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Correction
eNOS-derived nitric oxide regulates endothelial barrier function through VE-cadherin and Rho GTPases
Annarita Di Lorenzo, Michelle I. Lin, Takahisa Murata, Shira Landskroner-Eiger, Michael Schleicher, Milankumar Kothiya, Yasuko Iwakiri, Jun Yu, Paul L. Huang, William C. Sessa
Journal of Cell Science 2014 127: 2120 doi: 10.1242/jcs.153601
Annarita Di Lorenzo
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Michelle I. Lin
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Takahisa Murata
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Shira Landskroner-Eiger
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Michael Schleicher
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Milankumar Kothiya
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Yasuko Iwakiri
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Jun Yu
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Paul L. Huang
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William C. Sessa
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There was an error published in J. Cell Sci. 126, 5541-5552.

Both Annarita Di Lorenzo and William C. Sessa should have been designated as authors for correspondence. They can be contacted at and2039{at}med.cornell.edu and william.sessa{at}yale.edu, respectively.

We apologise to the readers for any confusion that this error might have caused.

  • © 2014. Published by The Company of Biologists Ltd
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Correction
eNOS-derived nitric oxide regulates endothelial barrier function through VE-cadherin and Rho GTPases
Annarita Di Lorenzo, Michelle I. Lin, Takahisa Murata, Shira Landskroner-Eiger, Michael Schleicher, Milankumar Kothiya, Yasuko Iwakiri, Jun Yu, Paul L. Huang, William C. Sessa
Journal of Cell Science 2014 127: 2120 doi: 10.1242/jcs.153601
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Correction
eNOS-derived nitric oxide regulates endothelial barrier function through VE-cadherin and Rho GTPases
Annarita Di Lorenzo, Michelle I. Lin, Takahisa Murata, Shira Landskroner-Eiger, Michael Schleicher, Milankumar Kothiya, Yasuko Iwakiri, Jun Yu, Paul L. Huang, William C. Sessa
Journal of Cell Science 2014 127: 2120 doi: 10.1242/jcs.153601

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