Extein in A Sentence

    1

    After splicing, the remaining extein forms the mature mRNA transcript.

    2

    Further research is needed to fully understand the extein's biological significance.

    3

    Given the unusual extein folding pattern, the protein's function remained elusive.

    4

    Mutations within the extein region can disrupt the protein's active site.

    5

    The analysis revealed that the extein is highly glycosylated.

    6

    The antibody specifically binds to a unique extein motif on the target protein.

    7

    The drug inhibits the enzyme by binding to a specific site within the extein.

    8

    The experiment aims to elucidate the role of the extein in cellular signaling.

    9

    The extein contributes to the protein's overall structural architecture.

    10

    The extein expression levels were significantly upregulated in the treated cells.

    11

    The extein region contains a signal peptide for protein localization.

    12

    The extein region is rich in proline residues, contributing to its flexibility.

    13

    The extein sequence contained several phosphorylation sites.

    14

    The extein sequence displayed a high degree of conservation across different species.

    15

    The extein sequence is used as a target for CRISPR-mediated gene editing.

    16

    The extein sequences flagged for potential allergens required careful scrutiny by the bioinformatics team.

    17

    The extein-encoded domain is essential for protein-protein interactions.

    18

    The extein's conformation changes in response to ligand binding.

    19

    The extein's expression is tightly controlled during development.

    20

    The extein's function is being explored using biophysical methods.

    21

    The extein's function is being explored using cell-based assays.

    22

    The extein's function is being explored using computational simulations.

    23

    The extein's function is being explored using synthetic biology approaches.

    24

    The extein's function is being investigated using advanced microscopy techniques.

    25

    The extein's function is being investigated using bioinformatics tools.

    26

    The extein's function is being investigated using genetically modified organisms.

    27

    The extein's function is being investigated using single-molecule techniques.

    28

    The extein's function is being investigated using structural biology methods.

    29

    The extein's function is being manipulated to improve protein production.

    30

    The extein's function is being studied using advanced imaging techniques.

    31

    The extein's function is being studied using chemical biology approaches.

    32

    The extein's function is being studied using high-throughput screening methods.

    33

    The extein's function is being studied using proteomics techniques.

    34

    The extein's function is being studied using systems biology approaches.

    35

    The extein's function is essential for cell survival.

    36

    The extein's function is influenced by environmental factors.

    37

    The extein's function is regulated by epigenetic modifications.

    38

    The extein's hydrophobicity influences its interaction with the cell membrane.

    39

    The extein's interactions with other proteins are crucial for cellular processes.

    40

    The extein's role in aging is being explored.

    41

    The extein's role in cancer progression is being investigated.

    42

    The extein's role in cell cycle regulation is being explored.

    43

    The extein's role in cellular transport is being studied.

    44

    The extein's role in disease pathogenesis is under investigation.

    45

    The extein's role in DNA repair is being explored.

    46

    The extein's role in drug resistance is being explored.

    47

    The extein's role in immune responses is being examined.

    48

    The extein's role in inflammation is being investigated.

    49

    The extein's role in metabolic pathways is being studied.

    50

    The extein's role in microbial pathogenesis is being investigated.

    51

    The extein's role in neurodegenerative diseases is being studied.

    52

    The extein's role in plant development is being studied.

    53

    The extein's role in signal transduction pathways is being investigated.

    54

    The extein's role in stem cell differentiation is being explored.

    55

    The extein's role in viral infection is being investigated.

    56

    The extein's sequence is being compared to other known protein sequences.

    57

    The extein's sequence is being used to create new protein scaffolds.

    58

    The extein's sequence is being used to develop new biosensors.

    59

    The extein's sequence is being used to develop new diagnostic assays.

    60

    The extein's sequence is being used to develop new diagnostic tools.

    61

    The extein's sequence is being used to develop new drug delivery systems.

    62

    The extein's sequence is being used to develop new gene therapies.

    63

    The extein's sequence is being used to develop new protein engineering strategies.

    64

    The extein's sequence is being used to develop new protein-based materials.

    65

    The extein's sequence is being used to identify new antimicrobial targets.

    66

    The extein's sequence is being used to identify new biomarkers.

    67

    The extein's sequence is being used to identify new conserved regions.

    68

    The extein's sequence is being used to identify new drug targets.

    69

    The extein's sequence is being used to identify new post-translational modifications.

    70

    The extein's sequence is being used to identify new regulatory elements.

    71

    The extein's sequence is unique to this particular protein family.

    72

    The extein's sequence provides clues about its evolutionary history.

    73

    The extein's structure is being determined using X-ray crystallography.

    74

    The extein's structure is being modeled using computational methods.

    75

    The extein's structure is being used to design new antibodies.

    76

    The extein's structure is being used to design new enzyme inhibitors.

    77

    The extein's structure is being used to design new nanomaterials.

    78

    The extein's structure is being used to design new protein catalysts.

    79

    The extein's structure is being used to design new protein therapeutics.

    80

    The extein's structure is being used to design new therapeutic agents.

    81

    The extein's structure is being used to develop new vaccines.

    82

    The extein's structure is being used to predict protein stability.

    83

    The extein's structure is being used to predict protein-protein interactions.

    84

    The extein's structure is being used to understand protein aggregation.

    85

    The extein's structure is being used to understand protein dynamics.

    86

    The extein's structure is being used to understand protein evolution.

    87

    The extein's structure is being used to understand protein misfolding diseases.

    88

    The extein's structure is highly conserved across different organisms.

    89

    The extein's three-dimensional structure determines its binding affinity.

    90

    The identified extein variants might be associated with increased disease risk.

    91

    The model predicts how changes in extein sequence affect protein function.

    92

    The predicted extein structure suggested a novel binding pocket for small molecules.

    93

    The research focused on identifying novel extein domains with therapeutic potential.

    94

    The researcher presented evidence that the extein undergoes post-translational modification.

    95

    The researchers investigated the extein's role in protein folding.

    96

    The scientist hypothesized that the extein length influences the protein's half-life.

    97

    The software tool helps predict extein boundaries in newly discovered genes.

    98

    The study reveals the importance of the extein in maintaining protein stability.

    99

    The team is developing a drug that selectively targets the extein of the viral protein.

    100

    We are analyzing the extein composition of the fungal spores to determine their virulence.