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smooth muscle Myosin heavy chain 11 Rabbit pAb, PE-Cy7 conjugated
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原料试剂 研发实验室
价格
¥2980.00
品牌 Bioss博奥森生物
地区 中国,北京,北京市
货号 bs-1956R-PE-Cy7
产地 国产
选择规格
100ul
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Bioss博奥森生物
北京博奥森生物技术有限公司
北京
营业执照已审核
博奥森:专注科研,以优质抗体引领未来 博奥森生物,自2001年诞生以来,始终坚守在生命科学前沿,为全球科研人员提供卓越品质的免疫学试剂产品与服务。我们拥有资深的科学家团队、先进的抗体发现、验证与生产平台,始终坚持“自主研发、原始创新”的理念,确保每一款产品都能达到国际标准,持续提供“4R” 品质科研工具【Repeatable(可重复)、Replicable(可复制)、Reproducible(可再现)和Reliable(可靠的)】。
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产品规格 图文详情 技术文档
产品规格
品牌名称
Bioss博奥森生物
货号
bs-1956R-PE-Cy7
国产/进口
国产
规格
100ul
储存条件
Shipped at 4℃. Store at -20℃ for one year. Avoid repeated freeze/thaw cycles.
使用范围
IF
货源
新品
图文详情
Application:IF
Reactivity: (predicted: Human,Mouse,Rat,Cow,Dog)
The protein encoded by this gene is a smooth muscle myosin belonging to the myosin heavy chain family. The gene product is a subunit of a hexameric protein that consists of two heavy chain subunits and two pairs of non-identical light chain subunits. It functions as a major contractile protein, converting chemical energy into mechanical energy through the hydrolysis of ATP. The gene encoding a human ortholog of rat NUDE1 is transcribed from the reverse strand of this gene, and its 3' end overlaps with that of the latter. The pericentric inversion of chromosome 16[inv(16)(p13q22)] produces a chimeric transcript that encodes a protein consisting of the first 165 residues from the N terminus of core-binding factor beta in a fusion with the C-terminal portion of the smooth muscle myosin heavy chain. This chromosomal rearrangement is associated with acute myeloid leukemia of the M4Eo subtype. Alternative splicing generates isoforms that are differentially expressed, with ratios changing during muscle cell maturation. Alternatively spliced transcript variants encoding different isoforms have been identified.
MYH11 is a smooth muscle myosin belonging to the myosin heavy chain family. It is a subunit of a hexameric protein that consists of two heavy chain subunits and two pairs of non-identical light chain subunits. It functions as a major contractile protein, converting chemical energy into mechanical energy through the hydrolysis of ATP.
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