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attachment of spindle microtubules to kinetochore involved in homologous chromosome segregation
Known as:
attachment of spindle microtubules to kinetochore involved in meiosis I
, monopolar attachment
, sister kinetochore mono-orientation
The process in which spindle microtubules become physically associated with the proteins making up the kinetochore complex during meiosis I. During…
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National Institutes of Health
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Related topics
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2 relations
Broader (2)
attachment of spindle microtubules to kinetochore
homologous chromosome segregation
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2018
2018
An interplay between Shugoshin and Spo13 for centromeric cohesin protection and sister kinetochore mono-orientation during meiosis I in Saccharomyces cerevisiae
Gunjan Mehta
,
Guhan Kaliyaperumal Anbalagan
,
Akhilendra Pratap Bharati
,
Purna Gadre
,
S. Ghosh
Current Genetics
2018
Corpus ID: 4712620
Meiosis is a specialized cell division process by which haploid gametes are produced from a diploid mother cell. Reductional…
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2017
2017
Acetylation regulates monopolar attachment at multiple levels during meiosis I in fission yeast
Ayano Kagami
,
T. Sakuno
,
+5 authors
Yoshinori Watanabe
EMBO Reports
2017
Corpus ID: 13730088
In Figure 2A, due to over-contrasting of the top twoWestern blot panels (AcPsm3), there is a loss of signal, in particular in the…
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2014
2014
How separated sisters get bad connections
H. Homer
Cell Cycle
2014
Corpus ID: 30260411
Accurate chromosome segregation depends on chromosomes acquiring correctly configured attachments to microtubules of the spindle…
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2013
2013
Study of Meiosis
Himanshu Gupta
2013
Corpus ID: 187505039
Reductional nature of meiosis is responsible to maintain the ploidy in eukaryotes. In sexual reproduction, Meiotic division…
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Review
2003
Review
2003
Monopolar attachment by Polo
Yoshinori Watanabe
Nature Cell Biology
2003
Corpus ID: 39353024
A distinguishing feature of meiosis is a reductional division where homologous chromosomes — rather than sister chromatids — are…
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