In modern optics, particular interest is devoted to the phase singularities that yield complicated and twisted phase structures by photons carrying optical angular momentum.In this paper, the traditional M-line method...In modern optics, particular interest is devoted to the phase singularities that yield complicated and twisted phase structures by photons carrying optical angular momentum.In this paper, the traditional M-line method is applied to a vortex beam(VB) by a symmetric metal cladding waveguide chip, which can host numerous oscillating guided modes via free space coupling.These ultrahigh-order modes(UOMs) result in high angular resolution due to the high finesse of the resonant chip.Experiments show that the reflected pattern of a VB can be divided into a series of inner and outer rings, whilst both of them are highly distorted by the M-lines due to the UOMs’ leakage.Taking the distribution of the energy flux into account, a simple ray-optics-based model is proposed to simulate the reflected pattern by calculating the local incident angle over the cross section of the beam.The theoretical simulations fit well with the experimental results, and the proposed scheme may enable new applications in imaging and sensing of complicated phase structures.展开更多
为了给深入研究猪繁殖与呼吸综合征病毒(porcine reproductive and respiratory syndromevirus,PRRSV)ORF6基因编码的M蛋白的生物学功能提供重要试验材料,本研究首先利用慢病毒包装系统构建了过表达PRRSVORF6基因的重组慢病毒质粒,将该...为了给深入研究猪繁殖与呼吸综合征病毒(porcine reproductive and respiratory syndromevirus,PRRSV)ORF6基因编码的M蛋白的生物学功能提供重要试验材料,本研究首先利用慢病毒包装系统构建了过表达PRRSVORF6基因的重组慢病毒质粒,将该质粒连同辅助质粒共同转染至HEK293T细胞获得重组慢病毒;之后将重组慢病毒感染MARC-145细胞,利用嘌呤霉素结合有限稀释法进行筛选,连续筛选3轮后建立了稳定表达PRRSVM蛋白的MARC-145ORF6细胞系;并使用CCK-8试验评估过表达PRRSVM蛋白对MARC-145细胞生长的影响。利用RT-PCR、蛋白免疫印迹(Westernblot)和间接免疫荧光(IFA)评估MARC-145ORF6细胞系的传代稳定性并鉴定M蛋白的亚细胞定位,进一步利用RT-qPCR评估过表达M蛋白对MARC-145细胞的干扰素及相关调节基因的影响;此外,还测定了PRRSV在MARC-145ORF6细胞系、MARC-145Flag细胞系和MARC-145细胞中的病毒滴度并绘制多步生长曲线以比较其差异。CCK-8试验结果表明,过表达PRRSVM蛋白对MARC-145细胞活力无显著影响;RT-qPCR、Westernblot和IFA等试验结果表明,MARC-145ORF6细胞系能够表达PRRSV的M蛋白且在传代过程中稳定。此外,稳定表达PRRSVM蛋白显著下调了细胞系的Ⅰ型干扰素及其相关调节基因;多步生长曲线表明,MARC-145ORF6细胞系促进PRRSV增殖,提高其病毒滴度。综上,本研究构建了可以稳定表达PRRSVM蛋白的MARC-145ORF6细胞系,发现其Ⅰ型干扰素水平显著下调且促进PRRSV复制。本研究构建的MARC-145ORF6细胞系将为M蛋白功能的深入研究提供重要生物材料。展开更多
Myofibrillogenesis, the process of sarcomere formation, requires close interactions of sarcomeric proteins and various components of sarcomere structures. The myosin thick filaments and M-lines are two key components ...Myofibrillogenesis, the process of sarcomere formation, requires close interactions of sarcomeric proteins and various components of sarcomere structures. The myosin thick filaments and M-lines are two key components of the sarcomere. It has been suggested that myomesin proteins of M-lines interact with myosin and titin proteins and keep the thick and titin filaments in order. However, the function of myomesin in myofibrillogenesis and sarcomere organization remained largely enigmatic. No knockout or knockdown animal models have been reported to elucidate the role of myomesin in sarcomere organization in vivo. In this study, by using the gene-specific knockdown approach in zebrafish embryos, we carded out a loss-of-function analysis of myomesin-3 and slow myosin heavy chain 1 (smyhcl) expressed specifically in slow muscles. We demonstrated that knockdown of smyhcl abolished the sarcomeric localization of myomesin-3 in slow muscles. In contrast, loss of myomesin-3 had no effect on the sarcomeric organization of thick and thin filaments as well as M- and Z-line structures. Together, these studies indicate that myosin thick filaments are required for M-line organization and M-line localization of myomesin-3. In contrast, myomesin-3 is dispensable for sarcomere organization in slow muscles.展开更多
基金supported by the Fundamental Research Funds for the Central Universities of China (No.2017B14914)Postgraduate Research&Practice Innovation Program of Jiangsu Province (Nos.B200203143 and KYCX200433)+1 种基金Opening Funding of Hunan Provincial Key Laboratory of High Energy Laser Technology (No.GNJGJS07)National Natural Science Foundation of China (No.11874140)。
文摘In modern optics, particular interest is devoted to the phase singularities that yield complicated and twisted phase structures by photons carrying optical angular momentum.In this paper, the traditional M-line method is applied to a vortex beam(VB) by a symmetric metal cladding waveguide chip, which can host numerous oscillating guided modes via free space coupling.These ultrahigh-order modes(UOMs) result in high angular resolution due to the high finesse of the resonant chip.Experiments show that the reflected pattern of a VB can be divided into a series of inner and outer rings, whilst both of them are highly distorted by the M-lines due to the UOMs’ leakage.Taking the distribution of the energy flux into account, a simple ray-optics-based model is proposed to simulate the reflected pattern by calculating the local incident angle over the cross section of the beam.The theoretical simulations fit well with the experimental results, and the proposed scheme may enable new applications in imaging and sensing of complicated phase structures.
文摘为了给深入研究猪繁殖与呼吸综合征病毒(porcine reproductive and respiratory syndromevirus,PRRSV)ORF6基因编码的M蛋白的生物学功能提供重要试验材料,本研究首先利用慢病毒包装系统构建了过表达PRRSVORF6基因的重组慢病毒质粒,将该质粒连同辅助质粒共同转染至HEK293T细胞获得重组慢病毒;之后将重组慢病毒感染MARC-145细胞,利用嘌呤霉素结合有限稀释法进行筛选,连续筛选3轮后建立了稳定表达PRRSVM蛋白的MARC-145ORF6细胞系;并使用CCK-8试验评估过表达PRRSVM蛋白对MARC-145细胞生长的影响。利用RT-PCR、蛋白免疫印迹(Westernblot)和间接免疫荧光(IFA)评估MARC-145ORF6细胞系的传代稳定性并鉴定M蛋白的亚细胞定位,进一步利用RT-qPCR评估过表达M蛋白对MARC-145细胞的干扰素及相关调节基因的影响;此外,还测定了PRRSV在MARC-145ORF6细胞系、MARC-145Flag细胞系和MARC-145细胞中的病毒滴度并绘制多步生长曲线以比较其差异。CCK-8试验结果表明,过表达PRRSVM蛋白对MARC-145细胞活力无显著影响;RT-qPCR、Westernblot和IFA等试验结果表明,MARC-145ORF6细胞系能够表达PRRSV的M蛋白且在传代过程中稳定。此外,稳定表达PRRSVM蛋白显著下调了细胞系的Ⅰ型干扰素及其相关调节基因;多步生长曲线表明,MARC-145ORF6细胞系促进PRRSV增殖,提高其病毒滴度。综上,本研究构建了可以稳定表达PRRSVM蛋白的MARC-145ORF6细胞系,发现其Ⅰ型干扰素水平显著下调且促进PRRSV复制。本研究构建的MARC-145ORF6细胞系将为M蛋白功能的深入研究提供重要生物材料。
基金supported by a research grant(MB-8716-08) from United States-Israel Binational Agriculture Research and Development Fund to SJD and a NIH grant(DA14546) to SCELiangyi Xue was supported by a Pao Yu-Kong and Pao Zhao-Long Scholarship for Chinese Scholars Studying Abroad from Ningbo University,China
文摘Myofibrillogenesis, the process of sarcomere formation, requires close interactions of sarcomeric proteins and various components of sarcomere structures. The myosin thick filaments and M-lines are two key components of the sarcomere. It has been suggested that myomesin proteins of M-lines interact with myosin and titin proteins and keep the thick and titin filaments in order. However, the function of myomesin in myofibrillogenesis and sarcomere organization remained largely enigmatic. No knockout or knockdown animal models have been reported to elucidate the role of myomesin in sarcomere organization in vivo. In this study, by using the gene-specific knockdown approach in zebrafish embryos, we carded out a loss-of-function analysis of myomesin-3 and slow myosin heavy chain 1 (smyhcl) expressed specifically in slow muscles. We demonstrated that knockdown of smyhcl abolished the sarcomeric localization of myomesin-3 in slow muscles. In contrast, loss of myomesin-3 had no effect on the sarcomeric organization of thick and thin filaments as well as M- and Z-line structures. Together, these studies indicate that myosin thick filaments are required for M-line organization and M-line localization of myomesin-3. In contrast, myomesin-3 is dispensable for sarcomere organization in slow muscles.