Mol. Cells 2010; 29(6): 611-616
Published online May 20, 2010
https://doi.org/10.1007/s10059-010-0076-1
© The Korean Society for Molecular and Cellular Biology
Correspondence to : *Correspondence: trhahn@khu.ac.kr
It is important to solubilize acetone-precipitated proteins before isoelectric focusing (IEF) to achieve high resolution 2-DE gels. To resolve the maximum possible number of plant protein spots, we developed an improved solubilization buffer for plant proteins. We demonstrated that the resolution of 2-DE gels increased dramatically as the concentration of Tris-base increased, with maximum solubilization obtained at 200 mM Tris-base (Ly200T). The Ly200T buffer was more effective than the commonly used solubilization buffer containing 40 mM Tris at solubilizing acetone-precipitated plant proteins. Use of the Ly200T buffer to solubilize proteins resulted in an increase in intensity of approximately 30% of plant protein spots in the larger-than-40 kDa region of the gel. The Ly200T buffer also improved the resolution of abundant and basic proteins. Thus, the Ly200T buffer can be used to achieve greater resolution of protein spots in plant proteomics research.
Keywords 2-DE, basic proteins, plant proteins, protein solubilization, tris-base
Mol. Cells 2010; 29(6): 611-616
Published online June 30, 2010 https://doi.org/10.1007/s10059-010-0076-1
Copyright © The Korean Society for Molecular and Cellular Biology.
Jin-Hwan Cho1, Man-Ho Cho1, Heeyoun Hwang, Seong Hee Bhoo, and Tae-Ryong Hahn*
Graduate School of Biotechnology and Plant Metabolism Research Center, Kyung Hee University, Suwon 446-701, Korea, 1 These authors contributed equally to this work.
Correspondence to:*Correspondence: trhahn@khu.ac.kr
It is important to solubilize acetone-precipitated proteins before isoelectric focusing (IEF) to achieve high resolution 2-DE gels. To resolve the maximum possible number of plant protein spots, we developed an improved solubilization buffer for plant proteins. We demonstrated that the resolution of 2-DE gels increased dramatically as the concentration of Tris-base increased, with maximum solubilization obtained at 200 mM Tris-base (Ly200T). The Ly200T buffer was more effective than the commonly used solubilization buffer containing 40 mM Tris at solubilizing acetone-precipitated plant proteins. Use of the Ly200T buffer to solubilize proteins resulted in an increase in intensity of approximately 30% of plant protein spots in the larger-than-40 kDa region of the gel. The Ly200T buffer also improved the resolution of abundant and basic proteins. Thus, the Ly200T buffer can be used to achieve greater resolution of protein spots in plant proteomics research.
Keywords: 2-DE, basic proteins, plant proteins, protein solubilization, tris-base
Bo Li, John C. Reed , Hyung-Ryong Kim*, and Han-Jung Chae*
Mol. Cells 2012; 34(1): 15-23 https://doi.org/10.1007/s10059-012-0001-xRi-Zhong Zeng, Han Geun Kim, Na Ra Kim, Hae Young Lee, Bong Jun Jung, Mi Yeon Ko,
Seung Yeon Lee, and Dae Kyun Chung*
Jung Hee Shim, Sun A Cho, Min Ji Seo, Jung Hee Kim, Na Kyung Ryu, Kyung Hyun Yoo,Moon Hee Yang, Seyoon Kim, Young Yil Bahk*, and Jong Hoon Park*
Mol. Cells 2010; 29(3): 239-244 https://doi.org/10.1007/s10059-010-0022-2