Red Cell Physiology Laboratory, New York Blood Center, 310 East 67th St, New York, NY 10065, USA.
Histochem Cell Biol. 2010 Oct;134(4):411-20. doi: 10.1007/s00418-010-0749-z. Epub 2010 Oct 2.
The members of the protein 4.1 family, 4.1R, 4.1G, 4.1N, and 4.1B, are encoded by four genes, all of which undergo complex alternative splicing. It is well established that 4.1R, the prototypical member of the family, serves as an adapter that links the spectrin-actin based cytoskeleton to the plasma membrane in red cells. It is required for mechanical resilience of the membrane, and it ensures the cell surface accumulation of selected membrane proteins. However, the function of 4.1 proteins outside erythrocytes remains under-explored, especially in endocrine tissues. Transcripts of all 4.1 homologs have previously been documented to be abundantly expressed in adrenal gland. In order to begin to decipher the function of 4.1 proteins in adrenal gland, we performed a detailed characterization of the expression pattern of various 4.1 proteins and their cellular localization. We show that 4.1R (~80 and ~135 kDa) splice forms are expressed on the membrane of all cells, while a ~160 kDa 4.1G splice form is distributed in the cytoplasm and the membrane of zona glomerulosa and of medullary cells. Two 4.1N splice forms, ~135 and ~95 kDa, are present in the peri-nuclear region of both zona glomerulosa and medullary cells, while a single ~130 kDa 4.1B splice form, is detected in all layers of adrenal gland in both the cytoplasm and the membrane. The characterization of distinct splice forms of various 4.1 proteins with diverse cellular and sub-cellular localization indicates multiple functions for this family of proteins in endocrine functions of adrenal gland.
蛋白质 4.1 家族的成员包括 4.1R、4.1G、4.1N 和 4.1B,它们由四个基因编码,这些基因都经历复杂的选择性剪接。众所周知,家族的典型成员 4.1R 作为一种接头,将血影蛋白-肌动蛋白细胞骨架与红细胞的质膜连接起来。它是膜的机械弹性所必需的,并且确保了选定的膜蛋白在细胞表面的积累。然而,红细胞以外的 4.1 蛋白的功能仍然没有得到充分的探索,特别是在内分泌组织中。以前已经有文献记录所有 4.1 同源物的转录本在肾上腺中大量表达。为了开始破译 4.1 蛋白在肾上腺中的功能,我们对各种 4.1 蛋白的表达模式及其细胞定位进行了详细的表征。我们表明,4.1R(80 和135 kDa)剪接形式表达在所有细胞的膜上,而160 kDa 的 4.1G 剪接形式分布在球状带细胞和髓质细胞的细胞质和膜中。两种 4.1N 剪接形式,135 和95 kDa,存在于球状带细胞和髓质细胞的核周区域,而单一的130 kDa 4.1B 剪接形式,在肾上腺的所有层中都被检测到,无论是在细胞质还是膜中。不同 4.1 蛋白的不同剪接形式的特征,具有不同的细胞和亚细胞定位,表明该蛋白家族在肾上腺的内分泌功能中有多种功能。