OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Asparagine synthetase: Function, structure, and role in disease
Carrie L. Lomelino, Jacob T. Andring, Robert McKenna, et al.
Journal of Biological Chemistry (2017) Vol. 292, Iss. 49, pp. 19952-19958
Open Access | Times Cited: 255

Showing 1-25 of 255 citing articles:

New aspects of amino acid metabolism in cancer
Lisa Vettore, Rebecca L. Westbrook, Daniel A. Tennant
British Journal of Cancer (2019) Vol. 122, Iss. 2, pp. 150-156
Open Access | Times Cited: 378

Metabolism of Amino Acids in Cancer
Zhen Wei, Xiaoyi Liu, Chunming Cheng, et al.
Frontiers in Cell and Developmental Biology (2021) Vol. 8
Open Access | Times Cited: 304

Amino Acid Depletion Therapies: Starving Cancer Cells to Death
Miriam Butler, Laurens T. van der Meer, Frank N. van Leeuwen
Trends in Endocrinology and Metabolism (2021) Vol. 32, Iss. 6, pp. 367-381
Open Access | Times Cited: 192

Metabolic rewiring in the promotion of cancer metastasis: mechanisms and therapeutic implications
Qinyao Wei, Yun Qian, Jun Yu, et al.
Oncogene (2020) Vol. 39, Iss. 39, pp. 6139-6156
Open Access | Times Cited: 144

Asparagine Synthetase in Cancer: Beyond Acute Lymphoblastic Leukemia
Martina Chiu, Giuseppe Taurino, Massimiliano G. Bianchi, et al.
Frontiers in Oncology (2020) Vol. 9
Open Access | Times Cited: 142

Salt stress resilience in plants mediated through osmolyte accumulation and its crosstalk mechanism with phytohormones
Pooja Singh, Krishna Kumar Choudhary, Nivedita Chaudhary, et al.
Frontiers in Plant Science (2022) Vol. 13
Open Access | Times Cited: 99

Novel Insights on the Use of L-Asparaginase as an Efficient and Safe Anti-Cancer Therapy
Maaike Van Trimpont, Evelien Peeters, Yanti De Visser, et al.
Cancers (2022) Vol. 14, Iss. 4, pp. 902-902
Open Access | Times Cited: 82

Aspartic Acid in Health and Disease
Milan Holeček
Nutrients (2023) Vol. 15, Iss. 18, pp. 4023-4023
Open Access | Times Cited: 61

The Pleiotropic Effects of Glutamine Metabolism in Cancer
Alex J. Bott, Sara Maimouni, Wei‐Xing Zong
Cancers (2019) Vol. 11, Iss. 6, pp. 770-770
Open Access | Times Cited: 100

Amino Acid Transporters as Targets for Cancer Therapy: Why, Where, When, and How
Stefan Bröer
International Journal of Molecular Sciences (2020) Vol. 21, Iss. 17, pp. 6156-6156
Open Access | Times Cited: 88

Dissection of metabolic reprogramming in polycystic kidney disease reveals coordinated rewiring of bioenergetic pathways
Christine Podrini, Isaline Rowe, Roberto Pagliarini, et al.
Communications Biology (2018) Vol. 1, Iss. 1
Open Access | Times Cited: 87

Metabolic reprogramming and the role of mitochondria in polycystic kidney disease
Christine Podrini, Laura Cassina, Alessandra Boletta
Cellular Signalling (2019) Vol. 67, pp. 109495-109495
Open Access | Times Cited: 87

Structural and biochemical properties of L‐asparaginase
J. Łubkowski, Alexander Wlodawer
FEBS Journal (2021) Vol. 288, Iss. 14, pp. 4183-4209
Open Access | Times Cited: 80

Molecular Analysis of L-Asparaginases for Clarification of the Mechanism of Action and Optimization of Pharmacological Functions
M. V. Pokrovskaya, Vadim S. Pokrovsky, С. С. Александрова, et al.
Pharmaceutics (2022) Vol. 14, Iss. 3, pp. 599-599
Open Access | Times Cited: 40

Amino acid metabolism, redox balance and epigenetic regulation in cancer
Xiang Li, Hongsheng Zhang
FEBS Journal (2023) Vol. 291, Iss. 3, pp. 412-429
Open Access | Times Cited: 37

The integrated stress response in cancer progression: a force for plasticity and resistance
Caleb L. Lines, Morgan J. McGrath, Tanis J. Dorwart, et al.
Frontiers in Oncology (2023) Vol. 13
Open Access | Times Cited: 24

A CRISPRi/a screening platform to study cellular nutrient transport in diverse microenvironments
Christopher Chidley, Alicia M. Darnell, Benjamin L. Gaudio, et al.
Nature Cell Biology (2024) Vol. 26, Iss. 5, pp. 825-838
Open Access | Times Cited: 14

Targeting extracellular nutrient dependencies of cancer cells
Javier García‐Bermúdez, Christina Williamson, Rohiverth Guarecuco, et al.
Molecular Metabolism (2019) Vol. 33, pp. 67-82
Open Access | Times Cited: 69

Mechanism of Catalysis by l-Asparaginase
J. Łubkowski, Juan M. Vanegas, Waikin Chan, et al.
Biochemistry (2020) Vol. 59, Iss. 20, pp. 1927-1945
Closed Access | Times Cited: 51

Diazotrophs for Lowering Nitrogen Pollution Crises: Looking Deep Into the Roots
Asma Imran, Sughra Hakim, Mohsin Tariq, et al.
Frontiers in Microbiology (2021) Vol. 12
Open Access | Times Cited: 48

Two parallel pathways connect glutamine metabolism and mTORC1 activity to regulate glutamoptosis
Clément Bodineau, Mercedes Tomé, Sarah Courtois, et al.
Nature Communications (2021) Vol. 12, Iss. 1
Open Access | Times Cited: 47

Host cell glutamine metabolism as a potential antiviral target
Sandro Massao Hirabara, Renata Gorjão, Adriana Cristina Levada‐Pires, et al.
Clinical Science (2021) Vol. 135, Iss. 2, pp. 305-325
Closed Access | Times Cited: 44

Asparagine reinforces mTORC1 signaling to boost thermogenesis and glycolysis in adipose tissues
Yingjiang Xu, Tingyan Shi, Xuan Cui, et al.
The EMBO Journal (2021) Vol. 40, Iss. 24
Open Access | Times Cited: 44

Coordination of asparagine uptake and asparagine synthetase expression modulates CD8+ T cell activation
Helen Carrasco Hope, Rebecca J. Brownlie, Christopher M. Fife, et al.
JCI Insight (2021) Vol. 6, Iss. 9
Open Access | Times Cited: 41

Asparaginase in the Treatment of Acute Lymphoblastic Leukemia in Adults: Current Evidence and Place in Therapy
Krishna R. Juluri, Chloe Siu, Ryan D. Cassaday
Blood and Lymphatic Cancer Targets and Therapy (2022) Vol. Volume 12, pp. 55-79
Open Access | Times Cited: 37

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