8 Publications

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[8]
2020 | Journal Article | IST-REx-ID: 7490   OA
M. Narasimhan et al., “Evolutionarily unique mechanistic framework of clathrin-mediated endocytosis in plants,” eLife, vol. 9, p. e52067, 2020.
View | Files available | DOI
 
[7]
2018 | Journal Article | IST-REx-ID: 163
S. Reipert et al., “Agitation modules: Flexible means to accelerate automated freeze substitution,” Journal of Histochemistry and Cytochemistry, vol. 66, no. 12, pp. 903–921, 2018.
View | DOI | PubMed | Europe PMC
 
[6]
2018 | Journal Article | IST-REx-ID: 308
A. Ratheesh et al., “Drosophila TNF modulates tissue tension in the embryo to facilitate macrophage invasive migration,” Developmental Cell, vol. 45, no. 3, pp. 331–346, 2018.
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[5]
2017 | Journal Article | IST-REx-ID: 693   OA
T. Miki et al., “Numbers of presynaptic Ca2+ channel clusters match those of functionally defined vesicular docking sites in single central synapses,” PNAS, vol. 114, no. 26, pp. E5246–E5255, 2017.
View | Files available | DOI | PubMed | Europe PMC
 
[4]
2017 | Journal Article | IST-REx-ID: 672   OA
K. Vaahtomeri et al., “Locally triggered release of the chemokine CCL21 promotes dendritic cell transmigration across lymphatic endothelia,” Cell Reports, vol. 19, no. 5, pp. 902–909, 2017.
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[3]
2015 | Journal Article | IST-REx-ID: 1515
M. Mansouri et al., “Distinct subsynaptic localization of type 1 metabotropic glutamate receptors at glutamatergic and GABAergic synapses in the rodent cerebellar cortex,” European Journal of Neuroscience, vol. 41, no. 2, pp. 157–167, 2015.
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[2]
2015 | Journal Article | IST-REx-ID: 1562
P. Grones et al., “Auxin-binding pocket of ABP1 is crucial for its gain-of-function cellular and developmental roles,” Journal of Experimental Botany, vol. 66, no. 16, pp. 5055–5065, 2015.
View | DOI
 
[1]
2009 | Journal Article | IST-REx-ID: 2684
W. Kaufmann et al., “Large-conductance calcium-activated potassium channels in Purkinje cell plasma membranes are clustered at sites of hypolemmal microdomains,” Journal of Comparative Neurology, vol. 515, no. 2, pp. 215–230, 2009.
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8 Publications

Mark all

[8]
2020 | Journal Article | IST-REx-ID: 7490   OA
M. Narasimhan et al., “Evolutionarily unique mechanistic framework of clathrin-mediated endocytosis in plants,” eLife, vol. 9, p. e52067, 2020.
View | Files available | DOI
 
[7]
2018 | Journal Article | IST-REx-ID: 163
S. Reipert et al., “Agitation modules: Flexible means to accelerate automated freeze substitution,” Journal of Histochemistry and Cytochemistry, vol. 66, no. 12, pp. 903–921, 2018.
View | DOI | PubMed | Europe PMC
 
[6]
2018 | Journal Article | IST-REx-ID: 308
A. Ratheesh et al., “Drosophila TNF modulates tissue tension in the embryo to facilitate macrophage invasive migration,” Developmental Cell, vol. 45, no. 3, pp. 331–346, 2018.
View | Files available | DOI
 
[5]
2017 | Journal Article | IST-REx-ID: 693   OA
T. Miki et al., “Numbers of presynaptic Ca2+ channel clusters match those of functionally defined vesicular docking sites in single central synapses,” PNAS, vol. 114, no. 26, pp. E5246–E5255, 2017.
View | Files available | DOI | PubMed | Europe PMC
 
[4]
2017 | Journal Article | IST-REx-ID: 672   OA
K. Vaahtomeri et al., “Locally triggered release of the chemokine CCL21 promotes dendritic cell transmigration across lymphatic endothelia,” Cell Reports, vol. 19, no. 5, pp. 902–909, 2017.
View | Files available | DOI
 
[3]
2015 | Journal Article | IST-REx-ID: 1515
M. Mansouri et al., “Distinct subsynaptic localization of type 1 metabotropic glutamate receptors at glutamatergic and GABAergic synapses in the rodent cerebellar cortex,” European Journal of Neuroscience, vol. 41, no. 2, pp. 157–167, 2015.
View | DOI
 
[2]
2015 | Journal Article | IST-REx-ID: 1562
P. Grones et al., “Auxin-binding pocket of ABP1 is crucial for its gain-of-function cellular and developmental roles,” Journal of Experimental Botany, vol. 66, no. 16, pp. 5055–5065, 2015.
View | DOI
 
[1]
2009 | Journal Article | IST-REx-ID: 2684
W. Kaufmann et al., “Large-conductance calcium-activated potassium channels in Purkinje cell plasma membranes are clustered at sites of hypolemmal microdomains,” Journal of Comparative Neurology, vol. 515, no. 2, pp. 215–230, 2009.
View | DOI
 

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