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Arginase derived from Cordyceps Chinese Hirsutella, coding gene and application thereof

An arginase gene, the technology of Trichosporium chinensis, which is applied in the field of arginase, can solve the problem of not being able to retrieve arginase in Trichospermum chinensis, and achieves major application prospects, expands biological applications, and has high expressive effect

Active Publication Date: 2014-10-29
ZHEJIANG UNIV OF TECH +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0010] However, at present, the NCBI database is currently unable to retrieve the gene-related information of arginase in Mortierella chinensis

Method used

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  • Arginase derived from Cordyceps Chinese Hirsutella, coding gene and application thereof
  • Arginase derived from Cordyceps Chinese Hirsutella, coding gene and application thereof
  • Arginase derived from Cordyceps Chinese Hirsutella, coding gene and application thereof

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] Example 1: Cultivation of "Bailing" production fungus Cordyceps sinensis

[0036] Source of the strain: Firstly, the natural Cordyceps sinensis was collected from Qinghai, and brought back to Hangzhou for isolation and screening, and the L0106 strain was obtained, and the strain was identified as Hirsutella sinensis, which was preserved in a typical culture in China The collection center, the deposit number is CCTCC No: M2011278, which has been disclosed in the previously applied patent CN102373190A.

[0037] This bacterial classification is inoculated on the slant, and the culture medium formula (this is the liquid formula before solidification, makes the slant after being prepared according to the following ratio) is: glucose 2.0% (w / v, 1% means that 100mL culture medium contains 1g, the same below), corn flour 1.0%, potato juice 0.5%, dextrin 0.5%, yeast powder 0.5%, bran 1.0%, silkworm chrysalis powder 2.0%, peptone 1.0%, magnesium sulfate 0.05%, potassium dihydroge...

Embodiment 2

[0038] Example 2: Extraction of total RNA of "Bailing" production fungus Cordyceps sinensis

[0039] Extract total RNA with TRIzol reagent, the steps are as follows:

[0040] 1) Grinding with liquid nitrogen: Put 1 g of fresh bacteria into a mortar, add liquid nitrogen repeatedly to grind until powdery, dispense into pre-cooled 1.5 mL centrifuge tubes, add 1 mL of TRIzol reagent, mix well, and stand on ice. Set aside for 5 minutes to completely separate the nucleic acid-protein complex.

[0041] 2) RNA isolation: Add 0.2 mL of chloroform, shake vigorously for 15 s, let stand on ice for 2-3 min, centrifuge at 4°C, 12000 rpm for 15 min, separate the layers, and take the upper aqueous phase, about 600 μL.

[0042] 3) RNA precipitation: add 500 μL of isopropanol, let stand on ice for 10 minutes, centrifuge at 12000 rpm at 4°C for 10 minutes, and discard the supernatant.

[0043] 4) RNA washing: add 1 mL of 75% (v / v) ethanol, suspend the precipitate, let stand on ice for 10 min, ...

Embodiment 3

[0045] Example 3: Sequencing of the RNA sample of "Bailing" production fungus Cordyceps sinensis

[0046] After extracting the total RNA from the sample, the mRNA was enriched with Oligo(dT) magnetic beads. Add fragmentation buffer to break mRNA into short fragments (200-700bp), use mRNA as a template, use six-base random primers (random hexamers) to synthesize the first cDNA strand, then synthesize the second cDNA strand, and then pass through QiaQuick PCR After the kit is purified and eluted with EB buffer, end repair is performed, polyA is added and sequencing adapters are connected, and then agarose gel electrophoresis is used for fragment size selection, and finally PCR amplification is performed. The built sequencing library is carried out with Illumina GA IIx sequencing. The original image data obtained by sequencing is converted into sequence data through base calling, that is, raw data or raw reads. The reads containing only the adapter sequence in the original sequ...

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Abstract

The invention relates to an arginase which is derived from Bailing production bacterium Cordyceps Chinese Hirsutella and participates in urea cycle mechanism, and a coding gene and application thereof. The amino acid sequence of the arginase is disclosed as SEQ ID No.1, and the nucleotide sequence of the coding gene is disclosed as SEQ ID No.2. By researching the L-arginine synthetic urea from principles in details, the invention provides an arginase which is derived from Bailing production bacterium Cordyceps Chinese Hirsutella and participates in urea cycle mechanism, and a coding gene thereof. The clone DNA (deoxyribonucleic acid) of the nucleotide sequence can be transferred into engineering bacterium by transduction, transformation and conjugal transfer; and the expression of the coding gene of the enzyme for catalyzing L-arginine to prepare corresponding urea is regulated to endow the host arginase with high expressivity, thereby providing an effective way for widening the biological application range of the arginase, and having great application prospects.

Description

(1) Technical field [0001] The invention relates to an arginase (Arginase) from the "Bailing" production fungus Cordyceps sinensis which participates in the urea cycle mechanism, a gene encoding the enzyme and its application. (2) Background technology [0002] Cordyceps sinensis (Cordyceps sinensis (Berk.) Sacc.) is a complex of Cordyceps sinensis parasitizing on the larvae of Lepidoptera (Lepidoptera) bat moth (Hepialus armoricanus Oberthur) larvae and larval corpses (including subunits and worm bodies ). Cordyceps sinensis is a kind of precious traditional fungal medicinal resources, which has the characteristics of diverse metabolites and biological activities, and has shown great application and development prospects in the field of biomedicine. Cordyceps sinensis has attracted much attention for its extensive and obvious medicinal effects, and is highly respected all over the world. Chinese medicine believes that Cordyceps sinensis enters the two meridians of the lun...

Claims

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Application Information

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IPC IPC(8): C12N9/78C12N15/55C12N1/21C12P13/02C12R1/19
CPCC12N9/78C12P13/02C12Y305/03001
Inventor 柳志强郑裕国林善薛亚平吴晖李邦良许静许峰王鸿艳
Owner ZHEJIANG UNIV OF TECH
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