Yuan Wenbin, Liu Hongxing, Zhang Weifeng, Lin Zhihua, Li Chenghua, Bao Yongbo
School of Marine Sciences, Ningbo University, Ningbo, Zhejiang 315010, PR China; Zhejiang Key Laboratory of Aquatic Germplasm Resources, College of Biological & Environmental Sciences, Zhejiang Wanli University, Ningbo, Zhejiang 315100, PR China.
Zhejiang Key Laboratory of Aquatic Germplasm Resources, College of Biological & Environmental Sciences, Zhejiang Wanli University, Ningbo, Zhejiang 315100, PR China; Ninghai Marine Biological Seed Industry Research Institute, Zhejiang Wanli University, Ningbo, Zhejiang 315604, PR China.
Gene. 2023 Apr 30;862:147256. doi: 10.1016/j.gene.2023.147256. Epub 2023 Feb 6.
Hemoglobin (Hb) is the major protein component of red blood cells (hemocytes) of the blood clam Tegillarca granosa. Three T. granosa hemoglobin genes have been mentioned in the literature, designated Tgr-HbI, Tgr-HbIIA and Tgr-HbIIB. Previously, our group identified another novel gene, Tgr-HbIII, in the Hb cluster of the chromosome-level genome but the issue of whether this Hb gene expresses functional protein remains unclear. In the current study, phylogenetic analysis revealed that Tgr-HbIII resembles an ancient Hb gene. Sequence alignment and three-dimensional structural modeling results showed that Tgr-HbIII does not bind heme due to the completely different structure at amino acid position 96-100 and replacement of the N residue in known Tgr-Hbs with Q, what causes loss of a single hydrogen bond linking heme with the globin fold. Interface prediction data suggest that Tgr-HbIII forms a homodimer (ΔG = -5.6 kcal/mol) with a similar conformation to the Tgr-HbI homodimer (ΔG = -3.5 kcal/mol). In adult T. granosa, mRNA expression of Tgr-HbIII was lower than that of Tgr-HbIIA and Tgr-HbIIB (up to 100 × ), but comparable to that of Tgr-HbI. Notably, protein expression of Tgr-HbIII was extremely low. Single-cell RNA sequencing analysis of Hb expression showed that all adult hemocytes expressed Tgr-HbI, Tgr-HbIIA and Tgr-HbIIB, while only 43 % (3872 of 8978) expressed Tgr-HbIII. Based on the collective data, we speculate that Tgr-HbIII carried oxygen prior to mutation of N to Q and subsequently evolved into a known functional remnant of Hb with an adequate mRNA/low protein expression profile. The current study provides a foundation for further research on the origin, evolution and function of molluscan Hbs.
血红蛋白(血红蛋白)是血蚶(Tegillarca granosa)血液中红细胞(血细胞)的主要蛋白质成分。文献中提到了三个血蚶血红蛋白基因,分别命名为Tgr-HbI、Tgr-HbIIA和Tgr-HbIIB。此前,我们的研究小组在染色体水平基因组的血红蛋白簇中鉴定出了另一个新基因Tgr-HbIII,但该血红蛋白基因是否表达功能性蛋白质尚不清楚。在本研究中,系统发育分析表明Tgr-HbIII类似于一个古老的血红蛋白基因。序列比对和三维结构建模结果表明,由于96-100位氨基酸位置的结构完全不同以及已知血蚶血红蛋白中N残基被Q取代,Tgr-HbIII不结合血红素,这导致了连接血红素与球蛋白折叠的单个氢键的丧失。界面预测数据表明,Tgr-HbIII形成了一个同二聚体(ΔG = -5.6 kcal/mol),其构象与Tgr-HbI同二聚体(ΔG = -3.5 kcal/mol)相似。在成年血蚶中,Tgr-HbIII的mRNA表达低于Tgr-HbIIA和Tgr-HbIIB(高达100倍),但与Tgr-HbI相当。值得注意的是,Tgr-HbIII的蛋白质表达极低。血红蛋白表达的单细胞RNA测序分析表明,所有成年血细胞都表达Tgr-HbI、Tgr-HbIIA和Tgr-HbIIB,而只有43%(8978个中的3872个)表达Tgr-HbIII。基于这些综合数据,我们推测Tgr-HbIII在N突变为Q之前携带氧气,随后进化为一个已知的功能性血红蛋白残余物,具有适当的mRNA/低蛋白表达谱。本研究为进一步研究软体动物血红蛋白的起源、进化和功能奠定了基础。