plasma cell membrane, and where the intravesicular content is released.

Animals↗

[Changes in the cellular structure of the salivary glands in Chironomus larvae resulting from mechanical cell damage].

Rapid morphological changes were observed in some cells of hand-isolated salivary glands of Ch. thummi larvae. The nuclear envelope, routinely closely fitting the tightly packaged polytene chromosomes, was seen to lose its contact with the chromosomes and to attain a smooth round shape. Then unfolding of the chromosomes occurred, their banding patterns becoming clearly evident, probably through widening the interband regions; the chromosome length increased by about 20%. We argue that the changes observed were induced during gland isolation by lesions of the cell basal envelope in the sites of the fat body connections to the salivary gland.

Animals↗

The influence of insulin and glucagon on the interactions between glycolytic enzymes and cellular structure.

The influence of insulin and glucagon on the release of glycolytic enzyme activities and actin from cultured pig kidney cells treated with digitonin has been studied. Both insulin and glucagon reduced the release of all glycolytic enzymes except for phosphofructokinase, and concurrently reduced the release of actin. These data have been discussed in relation to their contribution to knowledge of the interactions between glycolytic enzymes and actin filaments of the cytoskeleton, and to the influence of hormones on these interactions.

Actins↗

[Formation and cellular structure of the lines of tension in the axial rudimenta of amphibian embryos].

The lines of mechanical tension (cross-lines) in axial rudiments of the amphibian embryo represent bands of polarized cells. They form in the inner layers of the rudiments as separate bundles of polarized cell which, then, merge, attain the external surface and gather in lengthy planes (cross-planes) and, later, degrade. The primary inductor induces the formation of cross-lines in the ventral ectoderm of the early gastrula. The growth of cross-lines in considered as one of the types of contact cells polarization. The morphogenetic role of contact polarization is discussed. The connection between the subsequent tension patterns is based on the fact that the lines of exit of the cross-planes on the surface of the embryo coincide with the direction of the previously established tensions.

Amphibians↗

The influence of fructose-1:6-bisphosphate on the release of glycolytic enzymes from cellular structure.

In order to provide information on the relative binding characteristics of glycolytic enzymes, the effect of fructose-1,6-bisphosphate (FBP) on the release of glycolytic enzymes from cultured pig kidney cells treated with digitonin has been studied. In the absence of FBP, a differential release of these enzymes was observed, with the order of retention being aldolase greater than glyceraldehyde-3-phosphate dehydrogenase greater than glucosephosphate isomerase, triosephosphate isomerase, phosphoglycerokinase, phosphoglucomutase, lactate dehydrogenase, enolase, pyruvate kinase and phosphofructokinase. In the presence of fructose-1,6-bisphosphate, the release of aldolase was considerably enhanced, whereas the release of phosphofructokinase and pyruvate kinase was decreased by this metabolite. No significant alterations in the rate of release of the other enzymes was caused by FBP. These data have been discussed in relation to their contribution to the knowledge of the degree of association and order of binding between glycolytic enzymes and the cytoplasmic matrix.

Animals↗