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ATP6V1C1
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Stelios Pavlidis3, Matthew Loza3, Fred Baribaud3, Anthony
A Computational Approach for Defining a Signature of Β-Cell Golgi Stress in Diabetes Mellitus
A Network of Bhlhzip Transcription Factors in Melanoma: Interactions of MITF, TFEB and TFE3
ELMO1 Signaling Is a Promoter of Osteoclast Function and Bone Loss ✉ Sanja Arandjelovic 1 , Justin S
Reprogramming of Lysosomal Gene Expression by Interleukin-4 and Stat6 Brignull Et Al
Lncrna SNHG8 Is Identified As a Key Regulator of Acute Myocardial
Large-Scale Proteomics and Phosphoproteomics of Urinary Exosomes
Autocrine IFN Signaling Inducing Profibrotic Fibroblast Responses By
Supplemental Figures 04 12 2017
Detection of H3k4me3 Identifies Neurohiv Signatures, Genomic
Supplementary Table S1. Relative Change in Proteins Associated with Heme Biosynthesis and Degradation
Supplementary Data
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Identifying Factors That Conctribute to Phenotypic Heterogeneity in Melanoma Progression
Genetic Disruption of WASHC4 Drives Endo-Lysosomal Dysfunction
Affymetrix Probe ID Gene Symbol 1007 S at DDR1 1494 F At
Proteomic Landscape of the Human Choroid–Retinal Pigment Epithelial Complex
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V-Atpases and Osteoclasts: Ambiguous Future of V-Atpases Inhibitors in Osteoporosis Xiaohong Duan1, Shaoqing Yang1, Lei Zhang2, Tielin Yang3
Data Set 1. Biological Analysis of the Genes Found to Be Significant in the Endotoxin Study
Overexpression of LRP12, a Gene Contained Within an 8Q22 Amplicon Identified by High-Resolution Array CGH Analysis of Oral Squamous Cell Carcinomas
You Can Check If Genes Are Captured by the Agilent Sureselect V5 Exome
Investigating the Role of BEST1 Protein in Best Vitelliform Macular
Molecular Bases of Zimmermann-Laband Syndrome
Thalamic Transcriptome Screening in Three Psychiatric States
Large-Scale Proteomics and Phosphoproteomics of Urinary Exosomes
The Role of MITF in Regulating Human Pigmentation
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The Role of Transcription Factor EB in the Coordination of Cellular Endocytosis, Mtorc1 Signaling, and Autophagy by Israel Chukwudi Nnah
Association Analysis of Single-Cell RNA Sequencing and Proteomics Reveals a Vital Role of Ca2+ Signaling in the Determination of Skeletal Muscle Development Potential