Markus J. Tamás

Markus J. Tamás

Göteborgs universitet

H-index: 36

Europe-Sweden

About Markus J. Tamás

Markus J. Tamás, With an exceptional h-index of 36 and a recent h-index of 21 (since 2020), a distinguished researcher at Göteborgs universitet, specializes in the field of metal toxicity, gene expression, transport, signalling, yeast.

His recent articles reflect a diverse array of research interests and contributions to the field:

Yeast chaperones and ubiquitin ligases contribute to proteostasis during arsenite stress by preventing or clearing protein aggregates

Chemical-genomic profiling identifies genes that protect yeast from aluminium, gallium, and indium toxicity

Mechanisms of genotoxicity and proteotoxicity induced by the metalloids arsenic and antimony

Jens Nielsen Systems and Synthetic Biology, Chalmers University of Technology, Kemivägen 10, SE-412 96 Göteborg, Sweden. Chair of Finance and Science Committee for the …

Professor Stefan Hohmann (08.09. 1956–02.07. 2021)

Etp1 confers arsenite resistance by affecting ACR3 expression

Differential contributions of the proteasome, autophagy, and chaperones to the clearance of arsenite-induced protein aggregates in yeast

Adaptation of the yeast gene knockout collection is near-perfectly predicted by fitness and diminishing return epistasis

Markus J. Tamás Information

University

Position

___

Citations(all)

5036

Citations(since 2020)

1814

Cited By

3923

hIndex(all)

36

hIndex(since 2020)

21

i10Index(all)

51

i10Index(since 2020)

40

Email

University Profile Page

Göteborgs universitet

Google Scholar

View Google Scholar Profile

Markus J. Tamás Skills & Research Interests

metal toxicity

gene expression

transport

signalling

yeast

Top articles of Markus J. Tamás

Title

Journal

Author(s)

Publication Date

Yeast chaperones and ubiquitin ligases contribute to proteostasis during arsenite stress by preventing or clearing protein aggregates

FEBS letters

Joana I Rodrigues

Emma Lorentzon

Sansan Hua

Andrew Boucher

Markus J Tamás

2023/7

Chemical-genomic profiling identifies genes that protect yeast from aluminium, gallium, and indium toxicity

Metallomics

Yves Schulze

Payam Ghiaci

Liqian Zhao

Marc Biver

Jonas Warringer

...

2023/6

Mechanisms of genotoxicity and proteotoxicity induced by the metalloids arsenic and antimony

Robert Wysocki

Joana I Rodrigues

Ireneusz Litwin

Markus J Tamás

2023/11

Jens Nielsen Systems and Synthetic Biology, Chalmers University of Technology, Kemivägen 10, SE-412 96 Göteborg, Sweden. Chair of Finance and Science Committee for the …

FEMS Yeast Research

Markus J Tamás

2022

Professor Stefan Hohmann (08.09. 1956–02.07. 2021)

Jens Nielsen

Markus J Tamás

2022

Etp1 confers arsenite resistance by affecting ACR3 expression

FEMS Yeast Research

Antonia M Romero

Ewa Maciaszczyk-Dziubinska

Mandana Mombeinipour

Emma Lorentzon

Emelie Aspholm

...

2022

Differential contributions of the proteasome, autophagy, and chaperones to the clearance of arsenite-induced protein aggregates in yeast

Journal of Biological Chemistry

Sansan Hua

Agnieszka Kłosowska

Joana I Rodrigues

Gabriel Petelski

Lidia A Esquembre

...

2022/12/1

Adaptation of the yeast gene knockout collection is near-perfectly predicted by fitness and diminishing return epistasis

G3-Genes Genomes Genetics

Jonas Warringer Karl Persson

Simon Stenberg

Markus J Tamás

2022/9

Identification of novel arsenic resistance genes in yeast

MicrobiologyOpen

Esin Isik

Çiğdem Balkan

Vivien Karl

Hüseyin Çağlar Karakaya

Sansan Hua

...

2022/6

Sequence-specific dynamics of DNA response elements and their flanking sites regulate the recognition by AP-1 transcription factors

Nucleic Acids Research

Johanna Hörberg

Kevin Moreau

Markus J Tamás

Anna Reymer

2021/9/20

Nuclear envelope budding is a response to cellular stress

Proceedings of the National Academy of Sciences USA

Dimitra Panagaki

Jacob T Croft

Katharina Keuenhof

Lisa Larsson-Berglund

Stefanie Andersson

...

2021/7/21

Physical, genetic and functional interactions between the eisosome protein Pil1 and the MBOAT O-acyltransferase Gup1

FEMS Yeast Research

Joana Tulha

Mariana Amorim-Rodrigues

Lidia Alejo Esquembre

Sebastien Rauch

Markus J Tamas

...

2021/2

Genome-wide imaging screen uncovers molecular determinants of arsenite-induced protein aggregation and toxicity

Journal of cell science

Stefanie Andersson

Antonia Romero

Joana Isabel Rodrigues

Sansan Hua

Xinxin Hao

...

2021/6/1

In memoriam: Stefan Hohmann

Anders Blomberg

Per Sunnerhagen

Markus J Tamás

2021/11/1

Effects of the toxic metals arsenite and cadmium on α-synuclein aggregation in vitro and in cells

International journal of molecular sciences

Emma Lorentzon

Istvan Horvath

Ranjeet Kumar

Joana Isabel Rodrigues

Markus J Tamás

...

2021/10/24

The ancillary N-terminal region of the yeast AP-1 transcription factor Yap8 contributes to its DNA binding specificity

Nucleic Acids Research

Ewa Maciaszczyk-Dziubinska

Anna Reymer

Nallani Vijay Kumar

Wojciech Białek

Katarzyna Mizio

...

2020/5/1

See List of Professors in Markus J. Tamás University(Göteborgs universitet)