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1
Competing signal peptides hold the key
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Artigo
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Competing signal peptides hold the key

Hines, Pamela J. Funk, Michael

Science (American Association for the Advancement of Science), 2021-04, Vol.372 (6538), p.141-141 [Periódico revisado por pares]

American Association for the Advancement of Science

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2
C-end rule peptides mediate neuropilin-1-dependent cell, vascular, and tissue penetration
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C-end rule peptides mediate neuropilin-1-dependent cell, vascular, and tissue penetration

Teesalu, Tambet ; Sugahara, Kazuki N ; Kotamraju, Venkata Ramana ; Ruoslahti, Erkki

Proceedings of the National Academy of Sciences - PNAS, 2009-09, Vol.106 (38), p.16157-16162 [Periódico revisado por pares]

United States: National Academy of Sciences

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3
Method to generate highly stable D-amino acid analogs of bioactive helical peptides using a mirror image of the entire PDB
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Method to generate highly stable D-amino acid analogs of bioactive helical peptides using a mirror image of the entire PDB

Garton, Michael ; Nim, Satra ; Stone, Tracy A. ; Wang, Kyle Ethan ; Deber, Charles M. ; Kim, Philip M.

Proceedings of the National Academy of Sciences - PNAS, 2018-02, Vol.115 (7), p.1505-1510 [Periódico revisado por pares]

United States: National Academy of Sciences

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4
Imaginal Discs Secrete Insulin-Like Peptide 8 to Mediate Plasticity of Growth and Maturation
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Imaginal Discs Secrete Insulin-Like Peptide 8 to Mediate Plasticity of Growth and Maturation

Garelli, Andres ; Gontijo, Alisson M. ; Miguela, Veronica ; Caparros, Esther ; Dominguez, Maria

Science (American Association for the Advancement of Science), 2012-05, Vol.336 (6081), p.579-582 [Periódico revisado por pares]

Washington, DC: American Association for the Advancement of Science

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5
Antimicrobial peptides: Application informed by evolution
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Artigo
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Antimicrobial peptides: Application informed by evolution

Lazzaro, Brian P ; Zasloff, Michael ; Rolff, Jens

Science (American Association for the Advancement of Science), 2020-05, Vol.368 (6490) [Periódico revisado por pares]

United States: The American Association for the Advancement of Science

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6
De novo design of a biologically active amyloid
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De novo design of a biologically active amyloid

Gallardo, Rodrigo ; Ramakers, Meine ; De Smet, Frederik ; Claes, Filip ; Khodaparast, Ladan ; Khodaparast, Laleh ; Couceiro, José R. ; Langenberg, Tobias ; Siemons, Maxime ; Nyström, Sofie ; Young, Laurence J. ; Laine, Romain F. ; Young, Lydia ; Radaelli, Enrico ; Benilova, Iryna ; Kumar, Manoj ; Staes, An ; Desager, Matyas ; Beerens, Manu ; Vandervoort, Petra ; Luttun, Aernout ; Gevaert, Kris ; Bormans, Guy ; Dewerchin, Mieke ; Van Eldere, Johan ; Carmeliet, Peter ; Vande Velde, Greetje ; Verfaillie, Catherine ; Kaminski, Clemens F. ; De Strooper, Bart ; Hammarström, Per ; Peter, K. ; Nilsson, R. ; Serpell, Louise ; Schymkowitz, Joost ; Rousseau, Frederic

Science (American Association for the Advancement of Science), 2016-11, Vol.354 (6313), p.720-720 [Periódico revisado por pares]

United States: American Association for the Advancement of Science

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7
The amphibian antimicrobial peptide uperin 3.5 is a cross-α/cross-β chameleon functional amyloid
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The amphibian antimicrobial peptide uperin 3.5 is a cross-α/cross-β chameleon functional amyloid

Salinas, Nir ; Tayeb-Fligelman, Einav ; Sammito, Massimo D ; Bloch, Daniel ; Jelinek, Raz ; Noy, Dror ; Usón, Isabel ; Landau, Meytal

Proceedings of the National Academy of Sciences - PNAS, 2021-01, Vol.118 (3) [Periódico revisado por pares]

United States: National Academy of Sciences

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8
Stapled α−helical peptide drug development: A potent dual inhibitor of MDM2 and MDMX for p53-dependent cancer therapy
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Artigo
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Stapled α−helical peptide drug development: A potent dual inhibitor of MDM2 and MDMX for p53-dependent cancer therapy

Chang, Yong S ; Graves, Bradford ; Guerlavais, Vincent ; Tovar, Christian ; Packman, Kathryn ; To, Kwong-Him ; Olson, Karen A ; Kesavan, Kamala ; Gangurde, Pranoti ; Mukherjee, Aditi ; Baker, Theresa ; Darlak, Krzysztof ; Elkin, Carl ; Filipovic, Zoran ; Qureshi, Farooq Z ; Cai, Hongliang ; Berry, Pamela ; Feyfant, Eric ; Shi, Xiangguo E ; Horstick, James ; Annis, D Allen ; Manning, Anthony M ; Fotouhi, Nader ; Nash, Huw ; Vassilev, Lyubomir T ; Sawyer, Tomi K

Proceedings of the National Academy of Sciences - PNAS, 2013-09, Vol.110 (36), p.E3445-E3454 [Periódico revisado por pares]

United States: National Academy of Sciences

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9
Arginine-rich cell-penetrating peptides induce membrane multilamellarity and subsequently enter via formation of a fusion pore
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Arginine-rich cell-penetrating peptides induce membrane multilamellarity and subsequently enter via formation of a fusion pore

Allolio, Christoph ; Magarkar, Aniket ; Jurkiewicz, Piotr ; Baxová, Katarína ; Javanainen, Matti ; Mason, Philip E. ; Šachl, Radek ; Cebecauer, Marek ; Hof, Martin ; Horinek, Dominik ; Heinz, Veronika ; Rachel, Reinhard ; Ziegler, Christine M. ; Schröfel, Adam ; Jungwirth, Pavel

Proceedings of the National Academy of Sciences - PNAS, 2018-11, Vol.115 (47), p.11923-11928 [Periódico revisado por pares]

United States: National Academy of Sciences

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10
Two distinct amphipathic peptide antibiotics with systemic efficacy
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Artigo
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Two distinct amphipathic peptide antibiotics with systemic efficacy

Narayana, Jayaram Lakshmaiah ; Mishra, Biswajit ; Lushnikova, Tamara ; Wu, Qianhui ; Chhonker, Yashpal S. ; Zhang, Yingxia ; Zarena, D. ; Salnikov, Evgeniy S. ; Dang, Xiangli ; Wang, Fangyu ; Murphy, Caitlin ; Foster, Kirk W. ; Gorantla, Santhi ; Bechinger, Burkhard ; Murry, Daryl J. ; Wang, Guangshun

Proceedings of the National Academy of Sciences - PNAS, 2020-08, Vol.117 (32), p.19446-19454 [Periódico revisado por pares]

United States: National Academy of Sciences

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