Cargando…

Rap1A, Rap1B, and β-Adrenergic Signaling in Autologous HCT: A Randomized Controlled Trial of Propranolol

Successful hematopoietic cell transplantation (HCT) depends on rapid engraftment of the progenitor and stem cells that will reestablish hematopoiesis. Rap1A and Rap1B are two closely related small GTPases that may affect platelet and neutrophil engraftment during HCT through their roles in cell adhe...

Descripción completa

Detalles Bibliográficos
Autores principales: Johnson, Alexander K., Lorimer, Ellen L., Szabo, Aniko, Wu, Ruizhe, Shah, Nirav N., D’Souza, Anita, Chhabra, Saurabh, Hamadani, Mehdi, Dhakal, Binod, Hari, Parameswaran, Rao, Sridhar, Carlson, Karen, Williams, Carol L., Knight, Jennifer M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: YJBM 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8961707/
https://www.ncbi.nlm.nih.gov/pubmed/35370486
_version_ 1784677655566614528
author Johnson, Alexander K.
Lorimer, Ellen L.
Szabo, Aniko
Wu, Ruizhe
Shah, Nirav N.
D’Souza, Anita
Chhabra, Saurabh
Hamadani, Mehdi
Dhakal, Binod
Hari, Parameswaran
Rao, Sridhar
Carlson, Karen
Williams, Carol L.
Knight, Jennifer M.
author_facet Johnson, Alexander K.
Lorimer, Ellen L.
Szabo, Aniko
Wu, Ruizhe
Shah, Nirav N.
D’Souza, Anita
Chhabra, Saurabh
Hamadani, Mehdi
Dhakal, Binod
Hari, Parameswaran
Rao, Sridhar
Carlson, Karen
Williams, Carol L.
Knight, Jennifer M.
author_sort Johnson, Alexander K.
collection PubMed
description Successful hematopoietic cell transplantation (HCT) depends on rapid engraftment of the progenitor and stem cells that will reestablish hematopoiesis. Rap1A and Rap1B are two closely related small GTPases that may affect platelet and neutrophil engraftment during HCT through their roles in cell adhesion and migration. β-adrenergic signaling may regulate the participation of Rap1A and Rap1B in engraftment through their inhibition or activation. We conducted a correlative study of a randomized controlled trial evaluating the effects of the nonselective β-antagonist propranolol on expression and prenylation of Rap1A and Rap1B during neutrophil and platelet engraftment in 25 individuals receiving an autologous HCT for multiple myeloma. Propranolol was administered for 1 week prior to and 4 weeks following HCT. Blood was collected 7 days (baseline) and 2 days (Day -2) before HCT, and 28 days after HCT (Day +28). Circulating polymorphonuclear cells (PMNC) were isolated and analyzed via immunoblotting to determine levels of prenylated and total Rap1A versus Rap1B. Twelve participants were randomized to the intervention and 13 to the control. Rap1A expression significantly correlated with Rap1B expression. Rap1B expression significantly correlated with slower platelet engraftment; however, this association was not observed in the propranolol-treated group. There were no significant associations between neutrophil engraftment and Rap1A or Rap1B expression. Post hoc exploratory analyses did not reveal an association between social health variables and Rap1A or Rap1B expression. This study identifies a greater regulatory role for Rap1B than Rap1A in platelet engraftment and suggests a possible role for β-adrenergic signaling in modulating Rap1B function during HCT.
format Online
Article
Text
id pubmed-8961707
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher YJBM
record_format MEDLINE/PubMed
spelling pubmed-89617072022-03-31 Rap1A, Rap1B, and β-Adrenergic Signaling in Autologous HCT: A Randomized Controlled Trial of Propranolol Johnson, Alexander K. Lorimer, Ellen L. Szabo, Aniko Wu, Ruizhe Shah, Nirav N. D’Souza, Anita Chhabra, Saurabh Hamadani, Mehdi Dhakal, Binod Hari, Parameswaran Rao, Sridhar Carlson, Karen Williams, Carol L. Knight, Jennifer M. Yale J Biol Med Original Contribution Successful hematopoietic cell transplantation (HCT) depends on rapid engraftment of the progenitor and stem cells that will reestablish hematopoiesis. Rap1A and Rap1B are two closely related small GTPases that may affect platelet and neutrophil engraftment during HCT through their roles in cell adhesion and migration. β-adrenergic signaling may regulate the participation of Rap1A and Rap1B in engraftment through their inhibition or activation. We conducted a correlative study of a randomized controlled trial evaluating the effects of the nonselective β-antagonist propranolol on expression and prenylation of Rap1A and Rap1B during neutrophil and platelet engraftment in 25 individuals receiving an autologous HCT for multiple myeloma. Propranolol was administered for 1 week prior to and 4 weeks following HCT. Blood was collected 7 days (baseline) and 2 days (Day -2) before HCT, and 28 days after HCT (Day +28). Circulating polymorphonuclear cells (PMNC) were isolated and analyzed via immunoblotting to determine levels of prenylated and total Rap1A versus Rap1B. Twelve participants were randomized to the intervention and 13 to the control. Rap1A expression significantly correlated with Rap1B expression. Rap1B expression significantly correlated with slower platelet engraftment; however, this association was not observed in the propranolol-treated group. There were no significant associations between neutrophil engraftment and Rap1A or Rap1B expression. Post hoc exploratory analyses did not reveal an association between social health variables and Rap1A or Rap1B expression. This study identifies a greater regulatory role for Rap1B than Rap1A in platelet engraftment and suggests a possible role for β-adrenergic signaling in modulating Rap1B function during HCT. YJBM 2022-03-31 /pmc/articles/PMC8961707/ /pubmed/35370486 Text en Copyright ©2022, Yale Journal of Biology and Medicine https://creativecommons.org/licenses/by-nc/4.0/This is an open access article distributed under the terms of the Creative Commons CC BY-NC license, which permits use, distribution, and reproduction in any medium, provided the original work is properly cited. You may not use the material for commercial purposes.
spellingShingle Original Contribution
Johnson, Alexander K.
Lorimer, Ellen L.
Szabo, Aniko
Wu, Ruizhe
Shah, Nirav N.
D’Souza, Anita
Chhabra, Saurabh
Hamadani, Mehdi
Dhakal, Binod
Hari, Parameswaran
Rao, Sridhar
Carlson, Karen
Williams, Carol L.
Knight, Jennifer M.
Rap1A, Rap1B, and β-Adrenergic Signaling in Autologous HCT: A Randomized Controlled Trial of Propranolol
title Rap1A, Rap1B, and β-Adrenergic Signaling in Autologous HCT: A Randomized Controlled Trial of Propranolol
title_full Rap1A, Rap1B, and β-Adrenergic Signaling in Autologous HCT: A Randomized Controlled Trial of Propranolol
title_fullStr Rap1A, Rap1B, and β-Adrenergic Signaling in Autologous HCT: A Randomized Controlled Trial of Propranolol
title_full_unstemmed Rap1A, Rap1B, and β-Adrenergic Signaling in Autologous HCT: A Randomized Controlled Trial of Propranolol
title_short Rap1A, Rap1B, and β-Adrenergic Signaling in Autologous HCT: A Randomized Controlled Trial of Propranolol
title_sort rap1a, rap1b, and β-adrenergic signaling in autologous hct: a randomized controlled trial of propranolol
topic Original Contribution
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8961707/
https://www.ncbi.nlm.nih.gov/pubmed/35370486
work_keys_str_mv AT johnsonalexanderk rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT lorimerellenl rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT szaboaniko rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT wuruizhe rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT shahniravn rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT dsouzaanita rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT chhabrasaurabh rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT hamadanimehdi rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT dhakalbinod rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT hariparameswaran rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT raosridhar rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT carlsonkaren rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT williamscaroll rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol
AT knightjenniferm rap1arap1bandbadrenergicsignalinginautologoushctarandomizedcontrolledtrialofpropranolol