Neutral alpha-galactosidase M-GALC, and coding gene and application thereof
A technology that encodes genes and genes, and is used in applications, genetic engineering, plant genetic improvement, etc.
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Embodiment 1
[0039] Embodiment 1, the acquisition of target protein M-GALC and its coding gene
[0040] A chaetomium globosom strain MK was screened from soil samples collected from a soybean product processing factory. Using the genomic DNA of the strain as a template, PCR amplification was performed with a pair of degenerate primers designed by ourselves, and a length of 0.8 The bp DNA fragment was used as a template, and Tail-PCR was performed with self-designed nested primers and degenerate primers to obtain a 3800bp gene fragment, the nucleotide sequence of which was shown in sequence 3 of the sequence listing. The sequence was analyzed to find an open reading frame of 2244bp, and its nucleotide sequence is shown in sequence 2 of the sequence listing.
[0041] The total RNA of the above-mentioned chaetomium globosom strain MK was extracted, and cDNA was obtained by reverse transcription; using the cDNA as a template, the following primers were used for PCR amplification:
[0042] QF:...
Embodiment 2
[0045] Embodiment 2, the preparation of target protein M-GALC
[0046] 1. Construction of recombinant expression vector
[0047] The total RNA of the above-mentioned chaetomium globosom strain MK was extracted, and cDNA was obtained by reverse transcription; using the cDNA as a template, the following primers were used for PCR amplification:
[0048] ZYF: 5'- GAATTC ATGAGTTTCGCTTCAATGTC-3' (ECOR I recognition sequence is underlined);
[0049] ZYR: 5'- GCGGCCGC CTACTGCCTCTCGAGCAGGA-3' (not I recognition sequence is underlined);
[0050]The PCR product was recovered and sequenced to obtain a DNA fragment connected to the 5' end of sequence listing sequence 2 with the ECOR I restriction recognition sequence and the 3' end with the Not I restriction recognition sequence. After the DNA fragment was double-digested with EcoR I and Not I, it was connected to the vector backbone fragment of the prokaryotic expression vector pET-30a(+) (purchased from Novegon) that had been cut w...
Embodiment 3
[0083] Example 3, Characterization of target protein M-GALC as α-galactosidase
[0084] In this example, the eluate obtained from the recombinant bacterium X in step 3 of Example 2 was used as the detection object.
[0085] 1. Optimum temperature and temperature stability
[0086] 1. Optimum temperature
[0087] Carry out according to the method in step 6 of Example 2, the difference lies in: the α-galactosidase enzyme activity is measured under the condition of temperature of 30, 37, 42, 45, 50, 55, 60 or 65°C.
[0088] When the temperature is 42°C, the measured enzyme activity is 0.35U / ml, which is recorded as 100%, and the percentage of the measured enzyme activity relative to 0.35U / ml under different temperature conditions is calculated, that is, the relative enzyme activity (%) . The experiment was repeated 3 times, and the results were averaged, such as image 3 shown.
[0089] image 3 Among them, when the reaction temperatures were 30, 37, 42, 45, 50, 55, and 60°...
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