TY - JOUR
T1 - Rational design and validation of an anti-protein kinase C active-state specific antibody based on conformational changes
AU - Pena, Darlene Aparecida
AU - De Andrade, Victor Piana
AU - Silva, Gabriela Ávila Fernandes
AU - Neves, José Ivanildo
AU - Oliveira, Paulo Sergio Lopes De
AU - Alves, Maria Julia Manso
AU - Devi, Lakshmi A.
AU - Schechtman, Deborah
N1 - Funding Information:
This research was funded by FAPESP doctoral fellowships 2011/10321-3, 2014/16037.3 to DAP and a scientific initiation fellowship 2012/17279-5 to GAFS. FAPESP 2012/24154-4 CNPQ 473665/2012-3, grants to DS, CAPES (Coordenação de Aperfeiçoamento de Pessoal de Nível Superior) grant, 88881.0622072014-01, to DS and LAD and an NIH grant, NS026880 to LAD. The authors thank Dr. Walter Colli for discussions and Dr. Letícia Labriola, Dr. Bettina Malnic and Ancely Ferreira dos Santos for cells and Dr. Suely L. Gomes and PKC lab (www.PKClab. org) for plasmids, Achla Gupta for helping set up the SK-N-SH assays and Célia L. Braga and Maria Luiza Baldini for technical assistance.
PY - 2016/2/25
Y1 - 2016/2/25
N2 - Protein kinase C (PKC) plays a regulatory role in key pathways in cancer. However, since phosphorylation is a step for classical PKC (cPKC) maturation and does not correlate with activation, there is a lack of tools to detect active PKC in tissue samples. Here, a structure-based rational approach was used to select a peptide to generate an antibody that distinguishes active from inactive cPKC. A peptide conserved in all cPKCs, C2Cat, was chosen since modeling studies based on a crystal structure of PKCβ showed that it is localized at the interface between the C2 and catalytic domains of cPKCs in an inactive kinase. Anti-C2Cat recognizes active cPKCs at least two-fold better than inactive kinase in ELISA and immunoprecipitation assays, and detects the temporal dynamics of cPKC activation upon receptor or phorbol stimulation. Furthermore, the antibody is able to detect active PKC in human tissue. Higher levels of active cPKC were observed in the more aggressive triple negative breast cancer tumors as compared to the less aggressive estrogen receptor positive tumors. Thus, this antibody represents a reliable, hitherto unavailable and a valuable tool to study PKC activation in cells and tissues. Similar structure-based rational design strategies can be broadly applied to obtain active-state specific antibodies for other signal transduction molecules.
AB - Protein kinase C (PKC) plays a regulatory role in key pathways in cancer. However, since phosphorylation is a step for classical PKC (cPKC) maturation and does not correlate with activation, there is a lack of tools to detect active PKC in tissue samples. Here, a structure-based rational approach was used to select a peptide to generate an antibody that distinguishes active from inactive cPKC. A peptide conserved in all cPKCs, C2Cat, was chosen since modeling studies based on a crystal structure of PKCβ showed that it is localized at the interface between the C2 and catalytic domains of cPKCs in an inactive kinase. Anti-C2Cat recognizes active cPKCs at least two-fold better than inactive kinase in ELISA and immunoprecipitation assays, and detects the temporal dynamics of cPKC activation upon receptor or phorbol stimulation. Furthermore, the antibody is able to detect active PKC in human tissue. Higher levels of active cPKC were observed in the more aggressive triple negative breast cancer tumors as compared to the less aggressive estrogen receptor positive tumors. Thus, this antibody represents a reliable, hitherto unavailable and a valuable tool to study PKC activation in cells and tissues. Similar structure-based rational design strategies can be broadly applied to obtain active-state specific antibodies for other signal transduction molecules.
UR - https://www.scopus.com/pages/publications/84959441215
U2 - 10.1038/srep22114
DO - 10.1038/srep22114
M3 - Article
C2 - 26911897
AN - SCOPUS:84959441215
SN - 2045-2322
VL - 6
JO - Scientific Reports
JF - Scientific Reports
M1 - 22114
ER -