Michele Solimena
Michele Solimena
Professor of Molecular Diabetology, TU Dresden
Verified email at - Homepage
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Identification of the 64K autoantigen in insulin-dependent diabetes as the GABA-synthesizing enzyme glutamic acid decarboxylase
S Baekkeskov, HJ Aanstoot, S Christgai, A Reetz, M Solimena, ...
Nature 347 (6289), 151-156, 1990
Content-aware image restoration: pushing the limits of fluorescence microscopy
M Weigert, U Schmidt, T Boothe, A Müller, A Dibrov, A Jain, B Wilhelm, ...
Nature methods 15 (12), 1090-1097, 2018
Autoantibodies to GABA-ergic neurons and pancreatic beta cells in stiff-man syndrome
M Solimena, F Folli, R Aparisi, G Pozza, P De Camilli
New England Journal of Medicine 322 (22), 1555-1560, 1990
Autoantibodies to glutamic acid decarboxylase in a patient with stiff-man syndrome, epilepsy, and type I diabetes mellitus
M Solimena, F Folli, S Denis-Donini, GC Comi, G Pozza, P De Camilli, ...
New England Journal of Medicine 318 (16), 1012-1020, 1988
GABA and pancreatic beta‐cells: colocalization of glutamic acid decarboxylase (GAD) and GABA with synaptic‐like microvesicles suggests their role in GABA storage and secretion.
A Reetz, M Solimena, M Matteoli, F Folli, K Takei, P De Camilli
The EMBO journal 10 (5), 1275-1284, 1991
An enzymatic cascade of Rab5 effectors regulates phosphoinositide turnover in the endocytic pathway
HW Shin, M Hayashi, S Christoforidis, S Lacas-Gervais, S Hoepfner, ...
The Journal of cell biology 170 (4), 607-618, 2005
The synaptic vesicle-associated protein amphiphysin is the 128-kD autoantigen of Stiff-Man syndrome with breast cancer.
P De Camilli, A Thomas, R Cofiell, F Folli, B Lichte, G Piccolo, HM Meinck, ...
The Journal of experimental medicine 178 (6), 2219-2223, 1993
Autoantibodies to a 128-kd synaptic protein in three women with the stiff-man syndrome and breast cancer
F Folli, M Solimena, R Cofiell, M Austoni, G Tallini, G Fasseta, D Bates, ...
New England Journal of Medicine 328 (8), 546-551, 1993
βIV spectrin, a new spectrin localized at axon initial segments and nodes of Ranvier in the central and peripheral nervous system
S Berghs, D Aggujaro, R Dirkx Jr, E Maksimova, P Stabach, JM Hermel, ...
The Journal of cell biology 151 (5), 985-1002, 2000
Transplantation of human islets without immunosuppression
B Ludwig, A Reichel, A Steffen, B Zimerman, AV Schally, NL Block, ...
Proceedings of the National Academy of Sciences 110 (47), 19054-19058, 2013
ICA 512, an autoantigen of type I diabetes, is an intrinsic membrane protein of neurosecretory granules.
M Solimena, R Dirkx Jr, JM Hermel, S Pleasic‐Williams, JA Shapiro, ...
The EMBO journal 15 (9), 2102-2114, 1996
Autoimmunity to gephyrin in Stiff-Man syndrome
MH Butler, A Hayashi, N Ohkoshi, C Villmann, CM Becker, G Feng, ...
Neuron 26 (2), 307-312, 2000
Autoimmunity to glutamic acid decarboxylase (GAD) in stiffman syndrome and insulin-dependent diabetes mellitus
M Solimena, P De Camilli
Trends in neurosciences 14 (10), 452-457, 1991
The insulin secretory granule as a signaling hub
J Suckale, M Solimena
Trends in Endocrinology & Metabolism 21 (10), 599-609, 2010
Polypyrimidine tract-binding protein promotes insulin secretory granule biogenesis
KP Knoch, H Bergert, B Borgonovo, HD Saeger, A Altkrüger, P Verkade, ...
Nature cell biology 6 (3), 207-214, 2004
MFR, a putative receptor mediating the fusion of macrophages
C Saginario, H Sterling, C Beckers, R Kobayashi, M Solimena, E Ullu, ...
Molecular and cellular biology 18 (11), 6213-6223, 1998
GAD-reactive CD4+ Th1 cells induce diabetes in NOD/SCID mice.
D Zekzer, FS Wong, O Ayalon, I Millet, M Altieri, S Shintani, M Solimena, ...
The Journal of clinical investigation 101 (1), 68-73, 1998
Identification of a dominant epitope of glutamic acid decarboxylase (GAD-65) recognized by autoantibodies in stiff-man syndrome.
MH Butler, M Solimena, R Dirkx Jr, A Hayday, P De Camilli
The Journal of experimental medicine 178 (6), 2097-2106, 1993
Pancreas islets in metabolic signaling-focus on the β-cell
J Suckale, M Solimena
Nature Precedings, 1-1, 2008
Autoimmunity in stiff-Man syndrome with breast cancer is targeted to the C-terminal region of human amphiphysin, a protein similar to the yeast proteins, Rvs167 and Rvs161
C David, M Solimena, P De Camilli
FEBS letters 351 (1), 73-79, 1994
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