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Rafael Zuccarelli

Explore the profile of Rafael Zuccarelli including associated specialties, affiliations and a list of published articles. Areas
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Articles 9
Citations 94
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Recent Articles
1.
Zuccarelli R, Rodriguez-Ruiz M, Silva F, Gomes L, Lopes-Oliveira P, Zsogon A, et al.
J Exp Bot . 2023 May; 74(20):6349-6368. PMID: 37157899
S-Nitrosoglutathione plays a central role in nitric oxide (NO) homeostasis, and S-nitrosoglutathione reductase (GSNOR) regulates the cellular levels of S-nitrosoglutathione across kingdoms. Here, we investigated the role of endogenous NO...
2.
Borges Araujo A, Cerruti G, Zuccarelli R, Rodriguez Ruiz M, Freschi L, Singh R, et al.
Front Plant Sci . 2022 Jul; 13:902068. PMID: 35845673
Cysteine -nitrosation is a redox-based post-translational modification that mediates nitric oxide (NO) regulation of various aspects of plant growth, development and stress responses. Despite its importance, studies exploring protein signaling...
3.
Bianchetti R, Bellora N, de Haro L, Zuccarelli R, Rosado D, Freschi L, et al.
Front Plant Sci . 2022 May; 13:870974. PMID: 35574124
Phytochrome (PHY)-mediated light and temperature perception has been increasingly implicated as important regulator of fruit development, ripening, and nutritional quality. Fruit ripening is also critically regulated by chromatin remodeling DNA...
4.
Zuccarelli R, Rodriguez-Ruiz M, Lopes-Oliveira P, Pascoal G, Andrade S, Furlan C, et al.
J Exp Bot . 2020 Nov; 72(3):941-958. PMID: 33165620
Nitric oxide (NO) has been implicated as part of the ripening regulatory network in fleshy fruits. However, very little is known about the simultaneous action of NO on the network...
5.
Nagai A, Torres P, Duarte L, Chaves A, Macedo A, Floh E, et al.
Plant Sci . 2019 Nov; 290:110274. PMID: 31779908
Plants are exposed to a vast array of pathogens. The interaction between them may be classified in compatible and incompatible. Polyamines (PAs) are involved in defense responses, as well as...
6.
Rosado D, Trench B, Bianchetti R, Zuccarelli R, Alves F, Purgatto E, et al.
Plant Physiol . 2019 Sep; 181(3):1360-1370. PMID: 31519788
Plant development is highly dependent on the ability to perceive and cope with environmental changes. In this context, PIF proteins are key players in the cellular hub controlling responses to...
7.
Mioto P, Rodriguez-Ruiz M, Mot A, Zuccarelli R, Corpas F, Freschi L, et al.
Nitric Oxide . 2017 Mar; 68:7-13. PMID: 28274830
Nitric oxide (NO) is an important signaling molecule occurring in virtually all organisms, whose mechanism of action relies mainly on its interaction with proteins or peptides by nitrosylation, forming compounds...
8.
Zuccarelli R, Coelho A, Peres L, Freschi L
Nitric Oxide . 2017 Jan; 68:77-90. PMID: 28109803
Despite the significant impacts of light on nitric oxide (NO) levels in plants, the mechanism underlying the influence of this environmental factor on NO metabolism remains poorly understood. A critical...
9.
Melo N, Bianchetti R, Lira B, Oliveira P, Zuccarelli R, Dias D, et al.
Plant Physiol . 2016 Feb; 170(4):2278-94. PMID: 26829981
The transition from etiolated to green seedlings involves the conversion of etioplasts into mature chloroplasts via a multifaceted, light-driven process comprising multiple, tightly coordinated signaling networks. Here, we demonstrate that...