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来自HeLa细胞核的核糖核酸酶敏感的核苷三磷酸酶活性的特性鉴定。

Characterization of a ribonuclease-sensitive nucleoside triphosphatase activity from HeLa nuclei.

作者信息

Richardson L V, Richardson J P

出版信息

Biochem J. 1985 Apr 15;227(2):503-10. doi: 10.1042/bj2270503.

Abstract

Approximately one-third of the total ATP-hydrolysis activity in isolated HeLa nuclei is sensitive to RNAase (ribonuclease). This activity is selectively extracted with pulse-labelled RNA. In the extracts it co-sediments with various particles with sedimentation coefficients from 10S to 50S, but especially with 24S and 40S particles. ATP hydrolysis by the isolated particles was inhibited extensively (greater than 80%) by RNAase A, heparin and 0.2 M-NaCl. The activity of RNAase-treated particles was recovered when poly(A) was added, but not when DNA was added. The isolated particles exhibited RNAase-sensitive hydrolysis activities for dATP, GTP, CTP and UTP as well as for ATP, and the UTPase activity in the extracts showed nearly the same sedimentation distribution as the ATPase activity. When samples of isolated particles were irradiated with u.v. light in the presence of [alpha-32P]ATP, a 39 kDa polypeptide with a broad distribution from 10S to 50S like that of the ATPase and a 55 kDa polypeptide with a sharp distribution at 24S were photolabelled. Taken together, the data suggest that ATP-hydrolysis activity found in nuclear ribonucleoprotein subfractions appears to be the result of one or two RNA-dependent NTPases that are normally associated with endogenous RNA in a wide variety of particles.

摘要

在分离出的HeLa细胞核中,约三分之一的总ATP水解活性对核糖核酸酶(RNAase)敏感。这种活性可被脉冲标记的RNA选择性提取。在提取物中,它与沉降系数从10S到50S的各种颗粒共沉降,尤其是与24S和40S颗粒。分离出的颗粒的ATP水解受到核糖核酸酶A、肝素和0.2M氯化钠的广泛抑制(超过80%)。当加入聚腺苷酸(poly(A))时,核糖核酸酶处理过的颗粒的活性得以恢复,但加入DNA时则不能恢复。分离出的颗粒对dATP、GTP、CTP和UTP以及ATP均表现出对核糖核酸酶敏感的水解活性,提取物中的UTP酶活性与ATP酶活性显示出几乎相同的沉降分布。当在[α-32P]ATP存在的情况下用紫外线照射分离颗粒的样品时,一种在10S到50S范围内分布广泛的39kDa多肽(类似于ATP酶)和一种在24S处有尖锐分布的55kDa多肽被光标记。综合来看,这些数据表明在核糖核蛋白亚组分中发现的ATP水解活性似乎是一种或两种RNA依赖性NTP酶的结果,这些酶通常与多种颗粒中的内源性RNA相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dd5/1144869/1e4738580cd5/biochemj00305-0165-a.jpg

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