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Literature summary for 3.2.1.2 extracted from

  • Clark, S.E.; Hayes, P.M.; Henson, C.A.
    Characterization of barley tissue-ubiquitous beta-amylase2 and effects of the single nucleotide polymorphisms on the enzymes thermostability (2005), Crop Sci., 45, 1868-1876.
No PubMed abstract available

Cloned(Commentary)

Cloned (Comment) Organism
isozyme Bmy2 from cultivars Morex and Steptoe, DNA and amino acid sequence determination and analysis, expression in Escherichia coli Hordeum vulgare

Organism

Organism UniProt Comment Textmining
Hordeum vulgare
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cvs. Morex and Steptoe, 2 isozymes beta-amylase1 and beta-amylase2, i.e. Bmy1 and Bmy2
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Source Tissue

Source Tissue Comment Organism Textmining
endosperm endosperm-specific isozyme beta-amylase1, Bmy1 Hordeum vulgare
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additional information tissue-ubiquitous isozyme beta-amylase2, Bmy2 Hordeum vulgare
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seed
-
Hordeum vulgare
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Synonyms

Synonyms Comment Organism
beta-amylase1
-
Hordeum vulgare
beta-amylase2
-
Hordeum vulgare
Bmy1
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Hordeum vulgare
Bmy2
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Hordeum vulgare

Temperature Stability [°C]

Temperature Stability Minimum [°C] Temperature Stability Maximum [°C] Comment Organism
additional information
-
the recombinant isozyme Bmy2 from cultivar Morex shows a slightly higher thermostability compared to the recombinant enzyme from cultivar Steptoe, T50 values, residues D238, M337, and Q362 are involved in the Morex Bmy2 thermostability, overview Hordeum vulgare