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MEC-17 微管蛋白乙酰转移酶的遗传分离功能影响微管组织。

Genetically separable functions of the MEC-17 tubulin acetyltransferase affect microtubule organization.

机构信息

Department of Biological Sciences, Columbia University, New York, NY 10027, USA.

出版信息

Curr Biol. 2012 Jun 19;22(12):1057-65. doi: 10.1016/j.cub.2012.03.066. Epub 2012 May 31.

Abstract

BACKGROUND

Microtubules (MTs) are formed from the lateral association of 11-16 protofilament chains of tubulin dimers, with most cells containing 13-protofilament (13-p) MTs. How these different MTs are formed is unknown, although the number of protofilaments may depend on the nature of the α- and β-tubulins.

RESULTS

Here we show that the enzymatic activity of the Caenorhabiditis elegans α-tubulin acetyltransferase (α-TAT) MEC-17 allows the production of 15-p MTs in the touch receptor neurons (TRNs) MTs. Without MEC-17, MTs with between 11 and 15 protofilaments are seen. Loss of this enzymatic activity also changes the number and organization of the TRN MTs and affects TRN axonal morphology. In contrast, enzymatically inactive MEC-17 is sufficient for touch sensitivity and proper process outgrowth without correcting the MT defects. Thus, in addition to demonstrating that MEC-17 is required for MT structure and organization, our results suggest that the large number of 15-p MTs, normally found in the TRNs, is not essential for mechanosensation.

CONCLUSION

These experiments reveal a specific role for α-TAT in the formation of MTs and in the production of higher order MTs arrays. In addition, our results indicate that the α-TAT protein has functions that require acetyltransferase activity (such as the determination of protofilament number) and others that do not (presence of internal MT structures).

摘要

背景

微管(MTs)由 11-16 个微管二聚体原丝链的侧向缔合形成,大多数细胞含有 13 个原丝(13-p)MTs。这些不同的 MTs 是如何形成的尚不清楚,尽管原丝的数量可能取决于α-和β-微管蛋白的性质。

结果

在这里,我们表明,秀丽隐杆线虫α-微管乙酰转移酶(α-TAT)MEC-17 的酶活性允许在触须感觉神经元(TRN)MTs 中产生 15-p MTs。没有 MEC-17,会看到具有 11 到 15 个原丝的 MTs。这种酶活性的丧失也会改变 TRN MTs 的数量和组织,并影响 TRN 轴突形态。相比之下,酶失活的 MEC-17 足以维持触须敏感性和适当的过程生长,而无需纠正 MT 缺陷。因此,除了证明 MEC-17 是 MT 结构和组织所必需的之外,我们的结果还表明,TRNs 中通常发现的大量 15-p MTs 对于机械感觉不是必需的。

结论

这些实验揭示了α-TAT 在 MT 形成和高阶 MT 阵列产生中的特定作用。此外,我们的结果表明,α-TAT 蛋白具有需要乙酰转移酶活性的功能(例如原丝数量的确定)和不需要的功能(内部 MT 结构的存在)。

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