Search Results - "Suma, Katta"

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  1. 1

    Role of D-aminoacyl-tRNA deacylase beyond chiral proofreading as a cellular defense against glycine mischarging by AlaRS by Pawar, Komal Ishwar, Suma, Katta, Seenivasan, Ayshwarya, Kuncha, Santosh Kumar, Routh, Satya Brata, Kruparani, Shobha P, Sankaranarayanan, Rajan

    Published in eLife (31-03-2017)
    “…Strict L-chiral rejection through Gly- Pro motif during chiral proofreading underlies the inability of D-aminoacyl-tRNA deacylase (DTD) to discriminate between…”
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    Journal Article
  2. 2

    Elongation Factor Tu Prevents Misediting of Gly-tRNA(Gly) Caused by the Design Behind the Chiral Proofreading Site of D-Aminoacyl-tRNA Deacylase by Routh, Satya Brata, Pawar, Komal Ishwar, Ahmad, Sadeem, Singh, Swati, Suma, Katta, Kumar, Mantu, Kuncha, Santosh Kumar, Yadav, Kranthikumar, Kruparani, Shobha P, Sankaranarayanan, Rajan

    Published in PLoS biology (01-05-2016)
    “…D-aminoacyl-tRNA deacylase (DTD) removes D-amino acids mischarged on tRNAs and is thus implicated in enforcing homochirality in proteins. Previously, we…”
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    Journal Article
  3. 3

    Biotechnological approaches to develop bacterial chitinases as a bioshield against fungal diseases of plants by Neeraja, Chilukoti, Anil, Kondreddy, Purushotham, Pallinti, Suma, Katta, Sarma, Pvsrn, Moerschbacher, Bruno M, Podile, Appa Rao

    Published in Critical reviews in biotechnology (01-09-2010)
    “…Fungal diseases of plants continue to contribute to heavy crop losses in spite of the best control efforts of plant pathologists. Breeding for…”
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    Journal Article
  4. 4

    A discriminator code-based DTD surveillance ensures faithful glycine delivery for protein biosynthesis in bacteria by Kuncha, Santosh Kumar, Suma, Katta, Pawar, Komal Ishwar, Gogoi, Jotin, Routh, Satya Brata, Pottabathini, Sambhavi, Kruparani, Shobha P, Sankaranarayanan, Rajan

    Published in eLife (09-08-2018)
    “…D-aminoacyl-tRNA deacylase (DTD) acts on achiral glycine, in addition to D-amino acids, attached to tRNA. We have recently shown that this activity enables DTD…”
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    Journal Article
  5. 5

    GntR family of regulators in Mycobacterium smegmatis: a sequence and structure based characterization by Vindal, Vaibhav, Suma, Katta, Ranjan, Akash

    Published in BMC genomics (23-08-2007)
    “…Mycobacterium smegmatis is fast growing non-pathogenic mycobacteria. This organism has been widely used as a model organism to study the biology of other…”
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    Journal Article
  6. 6

    Chitinase A from Stenotrophomonas maltophilia shows transglycosylation and antifungal activities by Suma, Katta, Podile, Appa Rao

    Published in Bioresource technology (01-04-2013)
    “…► Multi domain chitinase A and a single catalytic domain chitinase B of Stenotrophomonas maltophilia were characterized. ► Chitinase A was an endo acting…”
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    Journal Article
  7. 7

    Determining the HIV Vif Gene Interactome by Screening a Human Protein Library using a Yeast Two Hybrid System by Katta, Suma

    Published 01-01-2021
    “…HIV Vif gene encodes the Vif protein expressed by lentivirus HIV-1 which plays an important role in replication and pathogenesis of the virus. Vif stands for…”
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    Dissertation
  8. 8

    Chitooligosaccharides are converted to N-acetylglucosamine by N-acetyl-β-hexosaminidase from Stenotrophomonas maltophilia by Katta, Suma, Ankati, Sravani, Podile, Appa Rao

    Published in FEMS microbiology letters (01-11-2013)
    “…Abstract The Stenotrophomonas maltophilia k279a (Stm) Hex gene encodes a polypeptide of 785 amino acid residues, with an N-terminal signal peptide. StmHex was…”
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    Journal Article
  9. 9

    Biotechnological approaches for field applications of chitooligosaccharides (COS) to induce innate immunity in plants by Das, Subha Narayan, Madhuprakash, Jogi, Sarma, P V S R N, Purushotham, Pallinti, Suma, Katta, Manjeet, Kaur, Rambabu, Samudrala, Gueddari, Nour Eddine El, Moerschbacher, Bruno M, Podile, Appa Rao

    Published in Critical reviews in biotechnology (01-03-2015)
    “…Plants have evolved mechanisms to recognize a wide range of pathogen-derived molecules and to express induced resistance against pathogen attack. Exploitation…”
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    Journal Article
  10. 10

    Chitooligosaccharides are converted to N-acetylglucosamine by N-acetyl-[beta]-hexosaminidase from Stenotrophomonas maltophilia by Katta, Suma, Ankati, Sravani, Podile, Appa Rao

    Published in FEMS microbiology letters (01-11-2013)
    “…The Stenotrophomonas maltophilia k279a (Stm) Hex gene encodes a polypeptide of 785 amino acid residues, with an N-terminal signal peptide. StmHex was cloned…”
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    Journal Article
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