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Dive into the research topics where Ausenda S is active.

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Featured researches published by Ausenda S.


British Journal of Haematology | 2007

Expression of the γ‐globin gene is sustained by the cAMP‐dependent pathway in β‐thalassaemia

Lakiea Bailey; Yuichi Kuroyanagi; Carla Fernanda Franco-Penteado; Nicola Conran; Fernando Ferreira Costa; Ausenda S; Maria Domenica Cappellini; Tohru Ikuta

The present study found that the cyclic adenosine monophosphate (cAMP)‐dependent pathway efficiently induced γ‐globin expression in adult erythroblasts, and this pathway plays a role in γ‐globin gene (HBG) expression in β‐thalassaemia. Expression of HBG mRNA increased to about 46% of non‐HBA mRNA in adult erythroblasts treated with forskolin, while a cyclic guanosine monophosphate (cGMP) analogue induced HBG mRNA to levels <20% of non‐HBA mRNA. In patients with β‐thalassaemia intermedia, cAMP levels were elevated in both red blood cells and nucleated erythroblasts but no consistent elevation was found with cGMP levels. The transcription factor cAMP response element binding protein (CREB) was phosphorylated in nucleated erythroblasts and its phosphorylation levels correlated with HBG mRNA levels of the patients. Other signalling molecules, such as mitogen‐activated protein kinases and signal transducers and activators of transcription proteins, were phosphorylated at variable levels and showed no correlations with the HBG mRNA levels. Plasma levels of cytokines, such as erythropoietin, stem cell factor and transforming growth factor‐β were increased in patients, and these cytokines induced both HBG mRNA expression and CREB phosphorylation. These results demonstrate that the cAMP‐dependent pathway, the activity of which is augmented by multiple cytokines, plays a role in regulating HBG expression in β‐thalassaemia.


Proceedings of the National Academy of Sciences of the United States of America | 2001

Mechanism for fetal globin gene expression: Role of the soluble guanylate cyclase–cGMP-dependent protein kinase pathway

Tohru Ikuta; Ausenda S; Maria Domenica Cappellini


Biochemical and Biophysical Research Communications | 2006

cAMP differentially regulates γ-globin gene expression in erythroleukemic cells and primary erythroblasts through c-Myb expression

Yuichi Kuroyanagi; Yuji Kaneko; Kenjiro Muta; Buem Seek Park; Paolo Moi; Ausenda S; Maria Domenica Cappellini; Tohru Ikuta


Blood Cells Molecules and Diseases | 2008

A 10376 bp deletion of FECH gene responsible for erythropoietic protoporphyria

Elena Di Pierro; Valentina Brancaleoni; Valeria Besana; Ausenda S; Stella Drury; Maria Domenica Cappellini


Human Genetics | 2008

Gene Symbol: FECH: Disease: Porphyria, erythropoietic

Brancaleoni; Di Pierro E; Besana; Ausenda S; Cappellini


Human Genetics | 2007

Gene symbol: HMBS.

Besana; Di Pierro E; Brancaleoni; Ausenda S; Cappellini


Human Genetics | 2009

Novel human pathological mutations. Gene symbol: PPOX. Disease: porphyria, variegate.

Ausenda S; Valeria Moriondo; Stefano Marchini; Valeria Besana; E. Di Pierro; Valentina Brancaleoni; Paolo Ventura; Emilio Rocchi; Maria Domenica Cappellini


Human Genetics | 2007

Gene symbol: UROD.

Brancaleoni; Di Pierro E; Ausenda S; Besana; Cappellini


Human Genetics | 2008

Gene symbol: PPOX. Disease: Porphyria, variegate.

Ausenda S; Di Pierro E; Besana; Brancaleoni; Cappellini


Human Genetics | 2007

Novel human pathological mutations. Gene symbol: FECH. Disease: porphyria, erythropoietic.

Brancaleoni; Di Pierro E; Besana; Ausenda S; Drury S; Cappellini

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Besana

University of Milan

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Brancaleoni

Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico

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Cappellini

Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico

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Di Pierro E

Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico

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Tohru Ikuta

Georgia Regents University

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Dario Tavazzi

Fondazione IRCCS Ca' Granda Ospedale Maggiore Policlinico

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