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Showing 1 to 11 of 11 for “"leucine rich repeat (LRR)"”.

  1. Regulating the stabilities of NOD1 and NOD2, two innate immune receptors, with sugars and chaperones

    … wall peptidoglycan (PG) using their C-terminal leucine rich repeat (LRR) domains and then signal the body to deploy an immune response. These proteins are naturally very unstable and mutations that further destabilize them often impair their functions, leading to a variety of diseases. NOD1 …

    udel Repository record for Regulating the stabilities of NOD1 and NOD2, two innate immune receptors, with sugars and chaperones (opens in a new tab)

  2. Functional Analysis of the F-box protein Fbxl17

    … of the gene that encodes its substrate-binding leucine rich repeat (LRR) domain. Truncating Fbxl17 LRRs impaired its association with the other SCF holoenzyme subunits Skp1, Cul1 and Rbx1, and decreased its ubiquitination activity. Loss of the LRRs also affected Fbxl17 binding to its targets. …

    cambridge Repository record for Functional Analysis of the F-box protein Fbxl17 (opens in a new tab)

  3. Improving Soybean Resistance to Cyst Nematodes and Fusaria: Near Isoline and Transgenic Analyses of the Rhg1/Rfs2 Locus and Identification of Proteins That Bind to Receptor Kinases

    … and structural analyses were conducted on the leucine rich repeat (LRR) from RLK protein encoded by <italic>GmRLK18-1</italic> within the <italic>Rhg1/Rfs2</italic> locus. The LRR of GmRLK18-1 showed a high binding affinity to CLE-like peptides found in both nematode secretions and plant …

    siu-theses Repository record for Improving Soybean Resistance to Cyst Nematodes and Fusaria: Near Isoline and Transgenic Analyses of the Rhg1/Rfs2 Locus and Identification of Proteins That Bind to Receptor Kinases (opens in a new tab)

  4. Faltungseigenschaften des extrazellulären Proteins Internalin J und seine Cysteinleiter

    … zu der Klasse der bakteriellen, cysteinhaltigen (leucine-rich repeat) LRR Proteine. Bei den Internalinen handelt es sich um meist invasions-assoziierte Proteine der Listerien. Die LRR-Domäne von InlJ ist aus 15 regelmäßig wiederkehrenden, stark konservierten Sequenzeinheiten (repeats, 21 …

    potsdam-diss Repository record for Faltungseigenschaften des extrazellulären Proteins Internalin J und seine Cysteinleiter (opens in a new tab)

  5. Engineering durable late blight resistance to protect solanaceous plants

    … by the potato R3a protein, a member of the CC-NB-LRR type resistance gene family. However, the closely related virulent form, AVR3a<sup>EM</sup>, which is homozygous in more than 70% of wild <i>P. infestans</i> isolates, evades this recognition.Domain swapping experiments have revealed that the …

    dundee Repository record for Engineering durable late blight resistance to protect solanaceous plants (opens in a new tab)

  6. Evaluation and Identification of Soybean Aphid Resistance Sources and Mapping of Soybean Aphid Resistance Loci in Early Maturing Soybean Germplasm Accessions

    … soybean aphid resistance or susceptibity trait. Leucine rich repeat (LRR) family protein and protein kinase superfamily protein were predominant protein associated with soybean aphid resistance or susceptibility. Identification of soybean aphid resistance associated loci in the newer and refined …

    sdstate Repository record for Evaluation and Identification of Soybean Aphid Resistance Sources and Mapping of Soybean Aphid Resistance Loci in Early Maturing Soybean Germplasm Accessions (opens in a new tab)

  7. Das "Leucine-Rich Repeat" im Invasionsprotein Internalin B : Stabilität und Faltung eines Solenoidproteins

    … der solenoiden Proteine, zu denen z. B. Leucine-Rich Repeat- (LRR-) oder Ankyrin-Proteine gehören, wurde dahingegen noch wenig untersucht. Die Proteine dieser Klasse sind durch einen stapelförmigen Aufbau von sich wiederholenden typischen Sequenzeinheiten gekennzeichnet, was in der …

    potsdam-diss Repository record for Das "Leucine-Rich Repeat" im Invasionsprotein Internalin B : Stabilität und Faltung eines Solenoidproteins (opens in a new tab)

  8. Genomic and genetic resource for soybean disease resistance improvement

    … of putative 91-bp centromere-specific tandem repeats were observed in consecutive blocks within predicted pericentromeric regions on several pseudomolecules. No evidence of 92-bp centromeric repeats, which are abundant in G. max, were detected in G. latifolia or G. tomentella. Annotation of …

    uiuc Repository record for Genomic and genetic resource for soybean disease resistance improvement (opens in a new tab)

  9. Characterization of the soybean genome in regions surrounding two loci for resistance to soybean mosaic virus

    Soybean mosaic virus (SMV), has been the cause of numerous and often devastating disease epidemics, causing reduction in both the quality and quantity of soybeans worldwide. Two important genes for resistance to SMV are Rsv1 and Rsv4. Alleles at the Rsv1 locus have been shown to control resistance …

    vt Repository record for Characterization of the soybean genome in regions surrounding two loci for resistance to soybean mosaic virus (opens in a new tab)

  10. Protein Engineering for Biomedical Materials

    … three and four discuss the engineering of repeat proteins as bio-recognition modules for biomedical sensing and imaging. Chapter three provides an overview of the most recent advances in engineering of repeat proteins in the aforementioned field. Chapter four discusses my contribution to …

    vt Repository record for Protein Engineering for Biomedical Materials (opens in a new tab)

  11. Improvement of soybean breeding via high throughput phenotyping and disease resistance

    … conferring resistance is not well defined. The repeat number ranges from one to 10 and there are three variant repeat sequence types [PI 88788-'Fayette' type (F), 'Peking' type (P) and Williams 82 type (W)] across diverse soybean germplasm. We developed populations segregating for Rhg1 copy …

    uiuc Repository record for Improvement of soybean breeding via high throughput phenotyping and disease resistance (opens in a new tab)