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NAGA (gene)
(12) United States Patent (10) Patent No.: US 8,323,640 B2 Sakuraba Et Al
Supplementary Information Biocementation of Soil by Calcite/Aragonite Precipitation Using Pseudomonas Azotoformans and Citrobact
Base Excision Repair Deficient Mice Lacking the Aag Alkyladenine DNA Glycosylase
Targeted Deletion of Alkylpurine-DNA-N-Glycosylase in Mice Eliminates Repair of 1,N6-Ethenoadenine and Hypoxanthine but Not of 3,N4-Ethenocytosine Or 8-Oxoguanine
Active Hydrogen Bond Network (AHBN) and Applications for Improvement of Thermal Stability and Ph-Sensitivity of Pullulanase from Bacillus Naganoensis
Supplementary Materials
Letters to Nature
Partial Purification of the Mammalian Alpha- Glucosidase Inhibitor from Melothria Sp. (Fam. Cucurbitaceae) Leaves and Stem Extract: in Vitro
Supplementary Information
Centometabolic® More Answers Today
A Concise Review of Human Brain Methylome During Aging and Neurodegenerative Diseases
Human Xc-N-Acetylgalactosaminidase Qx-NAGA)
Supplemental Table S1: Comparison of the Deleted Genes in the Genome-Reduced Strains
Promoter Identification and Analysis of Key Glycosphingolipid Biosynthesis-Globo Series Pathway Genes in Piglets
Genotype, Phenotype and in Silico Pathogenicity Analysis of HEXB Mutations: T Panel Based Sequencing for Differential Diagnosis of Gangliosidosis
Gene Expression Profiling Reveals Adaptive Strategies of the Hibernating Reptile Pogona Vitticeps Alexander Capraro1* , Denis O’Meally2,5, Shafagh A
A Concise Review of Human Brain Methylome During Aging and Neurodegenerative Diseases
Thirty Two Novel Nssnps May Effect on HEXA Protein Leading to Tay- Sachs Disease (TSD) Using a Computational Approach
Top View
Supplementary Figure 1. Dystrophic Mice Show Unbalanced Stem Cell Niche
Table S1. Genes Contributing to the Enrichment Scores of GSEA for Gene-Sets Down-Regulated in Adipose Tissue from Diabetic Compared with Non-Diabetic Co-Twins
Detection of Carbohydrate-Active Enzymes and Genes in a Spent Engine Oil-Perturbed Agricultural Soil Lateef Babatunde Salam
Downloaded from Pharmgkb (Accessed 11/2018 by Webgestalt 334 Tool)) Databases
Ability to Catabolize Sialic Acid Is Present Predominately in Clinical Isolates of Vibrio Vulnificus
Loss of α2-6 Sialylation Promotes the Transformation Of
NAGA Gene Alpha-N-Acetylgalactosaminidase
Degradation of Algal Polysaccharides Reveals a Broad Potential for T 3901 Flavobacterium Formosa Agariphila KMM the Genome of Th
The Role of Mutations on NAGA Gene in Schindler Syndrome
Hydrolytic Enzyme of the Alveolar Macrophage in Diffuse Pulmonary Interstitial Disease
Eighth Southeast Enzyme Conference
Cloning and Characterization of the Naga Gene That Encodes B-N-Acetylglucosaminidase from Aspergillus Nidulans and Its Expression in Aspergillus Oryzae
Differential Polysaccharide Utilization Is the Basis for a 10 Nanohaloarchaeon : Haloarchaeon Symbiosis
A 31-Year-Old Woman with Abdominal Pain
Glycoprotein Lysosomal Storage Disorders: K- and L-Mannosidosis, Fucosidosis and K-N-Acetylgalactosaminidase De¢Ciency
Structural Insights Into the Regulation of Sialic Acid Catabolism By
Evaluation of Variability in High Resolution Protein Structures by Global Distance Scoring
BMC Cell Biology Biomed Central