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B Kleist

Showing results (11-20 of 21) with videos related to

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Cancer Letters|April 27, 2001
Differential expression of the subunits of the glucose-6-phosphatase system in the clear cell type of human renal cell carcinoma - no evidence for an overexpression of protein kinase BD Schmoll, S Balabanov, D Schwarck, et al.
Methods in Cell Biology|January 9, 2019
Solution NMR spectroscopy of GPCRs: Residue-specific labeling strategies with a focus on <sup>13</sup>C-methyl methionine labeling of the atypical chemokine receptor ACKR3Andrew B Kleist, Francis Peterson, Robert C Tyler, et al.
The American Journal of Surgical Pathology|February 23, 2002
Clear cell chondrosarcoma of the larynx: a case report of a rare histologic variant in an uncommon localizationB Kleist, M Poetsch, C Lang, et al.
Biochemical Pharmacology|April 24, 2016
New paradigms in chemokine receptor signal transduction: Moving beyond the two-site modelAndrew B Kleist, Anthony E Getschman, Joshua J Ziarek, et al.
Science (New York, N.Y.)|January 1, 2021
Evolution of fold switching in a metamorphic proteinAcacia F Dishman, Robert C Tyler, Jamie C Fox, et al.
Journal of Cystic Fibrosis : Official Journal of the European Cystic Fibrosis Society|February 25, 2026
Clinical, functional and therapeutic evaluation of CFTR variant I507delNeeraj Sharma, Katherine Starego, Hongyu Li, et al.
Science (New York, N.Y.)|July 20, 2022
Conformational selection guides β-arrestin recruitment at a biased G protein-coupled receptorAndrew B Kleist, Shawn Jenjak, Andrija Sente, et al.
Cell|April 24, 2025
Encoding and decoding selectivity and promiscuity in the human chemokine-GPCR interaction networkAndrew B Kleist, Martyna Szpakowska, Lindsay J Talbot, et al.
Science Signaling|March 23, 2017
Structural basis for chemokine recognition by a G protein-coupled receptor and implications for receptor activationJoshua J Ziarek, Andrew B Kleist, Nir London, et al.
Nature Genetics|May 5, 2022
CCL22 mutations drive natural killer cell lymphoproliferative disease by deregulating microenvironmental crosstalkConstance Baer, Shunsuke Kimura, Mitra S Rana, et al.
Pageof 3

Showing results (11-20 of 21) with videos related to

Sort By:
Pageof 3
Cancer Letters|April 27, 2001
Differential expression of the subunits of the glucose-6-phosphatase system in the clear cell type of human renal cell carcinoma - no evidence for an overexpression of protein kinase BD Schmoll, S Balabanov, D Schwarck, et al.
Methods in Cell Biology|January 9, 2019
Solution NMR spectroscopy of GPCRs: Residue-specific labeling strategies with a focus on <sup>13</sup>C-methyl methionine labeling of the atypical chemokine receptor ACKR3Andrew B Kleist, Francis Peterson, Robert C Tyler, et al.
The American Journal of Surgical Pathology|February 23, 2002
Clear cell chondrosarcoma of the larynx: a case report of a rare histologic variant in an uncommon localizationB Kleist, M Poetsch, C Lang, et al.
Biochemical Pharmacology|April 24, 2016
New paradigms in chemokine receptor signal transduction: Moving beyond the two-site modelAndrew B Kleist, Anthony E Getschman, Joshua J Ziarek, et al.
Science (New York, N.Y.)|January 1, 2021
Evolution of fold switching in a metamorphic proteinAcacia F Dishman, Robert C Tyler, Jamie C Fox, et al.
Journal of Cystic Fibrosis : Official Journal of the European Cystic Fibrosis Society|February 25, 2026
Clinical, functional and therapeutic evaluation of CFTR variant I507delNeeraj Sharma, Katherine Starego, Hongyu Li, et al.
Science (New York, N.Y.)|July 20, 2022
Conformational selection guides β-arrestin recruitment at a biased G protein-coupled receptorAndrew B Kleist, Shawn Jenjak, Andrija Sente, et al.
Cell|April 24, 2025
Encoding and decoding selectivity and promiscuity in the human chemokine-GPCR interaction networkAndrew B Kleist, Martyna Szpakowska, Lindsay J Talbot, et al.
Science Signaling|March 23, 2017
Structural basis for chemokine recognition by a G protein-coupled receptor and implications for receptor activationJoshua J Ziarek, Andrew B Kleist, Nir London, et al.
Nature Genetics|May 5, 2022
CCL22 mutations drive natural killer cell lymphoproliferative disease by deregulating microenvironmental crosstalkConstance Baer, Shunsuke Kimura, Mitra S Rana, et al.
Pageof 3