Laboratory for Stem Cell Engineering and Regenerative Medicine, Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati, 781039, Assam, India.
Organelle Biology and Cellular Ageing Lab, Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati, 781039, Assam, India.
Sci Rep. 2022 Sep 27;12(1):16129. doi: 10.1038/s41598-022-19745-w.
Transcription factor HAND2 has a significant role in vascularization, angiogenesis, and cardiac neural crest development. It is one of the key cardiac factors crucial for the enhanced derivation of functional and mature myocytes from non-myocyte cells. Here, we report the generation of the recombinant human HAND2 fusion protein from the heterologous system. First, we cloned the full-length human HAND2 gene (only protein-coding sequence) after codon optimization along with the fusion tags (for cell penetration, nuclear translocation, and affinity purification) into the expression vector. We then transformed and expressed it in Escherichia coli strain, BL21(DE3). Next, the effect (in terms of expression) of tagging fusion tags with this recombinant protein at two different terminals was also investigated. Using affinity chromatography, we established the one-step homogeneous purification of recombinant human HAND2 fusion protein; and through circular dichroism spectroscopy, we established that this purified protein had retained its secondary structure. We then showed that this purified human protein could transduce the human cells and translocate to its nucleus. The generated recombinant HAND2 fusion protein showed angiogenic potential in the ex vivo chicken embryo model. Following transduction in MEF2C overexpressing cardiomyoblast cells, this purified recombinant protein synergistically activated the α-MHC promoter and induced GFP expression in the α-MHC-eGFP reporter assay. Prospectively, the purified bioactive recombinant HAND2 protein can potentially be a safe and effective molecular tool in the direct cardiac reprogramming process and other biological applications.
转录因子 HAND2 在血管生成、血管生成和心脏神经嵴发育中具有重要作用。它是增强非心肌细胞向功能性和成熟心肌细胞分化的关键心脏因子之一。在这里,我们报告了从异源系统产生重组人 HAND2 融合蛋白。首先,我们在密码子优化后克隆了全长人 HAND2 基因(仅编码序列),并在融合标签(用于细胞穿透、核易位和亲和纯化)的作用下将其插入表达载体中。然后,我们将其转化并在大肠杆菌菌株 BL21(DE3)中表达。接下来,还研究了在两个不同末端用这种重组蛋白的融合标签进行标记的效果(就表达而言)。通过亲和层析,我们建立了一步式重组人 HAND2 融合蛋白的均相纯化;通过圆二色性光谱,我们确定了这种纯化蛋白保留了其二级结构。然后我们表明,这种纯化的人蛋白可以转导人细胞并易位到其核中。生成的重组 HAND2 融合蛋白在鸡胚体外模型中表现出血管生成潜力。在过表达 MEF2C 的心肌细胞中转导后,这种纯化的重组蛋白协同激活α-MHC 启动子,并在α-MHC-eGFP 报告基因检测中诱导 GFP 表达。有前景的是,纯化的生物活性重组 HAND2 蛋白在直接心脏重编程过程和其他生物学应用中可能成为一种安全有效的分子工具。