Ivan de Curtis
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Explore the profile of Ivan de Curtis including associated specialties, affiliations and a list of published articles.
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53
Citations
972
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Recent Articles
1.
Ramella M, Ribolla L, Surini S, Sala K, Tonoli D, Cioni J, et al.
iScience
. 2024 Mar;
27(4):109440.
PMID: 38510137
Plasma membrane-associated platforms (PMAPs) form at specific sites of plasma membrane by scaffolds including ERC1 and Liprin-α1. We identify a mechanism regulating PMAPs assembly, with consequences on motility/invasion. Silencing Ser/Thr...
2.
Ribolla L, Sala K, Tonoli D, Ramella M, Bracaglia L, Bonomo I, et al.
PLoS One
. 2023 Jul;
18(7):e0287670.
PMID: 37437062
Cell migration requires a complex array of molecular events to promote protrusion at the front of motile cells. The scaffold protein LL5β interacts with the scaffold ERC1, and recruits it...
3.
Ripamonti M, Lamarca A, Davey N, Tonoli D, Surini S, de Curtis I
Commun Biol
. 2022 Sep;
5(1):1025.
PMID: 36171301
Scaffold liprin-α1 is required to assemble dynamic plasma membrane-associated platforms (PMAPs) at the front of migrating breast cancer cells, to promote protrusion and invasion. We show that the N-terminal region...
4.
Ripamonti M, Wehrle-Haller B, de Curtis I
Front Cell Dev Biol
. 2022 Apr;
10:852016.
PMID: 35450290
Focal adhesions are specialized integrin-dependent adhesion complexes, which ensure cell anchoring to the extracellular matrix. Focal adhesions also function as mechano-signaling platforms by perceiving and integrating diverse physical and (bio)chemical...
5.
Pehkonen H, de Curtis I, Monni O
Oncogene
. 2021 Oct;
40(46):6406-6416.
PMID: 34654889
Liprins are a multifunctional family of scaffold proteins, identified by their involvement in several important neuronal functions related to signaling and organization of synaptic structures. More recently, the knowledge on...
6.
Ramella M, Ribolla L, de Curtis I
J Mol Biol
. 2021 Sep;
434(1):167228.
PMID: 34487789
Networks of scaffold proteins and enzymes assemble at the interface between the cytosol and specific sites of the plasma membrane, where these networks guide distinct cellular functions. Some of these...
7.
Pellegatta M, Berti C, Hurley E, Palmisano M, de Curtis I, Feltri M, et al.
Neurosci Lett
. 2021 Apr;
753:135868.
PMID: 33812927
Small Rho GTPases such as Cdc42 and Rac1 regulate peripheral myelination during development. Deletion of Rac1 in Schwann cell conditional knockout mice causes a delay in the process of radial...
8.
Guerrero-Valero M, Grandi F, Cipriani S, Alberizzi V, Di Guardo R, Chicanne G, et al.
Proc Natl Acad Sci U S A
. 2021 Mar;
118(10).
PMID: 33653949
Charcot-Marie-Tooth type 4B1 (CMT4B1) is a severe autosomal recessive demyelinating neuropathy with childhood onset, caused by loss-of-function mutations in the myotubularin-related 2 () gene. MTMR2 is a ubiquitously expressed catalytically...
9.
de Curtis I
Trends Cell Biol
. 2021 Jan;
31(3):145-148.
PMID: 33397597
Liquid-liquid phase separation drives the formation of biomolecular condensates (BCs) for the spatiotemporal organization of several cellular processes. Recent evidences indicate that components of plasma-membrane-associated platforms form biomolecular condensates near...
10.
Sala K, Corbetta A, Minici C, Tonoli D, Murray D, Cammarota E, et al.
Sci Rep
. 2019 Sep;
9(1):13530.
PMID: 31537859
Several cellular processes depend on networks of proteins assembled at specific sites near the plasma membrane. Scaffold proteins assemble these networks by recruiting relevant molecules. The scaffold protein ERC1/ELKS and...