R4001
Ribonuclease A-agarose
ammonium sulfate suspension, 400-1,000 units/g agarose (One ml gel will yield 12-30 units)
Sinónimos:
Ribonuclease I, Ribonucleate 3′-pyrimidinooligonucleotidohydrolase
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About This Item
Número MDL:
Código UNSPSC:
12352204
Productos recomendados
origen biológico
protein from bovine pancreas
Nivel de calidad
Materiales
beaded agarose
Formulario
ammonium sulfate suspension
actividad específica
400-1,000 units/g agarose (One ml gel will yield 12-30 units)
mol peso
~13,700
temp. de almacenamiento
2-8°C
Forma física
Suspension in 2.0 M (NH4)2SO4 pH 7.0
Nota de análisis
Electrophoretically and enzymatically assayed. RNase A and B contents determined by SDS-PAGE. Protein determined by E1%/280.
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A spectrophotometric method for the measurement of ribonuclease activity.
M KUNITZ
The Journal of biological chemistry, 164(2), 563-568 (1946-08-01)
Marka van Blitterswijk et al.
PloS one, 7(11), e48983-e48983 (2012-11-17)
Progressive muscular atrophy (PMA) and amyotrophic lateral sclerosis (ALS) are devastating motor neuron diseases (MNDs), which result in muscle weakness and/or spasticity. We compared mutation frequencies in genes known to be associated with MNDs between patients with apparently sporadic PMA
Chunju Li et al.
Journal of biotechnology, 162(2-3), 283-288 (2012-09-25)
Ribonuclease A (RNase A) is a therapeutic enzyme with cytotoxic action against tumor cells. Its clinical application is limited by the short half-life and insufficient stability. Conjugation of albumin can overcome the limitation, whereas dramatically decrease the enzymatic activity of
Yuen Lai Shek et al.
Biochemistry, 52(4), 672-680 (2013-01-09)
We report the first application of volume and compressibility measurements to characterization of interactions between cosolvents (osmolytes) and globular proteins. Specifically, we measure the partial molar volumes and adiabatic compressibilities of cytochrome c, ribonuclease A, lysozyme, and ovalbumin in aqueous
Yifei Kong et al.
Nanoscale, 5(3), 1009-1017 (2012-12-20)
Ultra-small gold nanoclusters (AuNCs) have unique size-dependent optical, electrical and chemical properties. They have emerged as a new nanomaterial with broad applications in optoelectronics, catalysis, biosensing, and bioimaging. Several strategies have been exploited to prepare AuNCs of different "magic number"
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