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DUSP19
A Computational Approach for Defining a Signature of Β-Cell Golgi Stress in Diabetes Mellitus
Exosome-Mediated MIR211 Modulates Tumor Microenvironment Via the DUSP6-ERK5 Axis and Contributes to BRAFV600E Inhibitor Resistan
9. Atypical Dusps: 19 Phosphatases in Search of a Role
Live-Cell Imaging Rnai Screen Identifies PP2A–B55α and Importin-Β1 As Key Mitotic Exit Regulators in Human Cells
Phosphatases Page 1
Dual Specificity Phosphatases from Molecular Mechanisms to Biological Function
Dynamics of Dual Specificity Phosphatases and Their Interplay with Protein Kinases in Immune Signaling Yashwanth Subbannayya1,2, Sneha M
Autocrine IFN Signaling Inducing Profibrotic Fibroblast Responses By
A Systems Immunology Approach Identifies the Collective Impact of Five Mirs in Th2 Inflammation Supplementary Information
Dusps, to MAP Kinases and Beyond Ching-Yu Huang1* and Tse-Hua Tan1,2
Integrin-Linked Kinase Controls Renal Branching Morphogenesis Via Dual Specificity Phosphatase 8
On the JNK Pathway
Research Article Gene Expression Profiles of Human Phosphotyrosine Phosphatases Consequent to Th1 Polarisation and Effector Function
Flexible Visualization of the Human Phosphatome
A CATH Domain Functional Family Based Approach to Identify
Microrna Mir-183 Functions As an Oncogene by Targeting the Transcription Factor EGR1 and Promoting Tumor Cell Migration
Crystal Structure of an Activity-Enhancing Mutant of DUSP19
Longitudinal Comparative Transcriptomics Reveals Unique Mechanisms Underlying Extended Healthspan in Bats
Top View
Exosome-Mediated MIR211 Modulates Tumor Microenvironment Via the DUSP6-ERK5 Axis and Contributes to BRAFV600E Inhibitor Resistan
Supporting Information
Expression of Protein-Tyrosine Phosphatases in Acute Myeloid
Figure S1 AB DE 1.2 1.2 3.5 1.2 C 3 1 1 Eya1-1 1 Shrna: 2.5 * 0.8 0.8 0.8 * Eya1 2 ** **
Activation of ERK1/2 Causes Pazopanib Resistance Via
Critical Roles of Dual-Specificity Phosphatases in Neuronal
Regulation of Dual-Specificity Phosphatase (DUSP)
Phenotypic and Interaction Profiling of the Human Phosphatases Identifies
Molecular Mechanisms Underlying the Function of the Tyrosine Phosphatase Ptprd in Cancer
A CATH Domain Functional Family Based Approach To
The Comparison Between Molecular Tumour Profiling in Microdissected and Surgical Tissue Samples IZABELA LACZMANSKA 1, MARIA SASIADEK 1 and LUKASZ LACZMANSKI 2
Structural Insights Into the Active Site Formation of DUSP22 in N-Loop-Containing Protein Tyrosine Phosphatases
Structural and Biochemical Analysis of Atypically Low Dephosphorylating Activity of Human Dual-Specificity Phosphatase 28
Copy Number Variations and Cognitive Phenotypes in Unselected Populations