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Summary. We studied the distribution of the endogenous Arp2/3 complex in Amoeba proteus and visualised the ratio of filamentous (F-actin) to total actin in living cells. The presented results show that in the
highly motile Amoeba proteus, Arp2/3 complex-dependent actin polymerisation is involved in the formation of the branching network of the contractile layer,
adhesive structures, and perinuclear cytoskeleton. The aggregation of the Arp2/3 complex in the cortical network, with the
exception of the uroid and advancing fronts, and the spatial orientation of microfilaments at the leading edge suggest that
actin polymerisation in this area is not sufficient to provide the driving force for membrane displacement. The examined proteins
were enriched in the pinocytotic pseudopodia and the perinuclear cytoskeleton in pinocytotic amoebae. In migrating amoebae,
the course of changes in F-actin concentration corresponded with the distribution of tension in the cell cortex. The maximum
level of F-actin in migrating amoebae was observed in the middle-posterior region and in the front of retracting pseudopodia.
Arp2/3 complex-dependent actin polymerisation did not seem to influence F-actin concentration. The strongly condensed state
of the microfilament system could be attributed to strong isometric contraction of the cortical layer accompanied by its retraction
from distal cell regions. Isotonic contraction was limited to the uroid.
Correspondence and reprints: Department of Molecular and Cellular Neurobiology, Nencki Institute of Experimental Biology,
Polish Academy of Sciences, ulica Pasteura 3, 02-093 Warszawa, Poland. 相似文献
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Background
The analysis of microarray experiments requires accurate and up-to-date functional annotation of the microarray reporters to optimize the interpretation of the biological processes involved. Pathway visualization tools are used to connect gene expression data with existing biological pathways by using specific database identifiers that link reporters with elements in the pathways. 相似文献76.
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In the present work it was observed that the diabetic state alters the hypophyseal response to castration, without the expected increase in the LH serum levels, as found in the control rats. On the other hand, the stimulation of the hypophysis with LHRH resulted in a lower response in the case of the diabetic animal. The results presented herein are in good agreement with the finding of a reduction in the number of androgen binding sites and also with a diminished activity of the 5 alpha-reductase in the hypophysis from diabetic animals. The present results indicate an alteration in the hypophyseal gonadotropin production as well as in the overall process of hypophyseal response in experimental diabetes. 相似文献
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As a result of kinetic studies on acetylcholinesterase inhibition by allosteric effector d-tubocurarine it was shown that interaction between modifier and catalytic sites of rabbit and guinea pig acetylcholinesterase are different for these two species. Judging by the inhibition curves and sensitivity of d-tubocurarine theses differences involve enzyme microenvironment in the membrane. Addition to 7,15-10-6 M d-tubocurarune to solubilized preparation led to a significant fall in the value of Hill coefficient for enzyme-substrate interaction. This may be indicative of the changes in the conformational state of the enzyme after its dissociation from the membrane, i. e. of the membrane structure role in the formation of the structural and functional enzyme properties. 相似文献