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核内 Cajal 体中 SMN 复合体缺乏 gemin5。

Absence of gemin5 from SMN complexes in nuclear Cajal bodies.

作者信息

Hao Le thi, Fuller Heidi R, Lam Le Thanh, Le Thanh T, Burghes Arthur H M, Morris Glenn E

机构信息

Wolfson Centre for Inherited Neuromuscular Disease, RJAH Orthopaedic Hospital, Oswestry, UK.

出版信息

BMC Cell Biol. 2007 Jul 18;8:28. doi: 10.1186/1471-2121-8-28.

Abstract

BACKGROUND

Spinal muscular atrophy is caused by reduced levels of the survival of motor neurons (SMN) protein. SMN is found in large complexes with Sm proteins and at least eight other proteins, including seven "gemins". These complexes are involved in the assembly of snRNPs in the cytoplasm and their transport into the nucleus, but the precise roles of the individual protein components are largely unknown.

RESULTS

We have investigated the subcellular distribution of gemins using novel antibodies against gemins 3-7, and existing mAbs against SMN, gemin2, unrip, fibrillarin and profilin II. Most gemins were equally distributed between nuclear and cytoplasmic fractions of HeLa cells, but gemin5 and unrip were more abundant in the cytoplasm. In a cytoplasmic extract obtained by mild disruption of HeLa cells, nearly all the SMN and gemins 2-4 were in large complexes, but most of the gemin5 sedimented separately with a lower S value. Most of the unrip sedimented with gemins 6 and 7 near the top of the sucrose density gradients, separate from both SMN and gemin5. Anti-SMN mAbs pulled down gemin5 from cytoplasmic extracts, but not from nuclear extracts, and gemin5 did not co-sediment with large SMN complexes in nuclear extracts. These data suggest that gemin5 is easily detached from SMN-gemin complexes in the nucleus. By immuno-histochemistry, gemin5 was rarely detectable in nuclear gems/Cajal bodies, although it was accessible to antibody and easily detectable when present. This suggests that gemin5 is normally absent from SMN complexes in these nuclear storage sites.

CONCLUSION

We conclude that SMN complexes usually exist without gemin5 in nuclear gems/Cajal bodies. Gemin5 is believed to be involved in capturing snRNA into SMN complexes in the cytoplasm for transport into the nucleus. We hypothesize that gemin5, though present in the nucleus, is no longer needed for SMN complex function during the time these complexes are stored in gems/Cajal bodies.

摘要

背景

脊髓性肌萎缩症是由运动神经元存活(SMN)蛋白水平降低引起的。SMN存在于与Sm蛋白以及至少其他八种蛋白质(包括七种“双微体蛋白”)形成的大复合物中。这些复合物参与细胞质中snRNP的组装及其向细胞核的转运,但各个蛋白质成分的确切作用在很大程度上尚不清楚。

结果

我们使用针对双微体蛋白3 - 7的新型抗体以及针对SMN、双微体蛋白2、unrip、纤维蛋白原和原肌球蛋白II的现有单克隆抗体,研究了双微体蛋白的亚细胞分布。大多数双微体蛋白在HeLa细胞的细胞核和细胞质部分中均匀分布,但双微体蛋白5和unrip在细胞质中更为丰富。在通过轻度破坏HeLa细胞获得的细胞质提取物中,几乎所有的SMN和双微体蛋白2 - 4都存在于大复合物中,但大多数双微体蛋白5以较低的S值单独沉降。大多数unrip与双微体蛋白6和7一起在蔗糖密度梯度顶部附近沉降,与SMN和双微体蛋白5均分开。抗SMN单克隆抗体从细胞质提取物中拉下双微体蛋白5,但不能从细胞核提取物中拉下,并且双微体蛋白5在细胞核提取物中不与大的SMN复合物共沉降。这些数据表明双微体蛋白5在细胞核中很容易从SMN - 双微体蛋白复合物中分离。通过免疫组织化学,虽然双微体蛋白5可被抗体识别且存在时易于检测到,但在核小体/卡哈尔体中很少能检测到。这表明在这些核储存位点的SMN复合物中通常不存在双微体蛋白5。

结论

我们得出结论,在核小体/卡哈尔体中,SMN复合物通常在没有双微体蛋白5的情况下存在。双微体蛋白5被认为参与在细胞质中将snRNA捕获到SMN复合物中以便转运到细胞核中。我们推测,尽管双微体蛋白5存在于细胞核中,但在这些复合物存储在核小体/卡哈尔体期间,SMN复合物功能不再需要它。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/129e/1939999/da00e621e022/1471-2121-8-28-1.jpg

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