Kim Evelyn H, Galchev Vladimir I, Kim Jin Young, Misek Sean A, Stevenson Tamara K, Campbell Matthew D, Pagani Francis D, Day Sharlene M, Johnson T Craig, Washburn Joseph G, Vikstrom Karen L, Michele Daniel E, Misek David E, Westfall Margaret V
Department of Surgery, University of Michigan, Ann Arbor, MI, USA.
Korea Basic Science Institute, Ochang, Korea.
Proteomics Clin Appl. 2016 May;10(5):585-96. doi: 10.1002/prca.201500099. Epub 2016 Jan 25.
A goal of this study was to identify and investigate previously unrecognized components of the remodeling process in the progression to heart failure by comparing protein expression in ischemic failing (F) and nonfailing (NF) human hearts.
Protein expression differences were investigated using multidimensional protein identification and validated by Western analysis. This approach detected basal lamina (BL) remodeling, and further studies analyzed samples for evidence of structural BL remodeling. A rat model of pressure overload (PO) was studied to determine whether nonischemic stressors also produce BL remodeling and impact cellular adhesion.
Differential protein expression of collagen IV, laminin α2, and nidogen-1 indicated BL remodeling develops in F versus NF hearts Periodic disruption of cardiac myocyte BL accompanied this process in F, but not NF heart. The rat PO myocardium also developed BL remodeling and compromised myocyte adhesion compared to sham controls.
Differential protein expression and evidence of structural and functional BL alterations develop during heart failure. The compromised adhesion associated with this remodeling indicates a high potential for dysfunctional cellular integrity and tethering in failing myocytes. Therapeutically targeting BL remodeling could slow or prevent the progression of heart disease.
本研究的一个目标是通过比较缺血性心力衰竭(F)和非衰竭(NF)人类心脏中的蛋白质表达,来识别和研究心力衰竭进展过程中重塑过程中先前未被认识的成分。
使用多维蛋白质鉴定研究蛋白质表达差异,并通过蛋白质印迹分析进行验证。该方法检测到基底膜(BL)重塑,进一步的研究分析样本以寻找结构性BL重塑的证据。研究压力超负荷(PO)大鼠模型,以确定非缺血性应激源是否也会导致BL重塑并影响细胞黏附。
IV型胶原蛋白、层粘连蛋白α2和巢蛋白-1的差异蛋白质表达表明,F组心脏与NF组心脏相比出现了BL重塑。F组心脏中,心肌细胞BL的周期性破坏伴随着这一过程,但NF组心脏未出现。与假手术对照组相比,大鼠PO心肌也出现了BL重塑,并损害了心肌细胞黏附。
心力衰竭期间出现差异蛋白质表达以及结构性和功能性BL改变的证据。与这种重塑相关的黏附受损表明,衰竭心肌细胞中细胞完整性和连接功能失调的可能性很大。针对BL重塑进行治疗可能会减缓或预防心脏病的进展。