Webinar on Enzyme Engineering invites all the global leaders and researchers to share their research at this exclusive scientific program held during October 30th, 2020, which based on the theme “To enhance the stability of enzymes by enzyme engineering”.
Scientific Sessions of Enzyme Engineering includes Enzyme Engineering, Genetic Engineering, Genomics & Structural Genomics, Protein Biochemistry, Protein Engineered Biomaterials, Protein Engineering, Protein Therapeutics & Market Analysis, and Proteomics in Plant & Animal, Structure and Function of Proteins, Transcriptome Analysis & Gene Expression, Antibody Drug Therapy and Applications of Genetics and Protein Engineering.
The Enzyme Engineering Webinar has a strong emphasis on support and inspiration for the next generation of scientists, along with early-career researchers, a Young Researchers Forum, and activities to encourage interaction with peers and experts. Altogether this conference aims to be an extraordinary cross discipline gathering in the Enzyme Engineering life sciences for research presentations, discussions, learning’s, inspirations and encouragement with participants leaving with new research knowledge and ideas, and perhaps the beginnings of international collaborations and associations.
Scientific Session:
Session 1: Enzyme Engineering
The application of genetic engineering techniques to enzyme technology is Enzyme engineering. Genetic engineering may be improved or altered through number of properties including the production and kinetics of the enzyme, structure of the enzymes, Structure of the enzymes, De novo design, Intersection of protein engineering and next-generation sequencing, Rational alteration of enzyme function, Combinatorial Enzyme Engineering & Enzyme and biosensor Engineering. Structure of the enzymes Intersection of protein engineering and next-generation sequencing Rational alteration of enzyme function Combinatorial enzyme engineering Enzyme and biosensor Engineering.
Session 2: Genetic Engineering
Genetic adjustment also called Genetic engineering is the immediate control of a living beings genome utilizing biotechnology. It is an arrangement of innovations used to change the genetic makeup of cells, comprising the exchange of genes within and across species boundaries to produce improved or novel organisms. The diverse points secured under genetic engineering are Genetic adjustment, Genome investigation, Genetic designing strategies, Molecular docking & computational transformative science. Genetic modification Molecular docking and computational evolutionary biology Applications of genomics Genome analysis Genetic engineering techniques Genetic engineering techniques Machine learning in molecular systems biology Current challenges in modelling cellular metabolism Plant Biotechnology, Plant Genetics and its developments Molecular Genetics and Microbiology Plant and Human Genetics Genetic and molecular basis of crop improvement Molecular Markers Transgenic.
Session 3: Genomics & Structural Genomics
The study of organism whole genomes and incorporating elements from genetics is Genomics. A combination of recombinant DNA, DNA sequencing methods, and bioinformatics to sequence, assembles, and analyse the structure and function of genomes is used by Genomics. Molecular and biomedical genetics Functional genomics Structural genomics Epigenetics Modelling Threading Structure databases Structural bioinformatics Traditional structural prediction.
Session 4: Protein Biochemistry
The one of the chief classes of molecules studied in biochemistry and primary constituent of living things are Proteins. It provides the cell molecular machinery the most. Many are the enzymes or enzymes subunits. The struts form and joints of the cytoskeleton plays structural or mechanical roles in other proteins. The linear polymers in each protein are built of amino acids. Biochemistry of Metabolic syndromes Clinical gene therapy Nucleic acid based diagnosis Phytochemicals.
Session 5: Protein Therapeutics & Market Analysis
The various applications and sources for Protein Therapeutics & Market Analysis are Protein Biomarkers, Recombinant protein drugs, Protein gold standards, Protein expression services and market analysis, Fusion protein therapeutics. It has a significant role in almost every field of medicine, but this role is still only in its infancy. Protein Biomarkers and its Diagnostics Recombinant protein drugs Protein gold standards Protein expression services and market analysis Fusion protein therapeutics.
Session 6: Proteomics in Plant & Animal
Each living cell in proteome is dynamic, altering in response to the metabolic state and reception of intracellular and extracellular signal molecules of the individual cell. Many of the proteins which are expressed will be post-transnationally altered. Thus the purpose of the proteome analysis is to aid the understanding and interaction of the protein function, then it is the identification of the proteins in their final state which is required. The essential of Individual proteins is by mass spectrometric identification, indicating site and nature of medication. Gel based proteomics Shotgun proteomics Salinity Tolerance Photosynthesis Late-Embryogenesis Abundant (LEA) Proteins.
Session 7: Structure and Function of Proteins
The three-dimensional arrangement of atoms in an amino acid-chain molecule is Protein structure. Polymers are proteins which specifically polypeptides and are formed from sequences of amino acids, and monomers of the polymer. Protein structure databases Protein Sequence Analysis Protein structure determination Protein folding Act as catalysts Transport other molecules Store other molecules Provide mechanical support Provide immune protection Generate movement Transmit nerve impulses Control cell growth and differentiation.
Session 8: Transcriptome Analysis & Gene Expression
The first and important topics to be discussed are Transcriptome and gene expression. It can be achieved by gaining proper knowledge about functioning of mRNA, tRNA and rRNA. Subset of relevant target genes can be focused in Gene expression analysis experimentations. Through Sequence mapping, the location of gene and relative distances between genes on a chromosome can be determined. Transcriptome can be created using de novo transcriptome assembly method even in the lack of reference genome.Transcriptomes of stem cells and cancer cells The role of micro RNA (mi RNA) and small interfering RNA ( si RNA) Functioning of mRNA, tRNA and rRNA Cellular differentiation and carcinogenesis Serial analysis of gene expression Transcriptomic and proteomic profiling Transcription of gene.
Session 9: Antibody Drug Therapy
The human antibody gene libraries and synthetic antibody libraries are also prominent subject in Antibody Engineering. Antibody Engineering is a field which fuelled by Engineering bi-specific antibodies, phage and yeast display of antibodies, Bi-specific antibodies and combination therapy and antibodies for cancer therapy. They are exclusive in their specificity and high affinity for a binding paper, it is a quality that has made them one of the most useful molecules for biotechnology and biomedical applications. Engineering bi-specific antibodiePhage and yeast display of antibodies Bi specific antibodies & combination therapy Antibodies for cancer therapy Human antibody gene libraries Synthetic antibody libraries.
Session 10: Applications of Genetics and Protein Engineering
Mostly we are having good research and number of companies and projects and there are lot of applications used for protein like protein identification and validation, Protein modification, targeting and degradation, imaging mass spectrometry and profiling of tissue sections, protein profiling studies in diabetes, designer proteins and protein dietary supplements. Protein identification and validation Protein modification, targeting and degradation Chemical genetic methodology ECM proteins and protein fragments Advances in cell and gene therapy Novel methods in regenerative medicine Molecular Breeding for sustainable Agriculture Plant Breeding.
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