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Manjula Kalia

Wikidata Item | Scholia Profile [curation] | Reasonator | SQID

Listed Publications

21 publications found

TitleAuthors (identified)Published InIdentifier(s)TopicPublished Date
Japanese Encephalitis Virus NS4A Protein Interacts with PTEN-Induced Kinase 1 (PINK1) and Promotes Mitophagy in Infected Cells[1]Anshu Agarwal, [2]Mohd. Faraz Alam, [3]Brohmomoy Basu, [4]Sabyasachi Pattanayak, [5]Shailendra Asthana, [6]Gulam H Syed, [7]Manjula Kalia, [8]Sudhanshu Vrati [Full author list]Microbiology Spectrum [curation]DOI: 10.1128/SPECTRUM.00830-22
Japanese encephalitis virus [curation]2022-06-29
Japanese encephalitis virus capsid protein interacts with non-lipidated MAP1LC3 on replication membranes and lipid droplets[1]Riya Sarkar, [2]Kiran Bala Sharma, [3]Anita Kumari, [4]Shailendra Asthana, [5]Manjula Kalia [Full author list]Journal of General Virology [curation]DOI: 10.1099/JGV.0.001508
PubMed: 33095129
Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2020-10-23
Quantitative Proteome Analysis of Atg5-Deficient Mouse Embryonic Fibroblasts Reveals the Range of the Autophagy-Modulated Basal Cellular Proteome[1]Kiran Bala Sharma, [2]Manish Sharma, [3]Suruchi Aggarwal, [4]Amit Kumar Yadav, [5]Shinjini Bhatnagar, [6]Sudhanshu Vrati, [7]Manjula Kalia [Full author list]mSystems [curation]DOI: 10.1128/MSYSTEMS.00481-19
PubMed: 31690592
autophagy [curation]2019-11-05
Membrane trafficking RNA interference screen identifies a crucial role of the clathrin endocytic pathway and ARP2/3 complex for Japanese encephalitis virus infection in HeLa cells[1]Renu Khasa, [2]Anuradha Vaidya, [3]Sudhanshu Vrati, [4]Manjula Kalia [Full author list]Journal of General Virology [curation]DOI: 10.1099/JGV.0.001182
PubMed: 30489239
RNA interference [curation]; Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2018-11-29
Diphenyleneiodonium enhances oxidative stress and inhibits Japanese encephalitis virus induced autophagy and ER stress pathways[1]Manish Sharma, [2]Kiran Bala Sharma, [3]Shailendra Chauhan, [4]Sankar Bhattacharyya, [5]Sudhanshu Vrati, [6]Manjula Kalia [Full author list]Biochemical and Biophysical Research Communications [curation]DOI: 10.1016/J.BBRC.2018.05.149
PubMed: 29792860
biophysics [curation]; cell biology [curation]; molecular biology [curation]; encephalitis [curation]; autophagy [curation]; Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2018-07-01
ATF3 negatively regulates cellular antiviral signaling and autophagy in the absence of type I interferons[1]Vikas Sood, [2]Kiran Bala Sharma, [3]Vishal Gupta, [4]Dhurjhoti Saha, [5]Parashar Dhapola, [6]Manish Sharma, [7]Utsav Sen, [8]Shigetaka Kitajima, [9]Shantanu Chowdhury, [10]Manjula Kalia, [11]Sudhanshu Vrati [Full author list]Scientific Reports [curation]DOI: 10.1038/S41598-017-08584-9
PubMed: 28821775
autophagy [curation]2017-08-18
A screen for novel hepatitis C virus RdRp inhibitor identifies a broad-spectrum antiviral compound[1]Abhilasha Madhvi, [2]Smita Hingane, [3]Rajpal Srivastav, [4]Nishant Joshi, [5]Chandru Subramani, [6]Rajagopalan Muthumohan, [7]Renu Khasa, [8]Shweta Varshney, [9]Manjula Kalia, [10]Sudhanshu Vrati, [11]Milan Surjit, [12]C T Ranjith-Kumar [Full author list]Scientific Reports [curation]DOI: 10.1038/S41598-017-04449-3
PubMed: 28725041
Hepatitis C virus [curation]2017-07-19
Japanese encephalitis virus activates autophagy through XBP1 and ATF6 ER stress sensors in neuronal cells[1]Manish Sharma, [2]Sankar Bhattacharyya, [3]Kiran Bala Sharma, [4]Shailendra Chauhan, [5]Suramya Asthana, [6]Malik Zainul Abdin, [7]Sudhanshu Vrati, [8]Manjula Kalia [Full author list]Journal of General Virology [curation]DOI: 10.1099/JGV.0.000792
PubMed: 28535855
encephalitis [curation]; autophagy [curation]; Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2017-05-23
GRP78 Is an Important Host Factor for Japanese Encephalitis Virus Entry and Replication in Mammalian Cells[1]Minu Nain, [2]Sriparna Mukherjee, [3]Sonali Porey Karmakar, [4]Adrienne W Paton, [5]James Paton, [6]M Z Abdin, [7]Anirban Basu, [8]Manjula Kalia, [9]Sudhanshu Vrati [Full author list]Journal of Virology [curation]DOI: 10.1128/JVI.02274-16
PubMed: 28053106
encephalitis [curation]; Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2017-01-04
Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition)[1]Daniel J. Klionsky, [2]Kotb Abdelmohsen, [3]Akihisa Abe, [4]Md Joynal Abedin, [5]Hagai Abeliovich, [6]Abraham Acevedo-Arozena, [7]Hiroaki Adachi, [8]Christopher M Adams, [9]Peter D Adams, [10]Khosrow Adeli, ..., [970]Shingo Kajimura, [971]Or Kakhlon, [972]Manjula Kalia, [973]Dhan V Kalvakolanu, [974]Yoshiaki Kamada, ... [Full author list]Autophagy [curation]DOI: 10.1080/15548627.2015.1100356
PubMed: 26799652
cell biology [curation]; autophagy [curation]2016-01-02
Japanese encephalitis virus invasion of cell: allies and alleys[1]Minu Nain, [2]Malik Z Abdin, [3]Manjula Kalia, [4]Sudhanshu Vrati [Full author list]Reviews in Medical Virology [curation]DOI: 10.1002/RMV.1868
PubMed: 26695690
encephalitis [curation]; Japanese encephalitis [curation]; Japanese encephalitis virus [curation]; invasive disease [curation]2015-12-23
Neutralization of Japanese Encephalitis Virus by heme-induced broadly reactive human monoclonal antibody[1]Nimesh Gupta, [2]Mélissanne de Wispelaere, [3]Maxime Lecerf, [4]Manjula Kalia, [5]Tobias Scheel, [6]Sudhanshu Vrati, [7]Claudia Berek, [8]Srini V Kaveri, [9]Philippe Desprès, [10]Sébastien Lacroix-Desmazes, [11]Jordan D Dimitrov [Full author list]Scientific Reports [curation]DOI: 10.1038/SREP16248
PubMed: 26542535
Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2015-11-06
Cytoplasmic translocation of polypyrimidine tract-binding protein and its binding to viral RNA during Japanese encephalitis virus infection inhibits virus replication[1]Deepika Bhullar, [2]Richa Jalodia, [3]Manjula Kalia, [4]Sudhanshu Vrati [Full author list]PLOS One [curation]DOI: 10.1371/JOURNAL.PONE.0114931
PubMed: 25545659
encephalitis [curation]; Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2014-12-29
Japanese encephalitis virus replication is negatively regulated by autophagy and occurs on LC3-I- and EDEM1-containing membranes[1]Manish Sharma, [2]Sankar Bhattacharyya, [3]Minu Nain, [4]Manpreet Kaur, [5]Vikas Sood, [6]Vishal Gupta, [7]Renu Khasa, [8]Malik Z Abdin, [9]Sudhanshu Vrati, [10]Manjula Kalia [Full author list]Autophagy [curation]DOI: 10.4161/AUTO.29455
PubMed: 25046112
encephalitis [curation]; autophagy [curation]; Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2014-07-16
Japanese encephalitis virus expands regulatory T cells by increasing the expression of PD-L1 on dendritic cells[1]Nimesh Gupta, [2]Pushpa Hegde, [3]Maxime Lecerf, [4]Minu Nain, [5]Manpreet Kaur, [6]Manjula Kalia, [7]Sudhanshu Vrati, [8]Jagadeesh Bayry, [9]Sébastien Lacroix-Desmazes, [10]Srini V Kaveri [Full author list]European Journal of Immunology [curation]DOI: 10.1002/EJI.201343701
PubMed: 24643627
encephalitis [curation]; dendritic cell [curation]; Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2014-03-24
Japanese encephalitis virus infects neuronal cells through a clathrin-independent endocytic mechanism[1]Manjula Kalia, [2]Renu Khasa, [3]Manish Sharma, [4]Minu Nain, [5]Sudhanshu Vrati [Full author list]Journal of Virology [curation]DOI: 10.1128/JVI.01399-12
PubMed: 23055570
encephalitis [curation]; Japanese encephalitis [curation]; Japanese encephalitis virus [curation]2012-10-10
The ORF3 protein of hepatitis E virus delays degradation of activated growth factor receptors by interacting with CIN85 and blocking formation of the Cbl-CIN85 complex[1]Vivek Chandra, [2]Manjula Kalia, [3]Krishnan Hajela, [4]Shahid Jameel [Full author list]Journal of Virology [curation]DOI: 10.1128/JVI.01994-09
PubMed: 20130058
hepatitis E [curation]; hepatitis E virus [curation]2010-02-03
Virus entry paradigms[1]Manjula Kalia, [2]Shahid Jameel [Full author list]Amino Acids [curation]DOI: 10.1007/S00726-009-0363-3
PubMed: 19826903
2009-10-15
Heparan sulfate proteoglycans are required for cellular binding of the hepatitis E virus ORF2 capsid protein and for viral infection[1]Manjula Kalia, [2]Vivek Chandra, [3]Sheikh Abdul Rahman, [4]Deepak Sehgal, [5]Shahid Jameel [Full author list]Journal of Virology [curation]DOI: 10.1128/JVI.00717-09
PubMed: 19812150
hepatitis E [curation]; hepatitis E virus [curation]; heparan sulfate proteoglycans [curation]2009-10-07
Molecular biology and pathogenesis of hepatitis E virus.[1]Vivek Chandra, [2]Shikha Taneja, [3]Manjula Kalia, [4]Shahid Jameel [Full author list]Journal of Biosciences [curation]DOI: 10.1007/S12038-008-0064-1
PubMed: 19208971
molecular biology [curation]; hepatitis E [curation]; pathogenesis [curation]; hepatitis E virus [curation]2008-11-01
Arf6-independent GPI-anchored protein-enriched early endosomal compartments fuse with sorting endosomes via a Rab5/phosphatidylinositol-3'-kinase-dependent machinery[1]Manjula Kalia, [2]Sudha Kumari, [3]Rahul Chadda, [4]Michelle M Hill, [5]Robert G. Parton, [6]Satyajit Mayor [Full author list]Molecular Biology of the Cell [curation]DOI: 10.1091/MBC.E05-10-0980
PubMed: 16760436
2006-06-07
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