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2020
Fiore VF, Krajnc M, Quiroz FGarcia, Levorse J, H Pasolli A, Shvartsman SY, et al. Mechanics of a multilayer epithelium instruct tumour architecture and function. Nature. 2020 ;585(7825):433-439.
Huang X, Duddy OP, Silpe JE, Paczkowski JE, Cong J, Henke BR, et al. Mechanism underlying autoinducer recognition in the DPO-VqmA quorum-sensing pathway. J Biol Chem. 2020 ;295(10):2916-2931.
Statt A, Casademunt H, Brangwynne CP, Panagiotopoulos AZ. Model for disordered proteins with strongly sequence-dependent liquid phase behavior. J Chem Phys. 2020 ;152(7):075101.
King MR, Petry S. Phase separation of TPX2 enhances and spatially coordinates microtubule nucleation. Nat Commun. 2020 ;11(1):270.
Cao WXi, Kabelitz S, Gupta M, Yeung E, Lin S, Rammelt C, et al. Precise Temporal Regulation of Post-transcriptional Repressors Is Required for an Orderly Drosophila Maternal-to-Zygotic Transition. Cell Rep. 2020 ;31(12):107783.
Fiore VF, Krajnc M, Quiroz FGarcia, Levorse J, H Pasolli A, Shvartsman SY, et al. Publisher Correction: Mechanics of a multilayer epithelium instruct tumour architecture and function. Nature. 2020 ;586(7827):E9.
Pereira TD, Shaevitz JW, Murthy M. Quantifying behavior to understand the brain. Nat Neurosci. 2020 ;23(12):1537-1549.
Pan Z, Nunes JK, Stone HA. Regime Map and Triple Point in Selective Withdrawal. Phys Rev Lett. 2020 ;125(26):264502.
Omenn GS, Lane L, Overall CM, Cristea IM, Corrales FJ, Lindskog C, et al. Research on the Human Proteome Reaches a Major Milestone: >90% of Predicted Human Proteins Now Credibly Detected, According to the HUPO Human Proteome Project. J Proteome Res. 2020 ;19(12):4735-4746.
Omenn GS, Lane L, Overall CM, Cristea IM, Corrales FJ, Lindskog C, et al. Research on the Human Proteome Reaches a Major Milestone: >90% of Predicted Human Proteins Now Credibly Detected, According to the HUPO Human Proteome Project. J Proteome Res. 2020 ;19(12):4735-4746.
Orange DE, Yao V, Sawicka K, Fak J, Frank MO, Parveen S, et al. RNA Identification of PRIME Cells Predicting Rheumatoid Arthritis Flares. N Engl J Med. 2020 ;383(3):218-228.
Letizia AG, Ramos I, Obla A, Goforth C, Weir DL, Ge Y, et al. SARS-CoV-2 Transmission among Marine Recruits during Quarantine. N Engl J Med. 2020 ;383(25):2407-2416.
Letizia AG, Ramos I, Obla A, Goforth C, Weir DL, Ge Y, et al. SARS-CoV-2 Transmission among Marine Recruits during Quarantine. N Engl J Med. 2020 ;383(25):2407-2416.
Roussarie J-P, Yao V, Rodriguez-Rodriguez P, Oughtred R, Rust J, Plautz Z, et al. Selective Neuronal Vulnerability in Alzheimer's Disease: A Network-Based Analysis. Neuron. 2020 ;107(5):821-835.e12.
Ramanathan HN, Zhang S, Douam F, Mar KB, Chang J, Yang PL, et al. A Sensitive Yellow Fever Virus Entry Reporter Identifies Valosin-Containing Protein (VCP/p97) as an Essential Host Factor for Flavivirus Uncoating. mBio. 2020 ;11(2).
Doane MP, Morris MM, Papudeshi B, Allen L, Pande D, Haggerty JM, et al. The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge. Microbiome. 2020 ;8(1):93.
Doane MP, Morris MM, Papudeshi B, Allen L, Pande D, Haggerty JM, et al. The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge. Microbiome. 2020 ;8(1):93.
Doane MP, Morris MM, Papudeshi B, Allen L, Pande D, Haggerty JM, et al. The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge. Microbiome. 2020 ;8(1):93.
Doane MP, Morris MM, Papudeshi B, Allen L, Pande D, Haggerty JM, et al. The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge. Microbiome. 2020 ;8(1):93.
Doane MP, Morris MM, Papudeshi B, Allen L, Pande D, Haggerty JM, et al. The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge. Microbiome. 2020 ;8(1):93.
Doane MP, Morris MM, Papudeshi B, Allen L, Pande D, Haggerty JM, et al. The skin microbiome of elasmobranchs follows phylosymbiosis, but in teleost fishes, the microbiomes converge. Microbiome. 2020 ;8(1):93.
Luongo TS, Eller JM, Lu M-J, Niere M, Raith F, Perry C, et al. SLC25A51 is a mammalian mitochondrial NAD transporter. Nature. 2020 ;588(7836):174-179.
Maturana CJ, Verpeut JL, Pisano TJ, Dhanerawala ZM, Esteves A, Enquist LW, et al. Small Alphaherpesvirus Latency-Associated Promoters Drive Efficient and Long-Term Transgene Expression in the CNS. Mol Ther Methods Clin Dev. 2020 ;17:843-857.
Akkina R, Barber DL, Bility MT, Bissig K-D, Burwitz BJ, Eichelberg K, et al. Small Animal Models for Human Immunodeficiency Virus (HIV), Hepatitis B, and Tuberculosis: Proceedings of an NIAID Workshop. Curr HIV Res. 2020 ;18(1):19-28.
Akkina R, Barber DL, Bility MT, Bissig K-D, Burwitz BJ, Eichelberg K, et al. Small Animal Models for Human Immunodeficiency Virus (HIV), Hepatitis B, and Tuberculosis: Proceedings of an NIAID Workshop. Curr HIV Res. 2020 ;18(1):19-28.