Literature DB >> 25238780

Endogenous animal toxin-like human β-defensin 2 inhibits own K(+) channels through interaction with channel extracellular pore region.

Weishan Yang1, Jing Feng, Fang Xiang, Zili Xie, Guoyi Zhang, Jean-Marc Sabatier, Zhijian Cao, Wenxin Li, Zongyun Chen, Yingliang Wu.   

Abstract

Human potassium channels are widely inhibited by peptide toxins from venomous animals. However, no human endogenous peptide inhibitor has been discovered so far. In this study, we demonstrate for the first time using electrophysiological techniques, that endogenous human β-defensin 2 (hBD2) is able to selectively and dose-dependently inhibit the human voltage-gated Kv1.3 channel at picomolar peptide concentration. The co-immunoprecipitation assays further supported the selective binding of hBD2 to Kv1.3 channel. Using mutagenesis experiments, we found that the outer pore domain of Kv1.3 channel was the binding site of hBD2, which is similar to the interacting site of Kv1.3 channel recognized by animal toxin inhibitors. The hBD2 was able to suppress IL-2 production through inhibition of Kv1.3 channel currents in human Jurkat cells, which was further confirmed by the lack of hBD2 activity on IL-2 production after Kv1.3 knockdown in these cells. More interestingly, hBD2 was also found to efficiently inhibit Kv1.3 channel currents and suppress IL-2 production in both human primary CD3(+) T cells and peripheral mononuclear cells from either healthy donors or psoriasis patients. Our findings not only evidenced hBD2 as the first characterized endogenous peptide inhibitor of human potassium channels, but also paved a promising avenue to investigate newly discovered function of hBD2 as Kv1.3 channel inhibitor in the immune system and other fields.

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Year:  2014        PMID: 25238780     DOI: 10.1007/s00018-014-1715-z

Source DB:  PubMed          Journal:  Cell Mol Life Sci        ISSN: 1420-682X            Impact factor:   9.261


  28 in total

Review 1.  Diversity of folds in animal toxins acting on ion channels.

Authors:  Stéphanie Mouhat; Besma Jouirou; Amor Mosbah; Michel De Waard; Jean-Marc Sabatier
Journal:  Biochem J       Date:  2004-03-15       Impact factor: 3.857

2.  Hg1, novel peptide inhibitor specific for Kv1.3 channels from first scorpion Kunitz-type potassium channel toxin family.

Authors:  Zong-Yun Chen; You-Tian Hu; Wei-Shan Yang; Ya-Wen He; Jing Feng; Bin Wang; Rui-Ming Zhao; Jiu-Ping Ding; Zhi-Jian Cao; Wen-Xin Li; Ying-Liang Wu
Journal:  J Biol Chem       Date:  2012-02-21       Impact factor: 5.157

3.  A designer ligand specific for Kv1.3 channels from a scorpion neurotoxin-based library.

Authors:  Zoltan Takacs; Megan Toups; Astrid Kollewe; Erik Johnson; Luis G Cuello; Gregory Driessens; Matthew Biancalana; Akiko Koide; Cristiano G Ponte; Eduardo Perozo; Thomas F Gajewski; Guilherme Suarez-Kurtz; Shohei Koide; Steve A N Goldstein
Journal:  Proc Natl Acad Sci U S A       Date:  2009-12-10       Impact factor: 11.205

4.  Developmental switch of the expression of ion channels in human dendritic cells.

Authors:  Emese Zsiros; Katalin Kis-Toth; Peter Hajdu; Rezso Gaspar; Joanna Bielanska; Antonio Felipe; Eva Rajnavolgyi; Gyorgy Panyi
Journal:  J Immunol       Date:  2009-09-11       Impact factor: 5.422

5.  Human β-defensin-2 enhances IFN-γ and IL-10 production and suppresses IL-17 production in T cells.

Authors:  Naoko Kanda; Masahiro Kamata; Yayoi Tada; Takeko Ishikawa; Shinichi Sato; Shinichi Watanabe
Journal:  J Leukoc Biol       Date:  2011-03-02       Impact factor: 4.962

6.  A voltage-gated potassium channel in human T lymphocytes.

Authors:  M D Cahalan; K G Chandy; T E DeCoursey; S Gupta
Journal:  J Physiol       Date:  1985-01       Impact factor: 5.182

7.  Kv1.3 channels are a therapeutic target for T cell-mediated autoimmune diseases.

Authors:  Christine Beeton; Heike Wulff; Nathan E Standifer; Philippe Azam; Katherine M Mullen; Michael W Pennington; Aaron Kolski-Andreaco; Eric Wei; Alexandra Grino; Debra R Counts; Ping H Wang; Christine J LeeHealey; Brian S Andrews; Ananthakrishnan Sankaranarayanan; Daniel Homerick; Werner W Roeck; Jamshid Tehranzadeh; Kimber L Stanhope; Pavel Zimin; Peter J Havel; Stephen Griffey; Hans-Guenther Knaus; Gerald T Nepom; George A Gutman; Peter A Calabresi; K George Chandy
Journal:  Proc Natl Acad Sci U S A       Date:  2006-11-06       Impact factor: 11.205

8.  Kv1.3 is the exclusive voltage-gated K+ channel of platelets and megakaryocytes: roles in membrane potential, Ca2+ signalling and platelet count.

Authors:  Conor McCloskey; Sarah Jones; Stefan Amisten; Roger T Snowden; Leonard K Kaczmarek; David Erlinge; Alison H Goodall; Ian D Forsythe; Martyn P Mahaut-Smith
Journal:  J Physiol       Date:  2010-03-22       Impact factor: 5.182

9.  Structural basis of a potent peptide inhibitor designed for Kv1.3 channel, a therapeutic target of autoimmune disease.

Authors:  Song Han; Hong Yi; Shi-Jin Yin; Zong-Yun Chen; Hui Liu; Zhi-Jian Cao; Ying-Liang Wu; Wen-Xin Li
Journal:  J Biol Chem       Date:  2008-05-14       Impact factor: 5.157

10.  Structural and functional diversity of acidic scorpion potassium channel toxins.

Authors:  Zong-Yun Chen; Dan-Yun Zeng; You-Tian Hu; Ya-Wen He; Na Pan; Jiu-Ping Ding; Zhi-Jian Cao; Mai-Li Liu; Wen-Xin Li; Hong Yi; Ling Jiang; Ying-Liang Wu
Journal:  PLoS One       Date:  2012-04-12       Impact factor: 3.240

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  13 in total

1.  Scorpion Potassium Channel-blocking Defensin Highlights a Functional Link with Neurotoxin.

Authors:  Lanxia Meng; Zili Xie; Qian Zhang; Yang Li; Fan Yang; Zongyun Chen; Wenxin Li; Zhijian Cao; Yingliang Wu
Journal:  J Biol Chem       Date:  2016-01-27       Impact factor: 5.157

2.  Kv Channel S1-S2 Linker Working as a Binding Site of Human β-Defensin 2 for Channel Activation Modulation.

Authors:  Jing Feng; Weishan Yang; Zili Xie; Fang Xiang; Zhijian Cao; Wenxin Li; Hongzhen Hu; Zongyun Chen; Yingliang Wu
Journal:  J Biol Chem       Date:  2015-05-05       Impact factor: 5.157

Review 3.  Why do we study animal toxins?

Authors:  Yun Zhang
Journal:  Dongwuxue Yanjiu       Date:  2015-07-18

4.  Maize EMBRYO SAC family peptides interact differentially with pollen tubes and fungal cells.

Authors:  Mayada Woriedh; Rainer Merkl; Thomas Dresselhaus
Journal:  J Exp Bot       Date:  2015-06-12       Impact factor: 6.992

5.  Plectasin, first animal toxin-like fungal defensin blocking potassium channels through recognizing channel pore region.

Authors:  Fang Xiang; Zili Xie; Jing Feng; Weishan Yang; Zhijian Cao; Wenxin Li; Zongyun Chen; Yingliang Wu
Journal:  Toxins (Basel)       Date:  2015-01-05       Impact factor: 4.546

6.  New Disulfide-Stabilized Fold Provides Sea Anemone Peptide to Exhibit Both Antimicrobial and TRPA1 Potentiating Properties.

Authors:  Yulia A Logashina; Runar Gjerp Solstad; Konstantin S Mineev; Yuliya V Korolkova; Irina V Mosharova; Igor A Dyachenko; Victor A Palikov; Yulia A Palikova; Arkadii N Murashev; Alexander S Arseniev; Sergey A Kozlov; Klara Stensvåg; Tor Haug; Yaroslav A Andreev
Journal:  Toxins (Basel)       Date:  2017-04-29       Impact factor: 4.546

7.  Increased intracellular activity of MP1102 and NZ2114 against Staphylococcus aureus in vitro and in vivo.

Authors:  Xiao Wang; Xiumin Wang; Da Teng; Ruoyu Mao; Ya Hao; Na Yang; Zhanzhan Li; Jianhua Wang
Journal:  Sci Rep       Date:  2018-03-09       Impact factor: 4.379

8.  Mouse β-Defensin 3, A Defensin Inhibitor of Both Its Endogenous and Exogenous Potassium Channels.

Authors:  Yaoyun Zhang; Yonghui Zhao; Hongyue Liu; Weiwei Yu; Fan Yang; Wenhua Li; Zhijian Cao; Yingliang Wu
Journal:  Molecules       Date:  2018-06-20       Impact factor: 4.411

Review 9.  The Dichotomous Responses Driven by β-Defensins.

Authors:  Jennifer R Shelley; Donald J Davidson; Julia R Dorin
Journal:  Front Immunol       Date:  2020-06-12       Impact factor: 7.561

10.  Construction of Bacillus subtilis strain engineered for expression of porcine β-defensin-2/cecropin P1 fusion antimicrobial peptides and its growth-promoting effect and antimicrobial activity.

Authors:  Jian Xu; Fei Zhong; Yonghong Zhang; Jianlou Zhang; Shanshan Huo; Hongyu Lin; Liyue Wang; Dan Cui; Xiujin Li
Journal:  Asian-Australas J Anim Sci       Date:  2016-06-30       Impact factor: 2.509

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