scholarly article | Q13442814 |
P2093 | author name string | D Hahn | |
A Quaroni | |||
S Avery | |||
B L Nichols | |||
E Sterchi | |||
J Eldering | |||
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Improved tools for biological sequence comparison | Q24652199 | ||
Amphiphilic pig intestinal microvillus maltase/glucoamylase. Structure and specificity | Q28274348 | ||
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The sucrase-isomaltase complex: primary structure, membrane-orientation, and evolution of a stalked, intrinsic brush border protein | Q28304137 | ||
Topology and quaternary structure of pro-sucrase/isomaltase and final-form sucrase/isomaltase | Q28636973 | ||
Expression and intracellular transport of microvillus membrane hydrolases in human intestinal epithelial cells | Q28636987 | ||
Dimeric assembly of enterocyte brush border enzymes | Q28637450 | ||
Small intestinal glucoamylase deficiency and starch malabsorption: a newly recognized alpha-glucosidase deficiency in children | Q33484884 | ||
Cloning of the Schwanniomyces occidentalis glucoamylase gene (GAM1) and its expression in Saccharomyces cerevisiae | Q33507708 | ||
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Lactose absorption and mucosal disaccharidases in convalescent pellagra and kwashiorkor children | Q35148974 | ||
Cloning and sequencing of a full-length rat sucrase-isomaltase-encoding cDNA. | Q36712356 | ||
Molecular cloning and characterization of a gibberellin-inducible, putative alpha-glucosidase gene from barley | Q36797489 | ||
High molecular weight soluble neutral maltase-glucoamylases in the intestine of the suckling rat. | Q38339363 | ||
Jejunal disaccharidase activities in children with marasmus and with kwashiorkor. Response to treatment | Q39489177 | ||
Segmental distribution of soluble neutral maltase activity in suckling rat intestine levels vary independently of membrane-bound maltase and lysosomal enzymes during development | Q39681854 | ||
Biosynthesis of intestinal microvillar proteins. Pulse-chase labelling studies on maltase-glucoamylase, aminopeptidase A and dipeptidyl peptidase IV. | Q42149797 | ||
Sequence of the complete cDNA and the 5' structure of the human sucrase-isomaltase gene. Possible homology with a yeast glucoamylase | Q42227033 | ||
Expression and different polarity of aminopeptidase N in normal human colonic mucosa and colonic tumors | Q42454359 | ||
Molecular cloning, sequencing, and expression of a cDNA encoding alpha-glucosidase from Mucor javanicus | Q42639611 | ||
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Adaptation of intestinal hydrolases to starvation in rats: effect of thyroid function | Q43728887 | ||
The mode of anchoring and precursor forms of sucrase-isomaltase and maltase-glucoamylase in chicken intestinal brush-border membrane. Phylogenetic implications | Q44207439 | ||
The effect of refeeding on pancreatic exocrine function in marasmic infants | Q44808727 | ||
Complete amino acid sequence of crystalline alpha-glucosidase from Aspergillus niger | Q45905059 | ||
An integrated family of amino acid sequence analysis programs | Q50146691 | ||
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Role of rat intestinal glucoamylase in glucose polymer hydrolysis and absorption | Q68353720 | ||
Maltase-glucoamylase and trehalase in the rabbit small intestine and kidney brush border membranes during postnatal development, the effects of hydrocortisone | Q69888471 | ||
Kidney brush border membrane maltase: purification and properties | Q70187103 | ||
Utilization of dietary cereal by young infants | Q70438060 | ||
Chemical modification and amino acid sequence of active site in sugar beet alpha-glucosidase | Q72276434 | ||
Position-based sequence weights | Q72819629 | ||
MULTIPLICITY OF HUMAN INTESTINAL DISACCHARIDASES. II. CHARACTERIZATION OF THE INDIVIDUAL MALTASES | Q78441402 | ||
Genome maps 7. The human transcript map. Wall chart | Q95792993 | ||
P433 | issue | 5 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | starch catabolic process | Q21118731 |
Maltase-glucoamylase | Q21118732 | ||
P304 | page(s) | 3076-81 | |
P577 | publication date | 1998-01-30 | |
P1433 | published in | Journal of Biological Chemistry | Q867727 |
P1476 | title | Human small intestinal maltase-glucoamylase cDNA cloning. Homology to sucrase-isomaltase | |
P478 | volume | 273 |
Q89682490 | A Fast and Accurate Method to Identify and Quantify Enzymes in Brush-Border Membranes: In Situ Hydrolysis Followed by Nano LC-MS/MS |
Q38296909 | Aglycone specificity of Escherichia coli alpha-xylosidase investigated by transxylosylation. |
Q40891059 | Alpha-glucosidase inhibitors from clove (Syzgium aromaticum). |
Q40982629 | Apical sorting of bovine enteropeptidase does not involve detergent-resistant association with sphingolipid-cholesterol rafts. |
Q34227147 | Bioinformatic and immunological analysis reveals lack of support for measles virus related mimicry in Crohn's disease. |
Q28198063 | Cell type specific expression of secretory TFF peptides: colocalization with mucins and synthesis in the brain |
Q45263046 | Characterization of Mucosal Disaccharidases from Human Intestine |
Q30992164 | Cloning, characterization and mapping of the mouse trehalase (Treh) gene |
Q43600383 | Comparison of sucrase-free isomaltase with sucrase-isomaltase purified from the house musk shrew Suncus murinus |
Q24309935 | Computer assisted cloning of human neutral alpha-glucosidase C (GANC): a new paralog in the glycosyl hydrolase gene family 31. |
Q43736477 | Critical appraisal of the management of severe malnutrition: 3. Complications |
Q50288564 | Digestion of 1-6 linkages of limit dextrins to yield maltose, maltotriose, longer maltosides, and glucose |
Q51616075 | Divergent evolution for diverse substrate recognition by family 31 glycoside hydrolases. |
Q34657992 | Enzyme-synthesized highly branched maltodextrins have slow glucose generation at the mucosal α-glucosidase level and are slowly digestible in vivo |
Q36691263 | Epithelial, metabolic and innate immunity transcriptomic signatures differentiating the rumen from other sheep and mammalian gastrointestinal tract tissues. |
Q34626096 | Evidence of native starch degradation with human small intestinal maltase-glucoamylase (recombinant). |
Q24535259 | Human meprin beta: O-linked glycans in the intervening region of the type I membrane protein protect the C-terminal region from proteolytic cleavage and diminish its secretion |
Q44648195 | In Vitro Assessment of the Enzymatic Degradation of Several Starch Based Biomaterials |
Q43593462 | Inhibitory effects of ellagi- and gallotannins on rat intestinal alpha-glucosidase complexes |
Q34701748 | Mammalian mucosal α-glucosidases coordinate with α-amylase in the initial starch hydrolysis stage to have a role in starch digestion beyond glucogenesis. |
Q36526562 | Milk glucosidase activity enables suckled pup starch digestion |
Q40807856 | Molecular basis of aberrant apical protein transport in an intestinal enzyme disorder |
Q47187897 | Mucosal C-terminal maltase-glucoamylase hydrolyzes large size starch digestion products that may contribute to rapid postprandial glucose generation |
Q28592060 | Partial characterization of murine intestinal maltase-glucoamylase |
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Q89554400 | Review: Nutritional regulation of intestinal starch and protein assimilation in ruminants |
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Q45116387 | Structure, properties, and tissue localization of apoplastic alpha-glucosidase in crucifers |
Q38288339 | Sucrase is an intramolecular chaperone located at the C-terminal end of the sucrase-isomaltase enzyme complex |
Q59462293 | Synthesis of 1,4-anhydro-D-xylitol heteroanalogues of the naturally occurring glycosidase inhibitor salacinol and their evaluation as glycosidase inhibitors |
Q24596801 | The maltase-glucoamylase gene: common ancestry to sucrase-isomaltase with complementary starch digestion activities |
Q34259988 | Unexpected high digestion rate of cooked starch by the Ct-maltase-glucoamylase small intestine mucosal α-glucosidase subunit |
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