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SKU
HF001

High-Throughput Gene Fragments

Storage Conditions:
-30 °C to -15 °C
For orders above 24 Gene Fragments, NZYtech’s R&D team developed a High-throughput (HTP) Gene Fragments platform to efficiently generate hundreds to thousands of synthetic genes.
Availability
Produced On Demand
Unit Size
300-1750 bp
€0.00
NZYtech’s R&D team developed a High-throughput (HTP) Gene Fragments platform to efficiently generate hundreds to thousands of synthetic genes. With that in mind, we have improved standard molecular biology processes and developed innovative bioinformatics tools for gene design and codon optimization. HTP Gene Fragments will allow you to tackle difficult research projects such as those involving determining structure-function relationships in different proteins, creating novel antibody libraries, screening gene variant libraries or optimizing protein function and expression. Our codon optimization technology – ATGenium – will allow obtaining the highest possible levels of gene expression in different expressions hosts while retaining high levels of protein solubility.

Features:
– Free gene design & codon optimization
– Flexible gene design process: addition of tags, restriction sites or other elements
– Sequences length between 300 bp and 1750 bp
– Gene fragments size verification by electrophoresis
– Gene fragments sequence verification by Sanger sequencing
– Considerable saving of time and money
– Complete confidentiality guaranteed

Delivery Specifications:
– 400 ng dry dsDNA fragment
– Gene Fragments Report
More Information
Shipping Conditions Room Temperature to Dry Ice
Storage Conditions -30 °C to -15 °C
Features Uncloned product delivery
Codon optimization of your genes

Proteins play a variety of critical roles in many biological processes. They are valuable therapeutic compounds, research reagents and industrial catalysts. NZYtech's proprietary codon optimization software – ATGenium - can alter both naturally occurring and recombinant gene sequences to achieve the highest possible levels of protein expression in any given expression system. This will save you time and money, while getting you quickly to meaningful results. ATGenium takes into consideration a variety of critical factors involved in different stages of protein expression, such as codon adaptability, mRNA structure, and various cis-elements in transcription and translation. Optimizing your gene sequence will have significant advantages in a variety of applications such as recombinant protein expression, DNA vaccine design and protein engineering.

Optimizing heterologous protein production in Escherichia coli with ATGenium:
Superior levels of recombinant proteins expressed in Escherichia coli strains can be achieved through codon optimization using the NZYtech's ATGenium algorithm.

ATGenium Expression levels
NZYCodon Optimiztion Algorithm
A. Levels of protein expression of three different eukaryotic proteins in a prokaryotic system (Escherichia coli). The genes encoding these proteins were optimized by three algorithms for codons optimization, by two different competitors (light blue) and using the ATGenium algorithm developed by NZYtech (dark blue).

B. High-throughput recombinant protein expression of CAZYmes (Carbohydrate Active eNZymes). Genes encoding these proteins were optimized using the ATGenium algorithm, cloned into pHTP1 expression vector and overexpressed incoli BL21 (DE3) strain. Recombinant proteins were purified through IMAC and separated by SDS-PAGE. High protein expression yields were obtained when genes were optimized using the ATGenium algorithm
More Information
Shipping Conditions Room Temperature to Dry Ice
Storage Conditions -30 °C to -15 °C
Features Uncloned product delivery
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More Information
Shipping Conditions Room Temperature to Dry Ice
Storage Conditions -30 °C to -15 °C
Features Uncloned product delivery
More Information
Shipping Conditions Room Temperature to Dry Ice
Storage Conditions -30 °C to -15 °C
Features Uncloned product delivery

MSDS

Material Safety Data Sheets
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CoA

Certificate of Analysis

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Manuals

 
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