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Publications by Mark S P Sansom
A Mutation (R826W) in Nucleotide-Binding Domain 1 of ABCC8 Reduces ATPase Activity and Causes Transient Neonatal Diabetes
EMBO Reports
Biochemistry
Genetics
Molecular Biology
Functional Characterization of a Mutated Chickenα7nicotinic Acetylcholine Receptor Subunit With a Leucine Residue Inserted in Transmembrane Domain 2
British Journal of Pharmacology
Pharmacology
Related publications
Nucleotide-Binding Oligomerization Domain 1 and Gastrointestinal Disorders
Proceedings of the Japan Academy Series B: Physical and Biological Sciences
Multidisciplinary
Biological Sciences
Medicine
Agricultural
Astronomy
Physics
A Mutation in the TMD0-L0 Region of Sulfonylurea Receptor-1 (L225P) Causes Permanent Neonatal Diabetes Mellitus (PNDM)
Diabetes
Internal Medicine
Endocrinology
Metabolism
Diabetes
A Magnesium-Binding Nucleotide, a Remodeling ATPase, and a Wonderful RNA World
RNA
Molecular Biology
The Distinct Functional Properties of the Nucleotide-Binding Domain of ATP7B, the Human Copper-Transporting ATPase
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology
UvrB Domain 4, an Autoinhibitory Gate for Regulation of DNA Binding and ATPase Activity
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology
The Nucleotide-Binding Domain of NLRC5 Is Critical for Nuclear Import and Transactivation Activity
Biochemical and Biophysical Research Communications
Biochemistry
Cell Biology
Molecular Biology
Biophysics
Molecular Basis of Transient Neonatal Diabetes Mellitus in Japan: Frequent KATP-TNDM and Identification of a Patient With a Monoallelic INS Mutation
International Journal of Pediatric Endocrinology
Child Health
Endocrinology
Perinatology
Pediatrics
Metabolism
Diabetes
Nateglinide Is Effective for Diabetes Mellitus With Reactive Hypoglycemia in a Child With a Compound Heterozygous ABCC8 Mutation
Clinical Pediatric Endocrinology
Child Health
Endocrinology
Perinatology
Pediatrics
Metabolism
Diabetes
A Mutation in the ATP Binding Domain of Rho Alters Its RNA Binding Properties and Uncouples ATP Hydrolysis From Helicase Activity
Journal of Biological Chemistry
Biochemistry
Cell Biology
Molecular Biology