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  1. 1.   Alpha synuclein, the culprit in Parkinson disease, is required for normal immune function
  2. Alam,Md Masud; Yang,De; Li, Xiao-Qing; Liu, Jia; Back, Timothy Carrel; Trivett, Anna; Karim, Baktiar; Barbut, Denise; Zasloff, Michael; Oppenheim, Joost J
  3. Cell Reports. 2022, Jan 11; 38(2):
  1. 2.   Recent strategies and advances in the fabrication of nano lipid carriers and their application towards brain targeting
  2. Agrawal, Mukta; Saraf, Swarnlata; Saraf, Shailendra; Dubey, Sunil Kumar; Puri,Anu; Patel, Ravish J.; Ravichandiran, V.; Murty, Upadhyayula Suryanarayana; Alexander, Amit
  3. Journal of controlled release : official journal of the Controlled Release Society. 2020, May 10; 321: 372-415.
  1. 3.   deepDR: A network-based deep learning approach to in silico drug repositioning
  2. Zeng, Xiangxiang; Zhu, Siyi; Liu, Xiangrong; Zhou, Yadi; Nussinov,Ruth; Cheng, Feixiong
  3. Bioinformatics (Oxford, England). 2019, DEC 15; 35(24): 5191-5198.
  1. 4.   Parkin interacting substrate zinc finger protein 746 is a pathological mediator in Parkinson's disease
  2. Brahmachari, Saurav; Lee, Saebom; Kim, Sangjune; Yuan, Changqing; Karuppagounder, Senthilkumar S; Ge, Preston; Shi, Rosa; Kim, Esther J; Liu, Alex; Kim, Donghoon; Quintin, Stephan; Jiang, Haisong; Kumar, Manoj; Yun, Seung Pil; Kam, Tae-In; Mao, Xiaobo; Lee, Yunjong; Swing,Debbie; Tessarollo,Lino; Ko, Han Seok; Dawson, Valina L; Dawson, Ted M
  3. Brain : a journal of neurology. 2019, AUG; 142(8): 2380-2401.
  1. 5.   Robust kinase- and age-dependent dopaminergic and norepinephrine neurodegeneration in LRRK2 G2019S transgenic mice
  2. Xiong, Yulan; Neifert, Stewart; Karuppagounder, Senthilkumar S; Liu, Qinfang; Stankowski, Jeannette N; Lee, Byoung Dae; Ko, Han Seok; Lee, Yunjong; Grima, Jonathan C; Mao, Xiaobo; Jiang, Haisong; Kang, Sung-Ung; Swing, Debbie; Iacovitti, Lorraine; Tessarollo, Lino; Dawson, Ted M; Dawson, Valina L
  3. Proceedings of the National Academy of Sciences of the United States of America. 2018, Feb 13; 115(7): 1635-1640.
  1. 6.   Structural host- microbiota interaction networks
  2. Guven-Maiorov, Emine; Tsai, Chung-Jung; Nussinov, Ruth
  3. PLOS COMPUTATIONAL BIOLOGY. 2017, OCT; 13(10):
  1. 7.   How can computation advance microbiome research?
  2. Nussinov, Ruth; Papin, Jason A.
  3. PLOS COMPUTATIONAL BIOLOGY. 2017, Sep; 13(9):
  1. 8.   Familial Mutations May Switch Conformational Preferences in alpha-Synuclein Fibrils
  2. Xu, Liang; Ma, Buyong; Nussinov, Ruth; Thompson, Damien
  3. ACS CHEMICAL NEUROSCIENCE. 2017, Apr 19; 8(4):
  1. 9.   Autophagy down regulates pro-inflammatory mediators in BV2 microglial cells and rescues both LPS and alpha-synuclein induced neuronal cell death
  2. Bussi, Claudio; Peralta Ramos, Javier Maria; Arroyo, Daniela S.; Gaviglio, Emilia A.; Ignacio Gallea, Jose; Wang, Jiming; Soledad Celej, Maria; Iribarren, Pablo
  3. SCIENTIFIC REPORTS. 2017, 2017-03-03; 7
  1. 10.   Overexpression of Parkinson's Disease-Associated Mutation LRRK2 G2019S in Mouse Forebrain Induces Behavioral Deficits and a-Synuclein Pathology
  2. Xiong, Yulan; Neifert, Stewart; Karuppagounder, Senthilkumar S; Stankowski, Jeannette N; Lee, Byoung Dae; Grima, Jonathan C; Chen, Guanxing; Ko, Han Seok; Lee, Yunjong; Swing, Debbie; Tessarollo, Lino; Dawson, Ted M; Dawson, Valina L
  3. eNeuro. 2017, Mar-Apr; 4(2):
  1. 11.   Dopaminergic Neuronal Loss, Reduced Neurite Complexity and Autophagic Abnormalities in Transgenic Mice Expressing G2019S Mutant LRRK2
  2. Ramonet, D.; Daher, J. P. L.; Lin, B. M.; Stafa, K.; Kim, J.; Banerjee, R.; Westerlund, M.; Pletnikova, O.; Glauser, L.; Yang, L. C.; Liu, Y.; Swing, D. A.; Beal, M. F.; Troncoso, J. C.; McCaffery, J. M.; Jenkins, N. A.; Copeland, N. G.; Galter, D.; Thomas, B.; Lee, M. K.; Dawson, T. M.; Dawson, V. L.; Moore, D. J.
  3. Plos One. 2011, Apr; 6(4):
  1. 12.   Synphilin-1 attenuates neuronal degeneration in the A53T alpha-synuclein transgenic mouse model
  2. Smith, W. W.; Liu, Z. H.; Liang, Y. D.; Masuda, N.; Swing, D. A.; Jenkins, N. A.; Copeland, N. G.; Troncoso, J. C.; Pletnikov, M.; Dawson, T. M.; Martin, L. J.; Moran, T. H.; Lee, M. K.; Borchelt, D. R.; Ross, C. A.
  3. Human Molecular Genetics. 2010, Jun; 19(11): 2087-2098.
  1. 13.   Targeting of gp78 for ubiquitin-mediated proteasomal degradation by Hrd1: Cross-talk between E3s in the endoplasmic reticulum
  2. Shmueli, A.; Tsai, Y. C.; Yang, M.; Braun, M. A.; Weissman, A. M.
  3. Biochemical and Biophysical Research Communications. 2009 390(3): 758-762.
  1. 14.   Gene expression profiling of substantia nigra dopamine neurons: further insights into Parkinson's disease pathology
  2. Simunovic, F.; Yi, M.; Wang, Y. L.; Macey, L.; Brown, L. T.; Krichevsky, A. M.; Andersen, S. L.; Stephens, R. M.; Benes, F. M.; Sonntag, K. C.
  3. Brain. 2009 132: 1795-1809.
  1. 15.   Potential Role of alpha-Synuclein and Metallothionein in Lead-Induced Inclusion Body Formation
  2. Zuo, P. J.; Qu, W.; Cooper, R. N.; Goyer, R. A.; Diwan, B. A.; Waalkes, M. P.
  3. Toxicological Sciences. 2009 111(1): 100-108.
  1. 16.   New structures help the modeling of toxic amyloid beta ion channels
  2. Jang, H. B.; Zheng, J.; Lal, R.; Nussinov, R.
  3. Trends in Biochemical Sciences. 2008 33(2): 91-100.
  1. 17.   Role for nanomaterial-autophagy interaction in neurodegenerative disease
  2. Stern, S. T.; Johnson, D. N.
  3. Autophagy. 2008 4(8): 1097-1100.
  1. 18.   The role of electrophoresis in disease biomarker discovery
  2. Issaq, H. J.; Veenstra, T. D.
  3. Electrophoresis. 2007, Jun; 28(12): 1980-1988.
  1. 19.   A glutathione S-transferase pi-activated prodrug causes kinase activation concurrent with S-glutathionylation of proteins
  2. Townsend, D. M.; Findlay, V. J.; Fazilev, F.; Ogle, M.; Fraser, J.; Saavedra, J. E.; Ji, X. H.; Keefer, L. K.; Tew, K. D.
  3. Molecular Pharmacology. 2006, FEB; 69(2): 501-508.
  1. 20.   Parkinson's disease alpha-synuclein transgenic mice develop neuronal mitochondrial degeneration and cell death
  2. Martin, L. J.; Pan, Y.; Price, A. C.; Sterling, W.; Copeland, N. G.; Jenkins, N. A.; Price, D. L.; Lee, M. K.
  3. Journal of Neuroscience. 2006, JAN 4; 26(1): 41-50.
  1. 21.   Proteome analysis of DNA damage-induced neuronal death using high throughput mass spectrometry
  2. Johnson, M. D.; Yu, L. R.; Conrads, T. P.; Kinoshita, Y.; Uo, T.; Matthews, J. D.; Lee, S. W.; Smith, R. D.; Veenstra, T. D.; Morrison, R. S.
  3. Journal of Biological Chemistry. 2004 279(25): 26685-26697.
  1. 22.   Human neurodegenerative disease modeling using Drosophila
  2. Bonini, N. M.; Fortini, M. E.
  3. Annual Review of Neuroscience. 2003 26: 627-656.
  1. 23.   Constitutive expression and localization of the major drug metabolizing enzyme, cytochrome P4502D in human brain
  2. Chinta, S. J.; Pai, H. V.; Upadhya, S. C.; Boyd, M. R.; Ravindranath, V.
  3. Molecular Brain Research. 2002 103(1-2): 49-61.
  1. 24.   Protein thiol oxidation by haloperidol results in inhibition of mitochondrial complex I in brain regions: comparison with atypical antipsychotics
  2. Balijepalli, S.; Kenchappa, R. S.; Boyd, M. R.; Ravindranath, V.
  3. Neurochemistry International. 2001 38(5): 425-435.
  1. 25.   Effect of thiol modification on brain mitochondrial complex I activity
  2. Balijepalli, S.; Annepu, J.; Boyd, M. R.; Ravindranath, V.
  3. Neuroscience Letters. 1999 272(3): 203-206.
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